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Dependencies: FreescaleIAP mbed-rtos mbed
Fork of workinQM_5thJan_azad by
EPS.cpp@50:6001287f3045, 2016-07-18 (annotated)
- Committer:
- lakshya
- Date:
- Mon Jul 18 06:36:25 2016 +0000
- Revision:
- 50:6001287f3045
- Parent:
- 49:61c9f28332ba
- Child:
- 51:661dc022613a
before last stage tested with tctm
Who changed what in which revision?
User | Revision | Line number | New contents of line |
---|---|---|---|
sakthipriya | 0:7b4c00e3912f | 1 | #include "EPS.h" |
sakthipriya | 0:7b4c00e3912f | 2 | #include "pin_config.h" |
sakthipriya | 6:036d08b62785 | 3 | #include "iostream" |
lakshya | 20:949d13045431 | 4 | |
lakshya | 49:61c9f28332ba | 5 | Serial eps_pc(USBTX,USBRX); |
lakshya | 49:61c9f28332ba | 6 | |
lakshya | 49:61c9f28332ba | 7 | Timer timer_alertFlags; |
lakshya | 49:61c9f28332ba | 8 | Timer timer_soc; |
lakshya | 49:61c9f28332ba | 9 | Timer timer_FCTN_BATTERYGAUGE_INIT; |
lakshya | 49:61c9f28332ba | 10 | |
lakshya | 20:949d13045431 | 11 | //FOR APPEDING HK DATA=================================== |
lakshya | 20:949d13045431 | 12 | |
lakshya | 20:949d13045431 | 13 | extern uint16_t crc_hk_data(); |
lakshya | 20:949d13045431 | 14 | |
lakshya | 20:949d13045431 | 15 | //acs |
lakshya | 20:949d13045431 | 16 | extern uint8_t ACS_DETUMBLING_ALGO_TYPE; |
lakshya | 20:949d13045431 | 17 | extern uint8_t ACS_STATE; |
lakshya | 20:949d13045431 | 18 | extern uint8_t ACS_MAG_TIME_DELAY; |
lakshya | 20:949d13045431 | 19 | extern uint8_t ACS_DEMAG_TIME_DELAY; |
lakshya | 20:949d13045431 | 20 | extern uint8_t ACS_Z_FIXED_MOMENT; |
lakshya | 20:949d13045431 | 21 | extern uint16_t ACS_MM_X_COMSN; |
lakshya | 20:949d13045431 | 22 | extern uint16_t ACS_MM_Y_COMSN; |
lakshya | 20:949d13045431 | 23 | extern uint16_t ACS_MG_X_COMSN; |
lakshya | 20:949d13045431 | 24 | extern uint16_t ACS_MG_Y_COMSN; |
lakshya | 20:949d13045431 | 25 | extern uint16_t ACS_MM_Z_COMSN; |
lakshya | 20:949d13045431 | 26 | extern uint16_t ACS_MG_Z_COMSN; |
lakshya | 20:949d13045431 | 27 | extern uint8_t ACS_MAIN_STATUS; |
lakshya | 20:949d13045431 | 28 | extern uint8_t ACS_STATUS; |
lakshya | 20:949d13045431 | 29 | extern uint8_t ATS1_EVENT_STATUS_RGTR; |
lakshya | 20:949d13045431 | 30 | extern uint8_t ATS1_SENTRAL_STATUS_RGTR; |
lakshya | 20:949d13045431 | 31 | extern uint8_t ATS1_ERROR_RGTR; |
lakshya | 20:949d13045431 | 32 | extern uint8_t ATS2_EVENT_STATUS_RGTR; |
lakshya | 20:949d13045431 | 33 | extern uint8_t ATS2_SENTRAL_STATUS_RGTR; |
lakshya | 20:949d13045431 | 34 | extern uint8_t ATS2_ERROR_RGTR; |
lakshya | 20:949d13045431 | 35 | extern uint8_t ACS_DATA_ACQ_STATUS; |
lakshya | 20:949d13045431 | 36 | extern uint8_t ACS_TR_X_PWM; |
lakshya | 20:949d13045431 | 37 | extern uint8_t ACS_TR_Y_PWM; |
lakshya | 20:949d13045431 | 38 | extern uint8_t ACS_TR_Z_PWM; |
lakshya | 20:949d13045431 | 39 | extern uint8_t alarmmode; |
lakshya | 20:949d13045431 | 40 | extern uint8_t controlmode_mms; |
lakshya | 20:949d13045431 | 41 | extern uint8_t invjm_mms[9]; |
lakshya | 20:949d13045431 | 42 | extern uint8_t jm_mms[9]; |
lakshya | 20:949d13045431 | 43 | extern uint8_t bb_mms[3]; |
lakshya | 20:949d13045431 | 44 | extern uint8_t singularity_flag_mms; |
lakshya | 39:670133e7ffd8 | 45 | extern uint8_t B_SCZ_ANGLE; |
lakshya | 20:949d13045431 | 46 | |
lakshya | 20:949d13045431 | 47 | |
lakshya | 20:949d13045431 | 48 | //bcn |
lakshya | 20:949d13045431 | 49 | extern uint8_t BCN_SPND_TX; |
lakshya | 20:949d13045431 | 50 | extern uint8_t BCN_FEN; |
lakshya | 20:949d13045431 | 51 | extern uint8_t BCN_LONG_MSG_TYPE; |
lakshya | 20:949d13045431 | 52 | extern uint8_t BCN_TX_MAIN_STATUS; |
lakshya | 20:949d13045431 | 53 | extern uint8_t BCN_TX_STATUS; |
lakshya | 20:949d13045431 | 54 | extern uint8_t BCN_INIT_STATUS; |
lakshya | 20:949d13045431 | 55 | extern uint8_t BCN_FAIL_COUNT; |
lakshya | 20:949d13045431 | 56 | extern uint16_t BCN_TX_MAIN_COUNTER; |
lakshya | 33:76f2b8735501 | 57 | extern uint8_t BCN_TX_MAIN_STATUS; |
lakshya | 20:949d13045431 | 58 | |
lakshya | 20:949d13045431 | 59 | //bae |
lakshya | 49:61c9f28332ba | 60 | extern Timer BAE_uptime; |
lakshya | 49:61c9f28332ba | 61 | extern Timer I2C_last; |
lakshya | 20:949d13045431 | 62 | extern uint8_t BAE_RESET_COUNTER; |
lakshya | 20:949d13045431 | 63 | extern uint8_t BAE_INIT_STATUS; |
lakshya | 20:949d13045431 | 64 | extern uint8_t BAE_STANDBY; |
lakshya | 20:949d13045431 | 65 | extern uint16_t BAE_I2C_COUNTER; |
lakshya | 49:61c9f28332ba | 66 | extern void RETURN_UPTIME(float time, uint8_t *day,uint8_t *hour,uint8_t *min); |
lakshya | 20:949d13045431 | 67 | |
lakshya | 20:949d13045431 | 68 | //eps |
lakshya | 20:949d13045431 | 69 | extern uint8_t ACS_INIT_STATUS; |
lakshya | 20:949d13045431 | 70 | extern uint16_t EPS_MAIN_COUNTER; |
lakshya | 33:76f2b8735501 | 71 | extern uint8_t EPS_BTRY_TMP_STATUS; |
lakshya | 33:76f2b8735501 | 72 | |
lakshya | 20:949d13045431 | 73 | |
lakshya | 20:949d13045431 | 74 | //main |
lakshya | 20:949d13045431 | 75 | extern uint8_t HTR_CYCLE_COUNTER; |
lakshya | 20:949d13045431 | 76 | extern uint16_t ACS_MAIN_COUNTER; |
lakshya | 20:949d13045431 | 77 | |
lakshya | 20:949d13045431 | 78 | |
lakshya | 20:949d13045431 | 79 | //======================================================= |
lakshya | 20:949d13045431 | 80 | |
lakshya | 20:949d13045431 | 81 | |
sakthipriya | 0:7b4c00e3912f | 82 | /***********************************************global variable declaration***************************************************************/ |
sakthipriya | 0:7b4c00e3912f | 83 | extern uint32_t BAE_STATUS; |
sakthipriya | 0:7b4c00e3912f | 84 | extern uint32_t BAE_ENABLE; |
lakshya | 33:76f2b8735501 | 85 | extern uint8_t LONG_HK_data[2][134]; |
lakshya | 33:76f2b8735501 | 86 | //extern uint8_t BAE_HK_data[134]; |
lakshya | 20:949d13045431 | 87 | //extern char BAE_chardata[74]; |
lakshya | 20:949d13045431 | 88 | |
lakshya | 20:949d13045431 | 89 | //implement them assign them default values |
lakshya | 20:949d13045431 | 90 | uint8_t EPS_BATT_TEMP_LOW; |
lakshya | 20:949d13045431 | 91 | uint8_t EPS_BATT_TEMP_HIGH; |
lakshya | 20:949d13045431 | 92 | uint8_t EPS_BATT_TEMP_DEFAULT; |
lakshya | 20:949d13045431 | 93 | uint8_t EPS_SOC_LEVEL_12 = 70; |
lakshya | 20:949d13045431 | 94 | uint8_t EPS_SOC_LEVEL_23 = 90; |
lakshya | 20:949d13045431 | 95 | uint8_t EPS_BAT_TEMP_LOW; |
lakshya | 20:949d13045431 | 96 | uint8_t EPS_BAT_TEMP_HIGH; |
lakshya | 20:949d13045431 | 97 | uint8_t EPS_BAT_TEMP_DEFAULT; |
lakshya | 49:61c9f28332ba | 98 | DigitalIn EPS_CHARGER_FAULT(PIN42); |
lakshya | 49:61c9f28332ba | 99 | DigitalIn EPS_CHARGER_STATUS(PIN31); |
lakshya | 49:61c9f28332ba | 100 | DigitalIn EPS_BATTERY_GAUGE_ALERT(PIN73); |
sakthipriya | 0:7b4c00e3912f | 101 | |
sakthipriya | 0:7b4c00e3912f | 102 | //m_I2C.frequency(10000) |
lakshya | 49:61c9f28332ba | 103 | extern int eps_btg_read_flag; // flag to check I2C ack on reading from BTG |
lakshya | 49:61c9f28332ba | 104 | extern int eps_btg_writ_flag; // flag to check I2C ack on writing from BTG |
lakshya | 49:61c9f28332ba | 105 | |
lakshya | 15:e09aaaccf134 | 106 | const char RCOMP0= 0x97;// don't know what it is now |
sakthipriya | 0:7b4c00e3912f | 107 | BAE_HK_actual actual_data; |
sakthipriya | 0:7b4c00e3912f | 108 | BAE_HK_quant quant_data; |
sakthipriya | 0:7b4c00e3912f | 109 | BAE_HK_min_max bae_HK_minmax; |
sakthipriya | 0:7b4c00e3912f | 110 | BAE_HK_arch arch_data; |
sakthipriya | 0:7b4c00e3912f | 111 | |
lakshya | 20:949d13045431 | 112 | /************************battery temperature var*********************************/ |
lakshya | 20:949d13045431 | 113 | //instead just return the approprate value.. test it |
sakthipriya | 5:bb592f3185cc | 114 | |
sakthipriya | 0:7b4c00e3912f | 115 | //......................................Peripheral declarations.........................................................// |
sakthipriya | 0:7b4c00e3912f | 116 | Serial pc_eps(USBTX,USBRX); |
sakthipriya | 3:07e15677a75c | 117 | |
sakthipriya | 0:7b4c00e3912f | 118 | I2C m_I2C(PIN85,PIN84); |
lakshya | 49:61c9f28332ba | 119 | |
lakshya | 49:61c9f28332ba | 120 | //any default values or states |
lakshya | 49:61c9f28332ba | 121 | //==================================== |
lakshya | 49:61c9f28332ba | 122 | //DigitalInOut TRXY(TRXY_DR_EN); //active high |
lakshya | 49:61c9f28332ba | 123 | //DigitalInOut TRZ(TRZ_DR_EN); //active high |
lakshya | 49:61c9f28332ba | 124 | DigitalOut EN3V3A(ENBL3V3A); |
lakshya | 49:61c9f28332ba | 125 | //==================================== |
lakshya | 49:61c9f28332ba | 126 | |
lakshya | 48:9fd15e3e0b53 | 127 | DigitalOut BTRY_HTR_ENABLE(BATT_HEAT);// earlier BTRY_HTR_ENABLE |
sakthipriya | 0:7b4c00e3912f | 128 | //DigitalIn BTRY_HT_OUTPUT(BATT_HEAT_OUTPUT); |
sakthipriya | 3:07e15677a75c | 129 | //AnalogIn Vbatt_ang(VBATT); |
sakthipriya | 3:07e15677a75c | 130 | AnalogIn Batt_voltage(PIN20); //Battery voltage |
sakthipriya | 3:07e15677a75c | 131 | |
lakshya | 15:e09aaaccf134 | 132 | SPI spi_bt(PIN99,PIN100,PIN98); //MOSI,MISO,SLK // battery temp something 3 |
lakshya | 15:e09aaaccf134 | 133 | DigitalOut ssn1(PIN19); //Slave select1 // low line master talks |
sakthipriya | 2:c823d84b4cb0 | 134 | DigitalOut ssn2(PIN21);//Slave select2 |
sakthipriya | 2:c823d84b4cb0 | 135 | //DigitalOut PS(PTB0); |
sakthipriya | 2:c823d84b4cb0 | 136 | //DigitalOut HS(PTB1); |
sakthipriya | 2:c823d84b4cb0 | 137 | |
sakthipriya | 3:07e15677a75c | 138 | AnalogIn CurrentInput(PIN54); // Input from Current Multiplexer //PIN54 |
sakthipriya | 3:07e15677a75c | 139 | AnalogIn VoltageInput(PIN53); // Input from Voltage Multiplexer //PIN53 |
sakthipriya | 3:07e15677a75c | 140 | AnalogIn BAE_temp_sensor(PIN55); //Input from BAE temp sensor |
sakthipriya | 3:07e15677a75c | 141 | |
lakshya | 15:e09aaaccf134 | 142 | /*mux for reading value one by one*/ |
sakthipriya | 3:07e15677a75c | 143 | DigitalOut SelectLinea3 (PIN46); // MSB of Select Lines |
sakthipriya | 3:07e15677a75c | 144 | DigitalOut SelectLinea2 (PIN45); |
sakthipriya | 3:07e15677a75c | 145 | DigitalOut SelectLinea1 (PIN44); |
sakthipriya | 3:07e15677a75c | 146 | DigitalOut SelectLinea0 (PIN43); // LSB of Select Lines |
sakthipriya | 3:07e15677a75c | 147 | |
sakthipriya | 3:07e15677a75c | 148 | DigitalOut SelectLineb3 (PIN56); // MSB of Select Lines |
sakthipriya | 3:07e15677a75c | 149 | DigitalOut SelectLineb2 (PIN57); |
sakthipriya | 3:07e15677a75c | 150 | DigitalOut SelectLineb1 (PIN58); |
sakthipriya | 3:07e15677a75c | 151 | DigitalOut SelectLineb0 (PIN59); // LSB of Select Lines |
sakthipriya | 0:7b4c00e3912f | 152 | |
sakthipriya | 0:7b4c00e3912f | 153 | //*********************************************************flags********************************************************// |
lakshya | 20:949d13045431 | 154 | extern uint8_t EPS_INIT_STATUS ; |
lakshya | 20:949d13045431 | 155 | extern uint8_t EPS_BATTERY_GAUGE_STATUS ; |
lakshya | 20:949d13045431 | 156 | extern uint8_t EPS_MAIN_STATUS; |
lakshya | 33:76f2b8735501 | 157 | extern uint8_t EPS_BTRY_TMP_STATUS ; |
lakshya | 20:949d13045431 | 158 | extern uint8_t EPS_STATUS ; |
lakshya | 20:949d13045431 | 159 | |
lakshya | 33:76f2b8735501 | 160 | extern uint8_t EPS_BTRY_HTR ; |
lakshya | 20:949d13045431 | 161 | |
lakshya | 20:949d13045431 | 162 | //eps cdms fault |
lakshya | 20:949d13045431 | 163 | extern uint8_t CDMS_SW_STATUS; |
lakshya | 49:61c9f28332ba | 164 | extern DigitalIn CDMS_OC_FAULT; |
lakshya | 20:949d13045431 | 165 | extern bool CDMS_SW_ENABLE; |
lakshya | 20:949d13045431 | 166 | extern int CDMS_FAULT_COUNTER; |
lakshya | 33:76f2b8735501 | 167 | extern uint8_t EPS_BTRY_HTR_AUTO; |
lakshya | 20:949d13045431 | 168 | |
lakshya | 20:949d13045431 | 169 | //eps hw faults |
lakshya | 20:949d13045431 | 170 | |
lakshya | 20:949d13045431 | 171 | /********* EXTERN ACS VAR ********************/ |
lakshya | 20:949d13045431 | 172 | extern uint8_t ACS_ATS_STATUS; |
lakshya | 20:949d13045431 | 173 | extern uint8_t ACS_TR_Z_SW_STATUS; |
lakshya | 49:61c9f28332ba | 174 | extern DigitalOut ACS_TR_Z_ENABLE; |
lakshya | 49:61c9f28332ba | 175 | extern DigitalIn ACS_TR_Z_OC_FAULT; |
lakshya | 49:61c9f28332ba | 176 | extern DigitalIn ACS_TR_Z_FAULT; //Driver IC fault |
lakshya | 20:949d13045431 | 177 | extern int ACS_TR_Z_FAULT_COUNTER; |
sakthipriya | 0:7b4c00e3912f | 178 | |
lakshya | 20:949d13045431 | 179 | extern uint8_t ACS_TR_XY_SW_STATUS; |
lakshya | 49:61c9f28332ba | 180 | extern DigitalOut ACS_TR_XY_ENABLE; |
lakshya | 49:61c9f28332ba | 181 | extern DigitalIn ACS_TR_XY_OC_FAULT; |
lakshya | 49:61c9f28332ba | 182 | extern DigitalIn ACS_TR_XY_FAULT; //Driver IC fault |
lakshya | 20:949d13045431 | 183 | extern int ACS_TR_XY_FAULT_COUNTER; |
lakshya | 20:949d13045431 | 184 | |
lakshya | 20:949d13045431 | 185 | //extern uint8_t ACS_ATS1_SW_STATUS; |
lakshya | 49:61c9f28332ba | 186 | extern DigitalOut ATS1_SW_ENABLE; |
lakshya | 49:61c9f28332ba | 187 | extern DigitalIn ACS_ATS1_OC_FAULT; |
lakshya | 20:949d13045431 | 188 | extern int ACS_ATS1_FAULT_COUNTER; |
lakshya | 20:949d13045431 | 189 | |
lakshya | 20:949d13045431 | 190 | //extern uint8_t ACS_ATS2_SW_STATUS; |
lakshya | 20:949d13045431 | 191 | |
lakshya | 49:61c9f28332ba | 192 | extern DigitalOut ATS2_SW_ENABLE; |
lakshya | 49:61c9f28332ba | 193 | extern DigitalIn ACS_ATS2_OC_FAULT; |
lakshya | 20:949d13045431 | 194 | extern int ACS_ATS2_FAULT_COUNTER; |
lakshya | 20:949d13045431 | 195 | |
lakshya | 20:949d13045431 | 196 | /********* EXTERN BCN VAR ********************/ |
lakshya | 20:949d13045431 | 197 | extern uint8_t BCN_TX_SW_STATUS; |
lakshya | 20:949d13045431 | 198 | extern bool BCN_TX_ENABLE; |
lakshya | 49:61c9f28332ba | 199 | extern DigitalIn BCN_TX_OC_FAULT; |
lakshya | 20:949d13045431 | 200 | extern int BCN_TX_FAULT_COUNTER; |
lakshya | 20:949d13045431 | 201 | extern uint8_t BCN_TMP; |
sakthipriya | 0:7b4c00e3912f | 202 | |
sakthipriya | 0:7b4c00e3912f | 203 | //........................................... FUCTIONS.................................................// |
sakthipriya | 0:7b4c00e3912f | 204 | |
sakthipriya | 0:7b4c00e3912f | 205 | void FCTN_EPS_INIT() |
sakthipriya | 0:7b4c00e3912f | 206 | { |
lakshya | 49:61c9f28332ba | 207 | //// eps_pc.printf("\n\r eps init \n"); |
lakshya | 20:949d13045431 | 208 | EPS_INIT_STATUS = 1 ; //set EPS_INIT_STATUS flag |
sakthipriya | 3:07e15677a75c | 209 | // FLAG(); |
sakthipriya | 0:7b4c00e3912f | 210 | FCTN_BATTERYGAUGE_INIT(); |
sakthipriya | 0:7b4c00e3912f | 211 | EN3V3A = 1; //enable dc dc converter A |
lakshya | 49:61c9f28332ba | 212 | |
lakshya | 49:61c9f28332ba | 213 | timer_alertFlags.reset(); |
lakshya | 49:61c9f28332ba | 214 | timer_alertFlags.start(); |
lakshya | 15:e09aaaccf134 | 215 | char value=alertFlags(); // initialization part of battery gauge |
lakshya | 49:61c9f28332ba | 216 | timer_alertFlags.stop(); |
lakshya | 49:61c9f28332ba | 217 | |
sakthipriya | 0:7b4c00e3912f | 218 | unsigned short value_u= (short int )value; |
lakshya | 33:76f2b8735501 | 219 | //value_u &=0x0001; |
lakshya | 33:76f2b8735501 | 220 | if(value_u & 0x0001 == 0x0001) // battery gauge not initialised |
sakthipriya | 0:7b4c00e3912f | 221 | { |
lakshya | 49:61c9f28332ba | 222 | //actual_data.power_mode = 1; |
lakshya | 49:61c9f28332ba | 223 | actual_data.power_mode = 0; |
lakshya | 20:949d13045431 | 224 | EPS_BATTERY_GAUGE_STATUS = 0; //clear EPS_BATTERY_GAUGE_STATUS |
lakshya | 49:61c9f28332ba | 225 | eps_pc.printf(" init BTG fail - %d\n\r", value_u); |
sakthipriya | 0:7b4c00e3912f | 226 | } |
sakthipriya | 0:7b4c00e3912f | 227 | else |
sakthipriya | 0:7b4c00e3912f | 228 | { |
lakshya | 49:61c9f28332ba | 229 | timer_soc.reset(); |
lakshya | 49:61c9f28332ba | 230 | timer_soc.start(); |
sakthipriya | 0:7b4c00e3912f | 231 | actual_data.Batt_gauge_actual[1] = soc(); |
lakshya | 49:61c9f28332ba | 232 | timer_soc.stop(); |
lakshya | 49:61c9f28332ba | 233 | |
lakshya | 15:e09aaaccf134 | 234 | actual_data.Batt_voltage_actual = Batt_voltage.read()*3.3; //1 corresponds to 3.3 scaling factor |
sakthipriya | 0:7b4c00e3912f | 235 | FCTN_EPS_POWERMODE(actual_data.Batt_gauge_actual[1]); |
lakshya | 20:949d13045431 | 236 | EPS_BATTERY_GAUGE_STATUS = 1; //set EPS_BATTERY_GAUGE_STATUS |
lakshya | 49:61c9f28332ba | 237 | eps_pc.printf("init BTG success - %d\n\r", value_u); |
sakthipriya | 0:7b4c00e3912f | 238 | } |
lakshya | 33:76f2b8735501 | 239 | |
lakshya | 33:76f2b8735501 | 240 | //if( read(REG_VERSION) == |
lakshya | 49:61c9f28332ba | 241 | eps_pc.printf("REG_VERSION = %d\r\n",read(REG_VERSION)); |
sakthipriya | 0:7b4c00e3912f | 242 | |
lakshya | 20:949d13045431 | 243 | FCTN_BATTTEMP_INIT(); |
lakshya | 49:61c9f28332ba | 244 | //EPS_BATTERY_GAUGE_STATUS = 1; |
lakshya | 20:949d13045431 | 245 | |
lakshya | 20:949d13045431 | 246 | EPS_INIT_STATUS = 0 ; //clear EPS_INIT_STATUS flag |
lakshya | 20:949d13045431 | 247 | |
lakshya | 20:949d13045431 | 248 | } |
lakshya | 20:949d13045431 | 249 | |
lakshya | 20:949d13045431 | 250 | void FCTN_EPS_HANDLE_CDMS_FAULT() |
lakshya | 20:949d13045431 | 251 | { //Variable names from MMS structure, if not, marked as //Temp name |
lakshya | 20:949d13045431 | 252 | if(CDMS_SW_STATUS == 0b11) //powered on and oc fault |
lakshya | 20:949d13045431 | 253 | if(!CDMS_OC_FAULT) |
lakshya | 20:949d13045431 | 254 | CDMS_SW_STATUS = 0b01; //powered on and working |
lakshya | 20:949d13045431 | 255 | else |
lakshya | 20:949d13045431 | 256 | { |
lakshya | 20:949d13045431 | 257 | if(CDMS_SW_STATUS == 0b10) //powered off and oc fault |
lakshya | 20:949d13045431 | 258 | CDMS_SW_ENABLE = 1; //Temp name |
lakshya | 20:949d13045431 | 259 | if(CDMS_OC_FAULT == 0) |
lakshya | 20:949d13045431 | 260 | { |
lakshya | 20:949d13045431 | 261 | CDMS_FAULT_COUNTER = 0; //Temp name |
lakshya | 20:949d13045431 | 262 | CDMS_SW_STATUS = 0b01; //powered on and working |
lakshya | 20:949d13045431 | 263 | } |
lakshya | 20:949d13045431 | 264 | else |
lakshya | 20:949d13045431 | 265 | { |
lakshya | 20:949d13045431 | 266 | CDMS_FAULT_COUNTER++; |
lakshya | 20:949d13045431 | 267 | if(CDMS_FAULT_COUNTER == 3) |
lakshya | 20:949d13045431 | 268 | CDMS_SW_STATUS = 0b11; //powered on and oc fault |
lakshya | 20:949d13045431 | 269 | else |
lakshya | 20:949d13045431 | 270 | { |
lakshya | 20:949d13045431 | 271 | CDMS_SW_ENABLE = 0; //power OFF switch |
lakshya | 20:949d13045431 | 272 | CDMS_SW_STATUS = 0b10; //powered off and oc fault |
lakshya | 20:949d13045431 | 273 | } |
lakshya | 20:949d13045431 | 274 | } |
lakshya | 20:949d13045431 | 275 | } |
lakshya | 20:949d13045431 | 276 | } |
lakshya | 20:949d13045431 | 277 | |
lakshya | 20:949d13045431 | 278 | void FCTN_EPS_HANDLE_HW_FAULTS() |
lakshya | 20:949d13045431 | 279 | { //Variable names from MMS structure, if not, marked as //Temp name |
lakshya | 20:949d13045431 | 280 | |
lakshya | 20:949d13045431 | 281 | //--------ACS_TR_Z--------// |
lakshya | 20:949d13045431 | 282 | if(ACS_TR_Z_SW_STATUS != 0b11) //!disabled |
lakshya | 20:949d13045431 | 283 | { |
lakshya | 20:949d13045431 | 284 | if(ACS_TR_Z_SW_STATUS == 0b10) //oc fault and powered off |
lakshya | 20:949d13045431 | 285 | ACS_TR_Z_ENABLE = 1; |
lakshya | 20:949d13045431 | 286 | if(ACS_TR_Z_OC_FAULT || ACS_TR_Z_FAULT) |
lakshya | 20:949d13045431 | 287 | { |
lakshya | 20:949d13045431 | 288 | ACS_TR_Z_ENABLE = 0; |
lakshya | 20:949d13045431 | 289 | ACS_TR_Z_FAULT_COUNTER++; //Temp name |
lakshya | 20:949d13045431 | 290 | if(ACS_TR_Z_FAULT_COUNTER == 3) |
lakshya | 20:949d13045431 | 291 | ACS_TR_Z_SW_STATUS = 0b11; //disabled |
lakshya | 20:949d13045431 | 292 | //update in flash as default state at bootup |
lakshya | 20:949d13045431 | 293 | else ACS_TR_Z_SW_STATUS = 0b10; //oc fault and powered off |
lakshya | 20:949d13045431 | 294 | } |
lakshya | 20:949d13045431 | 295 | else |
lakshya | 20:949d13045431 | 296 | { |
lakshya | 20:949d13045431 | 297 | ACS_TR_Z_SW_STATUS = 0b01; //powered on and working; |
lakshya | 20:949d13045431 | 298 | //update in flash also |
lakshya | 20:949d13045431 | 299 | ACS_TR_Z_FAULT_COUNTER = 0; |
lakshya | 20:949d13045431 | 300 | } |
lakshya | 20:949d13045431 | 301 | } |
lakshya | 20:949d13045431 | 302 | |
lakshya | 20:949d13045431 | 303 | //--------ACS_TR_XY--------// |
lakshya | 20:949d13045431 | 304 | //Same as ACS_TR_Z, just replace Z with XY |
lakshya | 20:949d13045431 | 305 | if(ACS_TR_XY_SW_STATUS != 0b11) //!disabled |
lakshya | 20:949d13045431 | 306 | { |
lakshya | 20:949d13045431 | 307 | if(ACS_TR_XY_SW_STATUS == 0b10) //oc fault and powered off |
lakshya | 20:949d13045431 | 308 | ACS_TR_XY_ENABLE = 1; |
lakshya | 20:949d13045431 | 309 | if(ACS_TR_XY_OC_FAULT || ACS_TR_XY_FAULT) |
lakshya | 20:949d13045431 | 310 | { |
lakshya | 20:949d13045431 | 311 | ACS_TR_XY_ENABLE = 0; |
lakshya | 20:949d13045431 | 312 | ACS_TR_XY_FAULT_COUNTER++; //Temp name |
lakshya | 20:949d13045431 | 313 | if(ACS_TR_XY_FAULT_COUNTER == 3) |
lakshya | 20:949d13045431 | 314 | ACS_TR_XY_SW_STATUS = 0b11; //disabled |
lakshya | 20:949d13045431 | 315 | //update in flash as default state at bootup |
lakshya | 20:949d13045431 | 316 | else ACS_TR_XY_SW_STATUS = 0b10; //oc fault and powered off |
lakshya | 20:949d13045431 | 317 | } |
lakshya | 20:949d13045431 | 318 | else |
lakshya | 20:949d13045431 | 319 | { |
lakshya | 20:949d13045431 | 320 | ACS_TR_XY_SW_STATUS = 0b01; //powered on and working; |
lakshya | 20:949d13045431 | 321 | //update in flash also |
lakshya | 20:949d13045431 | 322 | ACS_TR_XY_FAULT_COUNTER = 0; |
lakshya | 20:949d13045431 | 323 | } |
lakshya | 20:949d13045431 | 324 | } |
sakthipriya | 0:7b4c00e3912f | 325 | |
lakshya | 20:949d13045431 | 326 | //--------ACS_ATS1--------// |
lakshya | 20:949d13045431 | 327 | //Same as ACS_ATS2 |
lakshya | 20:949d13045431 | 328 | //if(ACS_ATS1_SW_STATUS & 0b1100 != 0b1100) //!disabled |
lakshya | 20:949d13045431 | 329 | if(ACS_ATS_STATUS&0xC0!=0xC0) |
lakshya | 20:949d13045431 | 330 | { |
lakshya | 20:949d13045431 | 331 | //if(ACS_ATS1_SW_STATUS & 0b1100 == 0b1000) //oc fault and powered off |
lakshya | 20:949d13045431 | 332 | if(ACS_ATS_STATUS&0xC0!=0x80) |
lakshya | 20:949d13045431 | 333 | ATS1_SW_ENABLE = 0; //Temp name |
lakshya | 20:949d13045431 | 334 | if(ACS_ATS1_OC_FAULT) |
lakshya | 20:949d13045431 | 335 | { |
lakshya | 20:949d13045431 | 336 | ATS1_SW_ENABLE = 1; |
lakshya | 20:949d13045431 | 337 | ACS_ATS1_FAULT_COUNTER++; //Temp name |
lakshya | 20:949d13045431 | 338 | if(ACS_ATS1_FAULT_COUNTER == 3) |
lakshya | 20:949d13045431 | 339 | //ACS_ATS1_SW_STATUS = ACS_ATS1_SW_STATUS | 0b1100; //disabled |
lakshya | 20:949d13045431 | 340 | ACS_ATS_STATUS = (ACS_ATS_STATUS&0x0F)|0xC0; |
lakshya | 20:949d13045431 | 341 | //update in flash as default state at bootup |
lakshya | 20:949d13045431 | 342 | else |
lakshya | 20:949d13045431 | 343 | { |
lakshya | 20:949d13045431 | 344 | //ACS_ATS1_SW_STATUS = ACS_ATS1_SW_STATUS | 0b1000; //setting to 10xx |
lakshya | 20:949d13045431 | 345 | ACS_ATS_STATUS = (ACS_ATS_STATUS&0x0F)|0x80; |
lakshya | 20:949d13045431 | 346 | //ACS_ATS1_SW_STATUS = ACS_ATS1_SW_STATUS & 0b1011; //oc fault and powered off |
lakshya | 20:949d13045431 | 347 | } |
lakshya | 20:949d13045431 | 348 | } |
lakshya | 20:949d13045431 | 349 | else |
lakshya | 20:949d13045431 | 350 | { |
lakshya | 20:949d13045431 | 351 | //if(ACS_ATS1_SW_STATUS & 0b1100 == 0b1000) //Device oc fault? |
lakshya | 20:949d13045431 | 352 | if(ACS_ATS_STATUS&0xC0==0x80) |
lakshya | 20:949d13045431 | 353 | ATS1_SW_ENABLE = 1; |
lakshya | 20:949d13045431 | 354 | //ACS_ATS1_SW_STATUS = ACS_ATS1_SW_STATUS & 0b0011; //working but powered off |
lakshya | 20:949d13045431 | 355 | ACS_ATS_STATUS = ACS_ATS_STATUS&0x3F; |
lakshya | 20:949d13045431 | 356 | //Update in flash also |
lakshya | 20:949d13045431 | 357 | ACS_ATS1_FAULT_COUNTER = 0; |
lakshya | 20:949d13045431 | 358 | } |
lakshya | 20:949d13045431 | 359 | } |
lakshya | 20:949d13045431 | 360 | |
lakshya | 20:949d13045431 | 361 | //--------ACS_ATS2--------// |
lakshya | 20:949d13045431 | 362 | //if(ACS_ATS2_SW_STATUS & 0b1100 != 0b1100) //!disabled |
lakshya | 20:949d13045431 | 363 | if(ACS_ATS_STATUS&0x0C!=0x0C) |
lakshya | 20:949d13045431 | 364 | { |
lakshya | 20:949d13045431 | 365 | //if(ACS_ATS2_SW_STATUS & 0b1100 == 0b1000) //oc fault and powered off |
lakshya | 20:949d13045431 | 366 | if(ACS_ATS_STATUS&0x0C!=0x08) |
lakshya | 20:949d13045431 | 367 | ATS2_SW_ENABLE = 0; //Temp name |
lakshya | 20:949d13045431 | 368 | if(ACS_ATS2_OC_FAULT) |
lakshya | 20:949d13045431 | 369 | { |
lakshya | 20:949d13045431 | 370 | ATS2_SW_ENABLE = 1; |
lakshya | 20:949d13045431 | 371 | ACS_ATS2_FAULT_COUNTER++; //Temp name |
lakshya | 20:949d13045431 | 372 | if(ACS_ATS2_FAULT_COUNTER == 3) |
lakshya | 20:949d13045431 | 373 | //ACS_ATS2_SW_STATUS = ACS_ATS2_SW_STATUS | 0b1100; //disabled |
lakshya | 20:949d13045431 | 374 | ACS_ATS_STATUS = (ACS_ATS_STATUS&0xF0)|0x0C; |
lakshya | 20:949d13045431 | 375 | //update in flash as default state at bootup |
lakshya | 20:949d13045431 | 376 | else |
lakshya | 20:949d13045431 | 377 | { |
lakshya | 20:949d13045431 | 378 | //ACS_ATS2_SW_STATUS = ACS_ATS2_SW_STATUS | 0b1000; //setting to 10xx |
lakshya | 20:949d13045431 | 379 | //ACS_ATS2_SW_STATUS = ACS_ATS2_SW_STATUS & 0b1011; //oc fault and powered off |
lakshya | 20:949d13045431 | 380 | ACS_ATS_STATUS = (ACS_ATS_STATUS&0xF0)|0x08; |
lakshya | 20:949d13045431 | 381 | } |
lakshya | 20:949d13045431 | 382 | } |
lakshya | 20:949d13045431 | 383 | else |
lakshya | 20:949d13045431 | 384 | { |
lakshya | 20:949d13045431 | 385 | //if(ACS_ATS2_SW_STATUS & 0b1100 == 0b1000) //Device oc fault? |
lakshya | 20:949d13045431 | 386 | if(ACS_ATS_STATUS&0x0C==0x08) |
lakshya | 20:949d13045431 | 387 | ATS2_SW_ENABLE = 1; |
lakshya | 20:949d13045431 | 388 | //ACS_ATS2_SW_STATUS = ACS_ATS2_SW_STATUS & 0b0011; //working but powered off |
lakshya | 20:949d13045431 | 389 | ACS_ATS_STATUS = ACS_ATS_STATUS&0xF3; |
lakshya | 20:949d13045431 | 390 | //Update in flash also |
lakshya | 20:949d13045431 | 391 | ACS_ATS2_FAULT_COUNTER = 0; |
lakshya | 20:949d13045431 | 392 | } |
lakshya | 20:949d13045431 | 393 | } |
lakshya | 20:949d13045431 | 394 | |
lakshya | 20:949d13045431 | 395 | //--------BCN_TX----------// |
lakshya | 50:6001287f3045 | 396 | /* Commented out to test BCN TC |
lakshya | 20:949d13045431 | 397 | if(BCN_TX_SW_STATUS != 0b11) //!disabled |
lakshya | 20:949d13045431 | 398 | { |
lakshya | 20:949d13045431 | 399 | if(BCN_TX_SW_STATUS == 0b10) //oc fault and powered off |
lakshya | 20:949d13045431 | 400 | BCN_TX_ENABLE = 1; //Temp name |
lakshya | 20:949d13045431 | 401 | if(BCN_TX_OC_FAULT) |
lakshya | 20:949d13045431 | 402 | { |
lakshya | 20:949d13045431 | 403 | BCN_TX_ENABLE = 0; |
lakshya | 20:949d13045431 | 404 | BCN_TX_FAULT_COUNTER++; //Temp name |
lakshya | 20:949d13045431 | 405 | if(BCN_TX_FAULT_COUNTER == 3) |
lakshya | 20:949d13045431 | 406 | BCN_TX_SW_STATUS = 0b11; //disabled |
lakshya | 20:949d13045431 | 407 | //update in flash as default state at bootup |
lakshya | 20:949d13045431 | 408 | else BCN_TX_SW_STATUS = 0b10; //oc fault and powered off |
lakshya | 20:949d13045431 | 409 | |
lakshya | 20:949d13045431 | 410 | } |
lakshya | 20:949d13045431 | 411 | else |
lakshya | 20:949d13045431 | 412 | { |
lakshya | 20:949d13045431 | 413 | BCN_TX_SW_STATUS = 0b01; //powered on and working; |
lakshya | 20:949d13045431 | 414 | //update in flash also |
lakshya | 20:949d13045431 | 415 | BCN_TX_FAULT_COUNTER = 0; |
lakshya | 20:949d13045431 | 416 | } |
lakshya | 20:949d13045431 | 417 | } |
lakshya | 50:6001287f3045 | 418 | */ |
sakthipriya | 0:7b4c00e3912f | 419 | } |
sakthipriya | 0:7b4c00e3912f | 420 | |
sakthipriya | 0:7b4c00e3912f | 421 | //----------------------------------------------------Power algo code--------------------------------------------------------------------// |
lakshya | 15:e09aaaccf134 | 422 | /*update the power modes*/ |
lakshya | 15:e09aaaccf134 | 423 | |
sakthipriya | 0:7b4c00e3912f | 424 | void FCTN_EPS_POWERMODE(float soc) //dummy algo |
sakthipriya | 0:7b4c00e3912f | 425 | { |
lakshya | 49:61c9f28332ba | 426 | if(soc >= EPS_SOC_LEVEL_23*100 ) |
sakthipriya | 0:7b4c00e3912f | 427 | actual_data.power_mode = 3; |
lakshya | 49:61c9f28332ba | 428 | else if(soc >= EPS_SOC_LEVEL_12*100 ) |
lakshya | 49:61c9f28332ba | 429 | actual_data.power_mode = 2; |
lakshya | 49:61c9f28332ba | 430 | else actual_data.power_mode = 1; |
sakthipriya | 0:7b4c00e3912f | 431 | } |
sakthipriya | 0:7b4c00e3912f | 432 | |
sakthipriya | 0:7b4c00e3912f | 433 | //...................................................HK...........................................// |
lakshya | 15:e09aaaccf134 | 434 | /*reading values*/ |
sakthipriya | 3:07e15677a75c | 435 | |
sakthipriya | 3:07e15677a75c | 436 | void FCTN_HK_MAIN() |
sakthipriya | 3:07e15677a75c | 437 | { |
sakthipriya | 3:07e15677a75c | 438 | int Iteration=0; |
sakthipriya | 3:07e15677a75c | 439 | |
sakthipriya | 3:07e15677a75c | 440 | SelectLinea0=0; |
sakthipriya | 3:07e15677a75c | 441 | SelectLinea1=0; |
sakthipriya | 3:07e15677a75c | 442 | SelectLinea2=0; |
sakthipriya | 3:07e15677a75c | 443 | SelectLinea3=0; |
sakthipriya | 3:07e15677a75c | 444 | |
sakthipriya | 3:07e15677a75c | 445 | SelectLineb0=0; |
sakthipriya | 3:07e15677a75c | 446 | SelectLineb1=0; |
sakthipriya | 3:07e15677a75c | 447 | SelectLineb2=0; |
sakthipriya | 3:07e15677a75c | 448 | SelectLineb3=0; |
sakthipriya | 3:07e15677a75c | 449 | |
sakthipriya | 3:07e15677a75c | 450 | //collecting data |
lakshya | 20:949d13045431 | 451 | for(Iteration=0; Iteration<16; Iteration++) |
lakshya | 20:949d13045431 | 452 | { |
sakthipriya | 3:07e15677a75c | 453 | actual_data.voltage_actual[Iteration]=VoltageInput.read(); |
lakshya | 48:9fd15e3e0b53 | 454 | wait_ms(100); //remove |
sakthipriya | 3:07e15677a75c | 455 | actual_data.current_actual[Iteration]=CurrentInput.read(); |
lakshya | 20:949d13045431 | 456 | |
lakshya | 20:949d13045431 | 457 | SelectLinea0=!(SelectLinea0); |
sakthipriya | 3:07e15677a75c | 458 | if(Iteration%2==1) |
sakthipriya | 3:07e15677a75c | 459 | SelectLinea1=!(SelectLinea1); |
sakthipriya | 3:07e15677a75c | 460 | if(Iteration%4==3) |
sakthipriya | 3:07e15677a75c | 461 | SelectLinea2=!(SelectLinea2); |
sakthipriya | 3:07e15677a75c | 462 | if(Iteration%8==7) |
sakthipriya | 3:07e15677a75c | 463 | SelectLinea3=!(SelectLinea3); |
sakthipriya | 3:07e15677a75c | 464 | int s0,s1,s2,s3; |
sakthipriya | 3:07e15677a75c | 465 | s0=SelectLineb0=SelectLinea0; |
lakshya | 20:949d13045431 | 466 | s1=SelectLineb1=SelectLinea2; |
sakthipriya | 3:07e15677a75c | 467 | s2=SelectLineb2=SelectLinea2; |
sakthipriya | 3:07e15677a75c | 468 | s3=SelectLineb3=SelectLinea3; |
lakshya | 20:949d13045431 | 469 | //// printf("\n\r %d %d %d %d", s0,s1,s2,s3); |
sakthipriya | 3:07e15677a75c | 470 | |
sakthipriya | 3:07e15677a75c | 471 | } |
lakshya | 19:79e69017c855 | 472 | for(Iteration=0; Iteration<16; Iteration++) |
lakshya | 20:949d13045431 | 473 | { |
sakthipriya | 3:07e15677a75c | 474 | if(Iteration==14) |
sakthipriya | 3:07e15677a75c | 475 | actual_data.voltage_actual[Iteration]= (-90.7*3.3*actual_data.voltage_actual[Iteration])+190.1543; |
sakthipriya | 3:07e15677a75c | 476 | else |
sakthipriya | 3:07e15677a75c | 477 | actual_data.voltage_actual[Iteration]= actual_data.voltage_actual[Iteration]*3.3*5.63; |
sakthipriya | 3:07e15677a75c | 478 | } |
sakthipriya | 3:07e15677a75c | 479 | |
sakthipriya | 3:07e15677a75c | 480 | for(Iteration=0;Iteration<12;Iteration++){ |
sakthipriya | 3:07e15677a75c | 481 | if(Iteration<8) |
sakthipriya | 3:07e15677a75c | 482 | actual_data.current_actual[Iteration]= actual_data.current_actual[Iteration]*3.3/(50*rsens); |
sakthipriya | 3:07e15677a75c | 483 | else |
sakthipriya | 3:07e15677a75c | 484 | actual_data.current_actual[Iteration]=actual_data.current_actual[Iteration]*3.3; |
sakthipriya | 3:07e15677a75c | 485 | int resistance; |
sakthipriya | 3:07e15677a75c | 486 | |
sakthipriya | 3:07e15677a75c | 487 | resistance=24000*actual_data.current_actual[Iteration]/(3.3-actual_data.current_actual[Iteration]); |
sakthipriya | 3:07e15677a75c | 488 | if(actual_data.current_actual[Iteration]>1.47) |
sakthipriya | 3:07e15677a75c | 489 | { |
sakthipriya | 3:07e15677a75c | 490 | actual_data.current_actual[Iteration]=3694/log(24.032242*resistance); |
sakthipriya | 3:07e15677a75c | 491 | } |
sakthipriya | 3:07e15677a75c | 492 | else{ |
sakthipriya | 3:07e15677a75c | 493 | |
sakthipriya | 3:07e15677a75c | 494 | actual_data.current_actual[Iteration]=3365.4/log(7.60573*resistance); |
sakthipriya | 3:07e15677a75c | 495 | } |
sakthipriya | 3:07e15677a75c | 496 | } |
lakshya | 49:61c9f28332ba | 497 | //actual_data.BAE_temp_actual=(-90.7*3.3*actual_data.BAE_temp_actual)+190.1543; |
lakshya | 49:61c9f28332ba | 498 | actual_data.BAE_temp_actual=(-90.7*3.3*BAE_temp_sensor.read())+190.1543; |
sakthipriya | 3:07e15677a75c | 499 | |
sakthipriya | 3:07e15677a75c | 500 | actual_data.Batt_voltage_actual=Batt_voltage.read()*3.3*5.63; |
sakthipriya | 3:07e15677a75c | 501 | |
sakthipriya | 3:07e15677a75c | 502 | //quantizing data |
sakthipriya | 3:07e15677a75c | 503 | for(Iteration=0; Iteration<16; Iteration++){ |
sakthipriya | 3:07e15677a75c | 504 | |
sakthipriya | 3:07e15677a75c | 505 | if(Iteration==14) |
sakthipriya | 3:07e15677a75c | 506 | quant_data.voltage_quant[Iteration]=quantiz(tstart,tstep,actual_data.voltage_actual[Iteration]); |
sakthipriya | 3:07e15677a75c | 507 | else |
sakthipriya | 3:07e15677a75c | 508 | quant_data.voltage_quant[Iteration]=quantiz(vstart,vstep,actual_data.voltage_actual[Iteration]); |
sakthipriya | 3:07e15677a75c | 509 | |
sakthipriya | 3:07e15677a75c | 510 | } |
sakthipriya | 3:07e15677a75c | 511 | for(Iteration=0;Iteration<12;Iteration++){ |
sakthipriya | 3:07e15677a75c | 512 | if(Iteration<8) |
sakthipriya | 3:07e15677a75c | 513 | quant_data.current_quant[Iteration]=quantiz(cstart,cstep,actual_data.current_actual[Iteration]); |
sakthipriya | 3:07e15677a75c | 514 | else |
sakthipriya | 3:07e15677a75c | 515 | quant_data.current_quant[Iteration]=quantiz(tstart_thermistor,tstep_thermistor,actual_data.current_actual[Iteration]); |
sakthipriya | 3:07e15677a75c | 516 | } |
sakthipriya | 3:07e15677a75c | 517 | for(Iteration=0;Iteration<2;Iteration++){ |
sakthipriya | 3:07e15677a75c | 518 | |
sakthipriya | 3:07e15677a75c | 519 | quant_data.Batt_temp_quant[Iteration]=quantiz(tstart,tstep,actual_data.Batt_temp_actual[Iteration]); |
sakthipriya | 3:07e15677a75c | 520 | } |
sakthipriya | 3:07e15677a75c | 521 | |
sakthipriya | 3:07e15677a75c | 522 | quant_data.Batt_gauge_quant[0]=quantiz(vcell_start,vcell_step,actual_data.Batt_gauge_actual[0]); |
sakthipriya | 3:07e15677a75c | 523 | quant_data.Batt_gauge_quant[1]=quantiz(soc_start,soc_step,actual_data.Batt_gauge_actual[1]); |
sakthipriya | 3:07e15677a75c | 524 | quant_data.Batt_gauge_quant[2]=quantiz(crate_start,crate_step,actual_data.Batt_gauge_actual[2]); |
sakthipriya | 3:07e15677a75c | 525 | quant_data.Batt_gauge_alerts=actual_data.Batt_gauge_actual[3]; |
sakthipriya | 3:07e15677a75c | 526 | |
sakthipriya | 3:07e15677a75c | 527 | quant_data.BAE_temp_quant=quantiz(tstart,tstep,actual_data.BAE_temp_actual); |
sakthipriya | 3:07e15677a75c | 528 | |
lakshya | 20:949d13045431 | 529 | //// for(Iteration=0;Iteration<3;Iteration++){ |
lakshya | 20:949d13045431 | 530 | //// quant_data.AngularSpeed_quant[Iteration]=actual_data.AngularSpeed_actual[Iteration]; |
lakshya | 20:949d13045431 | 531 | //// printf("\n\r w value %f",quant_data.AngularSpeed_quant[Iteration]); |
lakshya | 20:949d13045431 | 532 | //// } |
sakthipriya | 3:07e15677a75c | 533 | |
lakshya | 20:949d13045431 | 534 | //// for(Iteration=0;Iteration<3;Iteration++){ |
lakshya | 20:949d13045431 | 535 | //// quant_data.Bvalue_quant[Iteration]=actual_data.Bvalue_actual[Iteration]; |
lakshya | 20:949d13045431 | 536 | //// printf("\n\r b value %f",quant_data.Bvalue_quant[Iteration]); |
lakshya | 20:949d13045431 | 537 | //// } |
sakthipriya | 3:07e15677a75c | 538 | |
sakthipriya | 3:07e15677a75c | 539 | quant_data.Batt_voltage_quant=quantiz(vstart,vstep,actual_data.Batt_voltage_actual); |
sakthipriya | 3:07e15677a75c | 540 | |
sakthipriya | 3:07e15677a75c | 541 | |
sakthipriya | 3:07e15677a75c | 542 | arch_data.Batt_1_temp=quant_data.Batt_temp_quant[0]; |
sakthipriya | 3:07e15677a75c | 543 | arch_data.Batt_2_temp=quant_data.Batt_temp_quant[1]; |
sakthipriya | 3:07e15677a75c | 544 | arch_data.EPS_PCB_temp=quant_data.voltage_quant[14]; |
sakthipriya | 3:07e15677a75c | 545 | arch_data.Batt_SOC=quant_data.Batt_gauge_quant[1]; |
sakthipriya | 3:07e15677a75c | 546 | arch_data.power_mode=actual_data.power_mode; |
sakthipriya | 5:bb592f3185cc | 547 | arch_data.faultPoll_status=actual_data.faultPoll_status; |
sakthipriya | 5:bb592f3185cc | 548 | arch_data.faultIr_status=actual_data.faultIr_status; |
sakthipriya | 3:07e15677a75c | 549 | arch_data.Batt_voltage=quant_data.Batt_voltage_quant; |
lakshya | 20:949d13045431 | 550 | //// printf("\n\r in hk"); |
sakthipriya | 3:07e15677a75c | 551 | |
sakthipriya | 3:07e15677a75c | 552 | } |
sakthipriya | 3:07e15677a75c | 553 | |
sakthipriya | 5:bb592f3185cc | 554 | void FCTN_APPEND_HKDATA() |
sakthipriya | 5:bb592f3185cc | 555 | { |
lakshya | 33:76f2b8735501 | 556 | LONG_HK_data[1][0] = 0x28; |
lakshya | 33:76f2b8735501 | 557 | LONG_HK_data[1][1] = 0x00; |
lakshya | 33:76f2b8735501 | 558 | LONG_HK_data[1][2] = 0x00; |
lakshya | 33:76f2b8735501 | 559 | LONG_HK_data[1][3] = 0x00; |
lakshya | 33:76f2b8735501 | 560 | LONG_HK_data[1][4] = ACS_ATS_STATUS; |
lakshya | 33:76f2b8735501 | 561 | LONG_HK_data[1][5] = ACS_TR_XY_SW_STATUS; |
lakshya | 33:76f2b8735501 | 562 | LONG_HK_data[1][5] = (LONG_HK_data[1][5]<<2)| ACS_TR_Z_SW_STATUS; |
lakshya | 33:76f2b8735501 | 563 | LONG_HK_data[1][5] = (LONG_HK_data[1][5]<<4) | ACS_STATE; |
lakshya | 27:61c856be467e | 564 | |
lakshya | 33:76f2b8735501 | 565 | LONG_HK_data[1][6] = ACS_DETUMBLING_ALGO_TYPE; |
lakshya | 33:76f2b8735501 | 566 | LONG_HK_data[1][6] = (LONG_HK_data[1][6]<<2) | BCN_TX_SW_STATUS; |
lakshya | 33:76f2b8735501 | 567 | LONG_HK_data[1][6] = (LONG_HK_data[1][6]<<1) | BCN_SPND_TX; |
lakshya | 33:76f2b8735501 | 568 | LONG_HK_data[1][6] = (LONG_HK_data[1][6]<<1) | BCN_FEN; |
lakshya | 33:76f2b8735501 | 569 | LONG_HK_data[1][6] = (LONG_HK_data[1][6]<<1) | BCN_LONG_MSG_TYPE; |
lakshya | 33:76f2b8735501 | 570 | LONG_HK_data[1][6] = (LONG_HK_data[1][6]<<1) | EPS_BTRY_HTR_AUTO;//EPS_BATTERY_HEATER_ENABLE |
lakshya | 33:76f2b8735501 | 571 | LONG_HK_data[1][6] = (LONG_HK_data[1][6]<<1); |
lakshya | 27:61c856be467e | 572 | //now one spares in BAE_HK_data[5] |
lakshya | 33:76f2b8735501 | 573 | LONG_HK_data[1][7] = BAE_RESET_COUNTER; |
lakshya | 33:76f2b8735501 | 574 | LONG_HK_data[1][8] = EPS_SOC_LEVEL_12; |
lakshya | 33:76f2b8735501 | 575 | LONG_HK_data[1][9] = EPS_SOC_LEVEL_23; |
lakshya | 33:76f2b8735501 | 576 | LONG_HK_data[1][10] = ACS_MAG_TIME_DELAY; |
lakshya | 33:76f2b8735501 | 577 | LONG_HK_data[1][11] = ACS_DEMAG_TIME_DELAY; |
lakshya | 33:76f2b8735501 | 578 | LONG_HK_data[1][12] = EPS_BAT_TEMP_LOW; |
lakshya | 33:76f2b8735501 | 579 | LONG_HK_data[1][13] = EPS_BAT_TEMP_HIGH; |
lakshya | 33:76f2b8735501 | 580 | LONG_HK_data[1][14] = EPS_BAT_TEMP_DEFAULT; |
lakshya | 33:76f2b8735501 | 581 | LONG_HK_data[1][15] = ACS_MM_X_COMSN >> 8; |
lakshya | 33:76f2b8735501 | 582 | LONG_HK_data[1][16] = ACS_MM_X_COMSN; |
sakthipriya | 5:bb592f3185cc | 583 | |
lakshya | 33:76f2b8735501 | 584 | LONG_HK_data[1][17] = ACS_MM_Y_COMSN >> 8; |
lakshya | 33:76f2b8735501 | 585 | LONG_HK_data[1][18] = ACS_MM_Y_COMSN; |
lakshya | 20:949d13045431 | 586 | |
lakshya | 33:76f2b8735501 | 587 | LONG_HK_data[1][19] = ACS_MG_X_COMSN >> 8; |
lakshya | 33:76f2b8735501 | 588 | LONG_HK_data[1][20] = ACS_MG_X_COMSN; |
lakshya | 20:949d13045431 | 589 | |
lakshya | 33:76f2b8735501 | 590 | LONG_HK_data[1][21] = ACS_MG_Y_COMSN >> 8; |
lakshya | 33:76f2b8735501 | 591 | LONG_HK_data[1][22] = ACS_MG_Y_COMSN; |
lakshya | 20:949d13045431 | 592 | |
lakshya | 33:76f2b8735501 | 593 | LONG_HK_data[1][23] = ACS_MM_Z_COMSN >> 8; |
lakshya | 33:76f2b8735501 | 594 | LONG_HK_data[1][24] = ACS_MM_Z_COMSN; |
lakshya | 20:949d13045431 | 595 | |
lakshya | 33:76f2b8735501 | 596 | LONG_HK_data[1][25] = ACS_MG_Z_COMSN >> 8; |
lakshya | 33:76f2b8735501 | 597 | LONG_HK_data[1][26] = ACS_MG_Z_COMSN; |
lakshya | 20:949d13045431 | 598 | |
lakshya | 33:76f2b8735501 | 599 | LONG_HK_data[1][27] = ACS_Z_FIXED_MOMENT >> 8; |
lakshya | 33:76f2b8735501 | 600 | LONG_HK_data[1][28] = ACS_Z_FIXED_MOMENT; |
lakshya | 20:949d13045431 | 601 | |
lakshya | 20:949d13045431 | 602 | //BAE RAM PARAMETER |
lakshya | 33:76f2b8735501 | 603 | LONG_HK_data[1][29] = BAE_INIT_STATUS; |
lakshya | 33:76f2b8735501 | 604 | LONG_HK_data[1][29] = (LONG_HK_data[1][29]<<1) | 0;//change it================================ |
lakshya | 33:76f2b8735501 | 605 | LONG_HK_data[1][29] = (LONG_HK_data[1][29]<<1) | BCN_INIT_STATUS; |
lakshya | 33:76f2b8735501 | 606 | LONG_HK_data[1][29] = (LONG_HK_data[1][29]<<1) | BCN_TX_MAIN_STATUS; |
lakshya | 33:76f2b8735501 | 607 | LONG_HK_data[1][29] = (LONG_HK_data[1][29]<<3) | BCN_TX_STATUS; |
lakshya | 33:76f2b8735501 | 608 | LONG_HK_data[1][29] = (LONG_HK_data[1][29]<<3) | ACS_INIT_STATUS; |
lakshya | 20:949d13045431 | 609 | |
lakshya | 33:76f2b8735501 | 610 | LONG_HK_data[1][30] = ACS_DATA_ACQ_STATUS; |
lakshya | 33:76f2b8735501 | 611 | LONG_HK_data[1][30] = (LONG_HK_data[1][30]<<1) | ACS_MAIN_STATUS; |
lakshya | 33:76f2b8735501 | 612 | LONG_HK_data[1][30] = (LONG_HK_data[1][30]<<4) | ACS_STATUS; |
lakshya | 33:76f2b8735501 | 613 | LONG_HK_data[1][30] = (LONG_HK_data[1][30]<<1) | EPS_INIT_STATUS; |
lakshya | 27:61c856be467e | 614 | |
lakshya | 33:76f2b8735501 | 615 | LONG_HK_data[1][31] = EPS_BATTERY_GAUGE_STATUS; |
lakshya | 33:76f2b8735501 | 616 | LONG_HK_data[1][31] = (LONG_HK_data[1][31]<<1) | EPS_MAIN_STATUS; |
lakshya | 33:76f2b8735501 | 617 | LONG_HK_data[1][31] = (LONG_HK_data[1][31]<<1) | EPS_BTRY_TMP_STATUS;; |
lakshya | 33:76f2b8735501 | 618 | LONG_HK_data[1][31] = (LONG_HK_data[1][31]<<3) | EPS_STATUS; |
lakshya | 33:76f2b8735501 | 619 | LONG_HK_data[1][31] = (LONG_HK_data[1][31]<<2) | CDMS_SW_STATUS; |
lakshya | 27:61c856be467e | 620 | ////BAE_HK_data[31] = (BAE_HK_data[31]<<1) | EPS_BTRY_HTR_STATUS;//new to : implement=========== |
lakshya | 27:61c856be467e | 621 | |
lakshya | 33:76f2b8735501 | 622 | LONG_HK_data[1][32] = EPS_BTRY_HTR;// to be disscussed |
lakshya | 27:61c856be467e | 623 | //spare 4 |
lakshya | 33:76f2b8735501 | 624 | LONG_HK_data[1][32] = (LONG_HK_data[1][32]<<7) | BAE_STANDBY; |
lakshya | 49:61c9f28332ba | 625 | |
lakshya | 20:949d13045431 | 626 | // 6 next telemetries value to be given by registers |
lakshya | 33:76f2b8735501 | 627 | LONG_HK_data[1][33] = ATS1_EVENT_STATUS_RGTR; |
lakshya | 33:76f2b8735501 | 628 | LONG_HK_data[1][34] = ATS1_SENTRAL_STATUS_RGTR; |
lakshya | 33:76f2b8735501 | 629 | LONG_HK_data[1][35] = ATS1_ERROR_RGTR; |
lakshya | 33:76f2b8735501 | 630 | LONG_HK_data[1][36] = ATS2_EVENT_STATUS_RGTR; |
lakshya | 33:76f2b8735501 | 631 | LONG_HK_data[1][37] = ATS2_SENTRAL_STATUS_RGTR; |
lakshya | 33:76f2b8735501 | 632 | LONG_HK_data[1][38] = ATS2_ERROR_RGTR; |
lakshya | 20:949d13045431 | 633 | |
lakshya | 33:76f2b8735501 | 634 | LONG_HK_data[1][39] = BCN_FAIL_COUNT; |
lakshya | 33:76f2b8735501 | 635 | LONG_HK_data[1][40] = actual_data.power_mode; |
lakshya | 33:76f2b8735501 | 636 | LONG_HK_data[1][41] = HTR_CYCLE_COUNTER;//new to : implement |
lakshya | 20:949d13045431 | 637 | |
lakshya | 33:76f2b8735501 | 638 | LONG_HK_data[1][42] = BAE_I2C_COUNTER; |
lakshya | 33:76f2b8735501 | 639 | LONG_HK_data[1][43] = BAE_I2C_COUNTER>>8; |
lakshya | 33:76f2b8735501 | 640 | LONG_HK_data[1][44] = ACS_MAIN_COUNTER; |
lakshya | 33:76f2b8735501 | 641 | LONG_HK_data[1][45] = ACS_MAIN_COUNTER>>8; |
lakshya | 33:76f2b8735501 | 642 | LONG_HK_data[1][46] = BCN_TX_MAIN_COUNTER; |
lakshya | 33:76f2b8735501 | 643 | LONG_HK_data[1][47] = BCN_TX_MAIN_COUNTER>>8; |
lakshya | 33:76f2b8735501 | 644 | LONG_HK_data[1][48] = EPS_MAIN_COUNTER; |
lakshya | 33:76f2b8735501 | 645 | LONG_HK_data[1][49] = EPS_MAIN_COUNTER>>8; |
lakshya | 49:61c9f28332ba | 646 | |
lakshya | 49:61c9f28332ba | 647 | uint8_t days,hours,mins; |
lakshya | 49:61c9f28332ba | 648 | RETURN_UPTIME(BAE_uptime.read(),&days,&hours,&mins); |
lakshya | 49:61c9f28332ba | 649 | LONG_HK_data[1][50] = days; |
lakshya | 49:61c9f28332ba | 650 | RETURN_UPTIME(I2C_last.read(),&days,&hours,&mins); |
lakshya | 49:61c9f28332ba | 651 | LONG_HK_data[1][50] = (LONG_HK_data[1][50]) | (hours>>2); |
lakshya | 49:61c9f28332ba | 652 | LONG_HK_data[1][51] = hours; |
lakshya | 49:61c9f28332ba | 653 | LONG_HK_data[1][51] = (LONG_HK_data[1][51]<<6) | mins; |
lakshya | 49:61c9f28332ba | 654 | |
lakshya | 49:61c9f28332ba | 655 | |
lakshya | 49:61c9f28332ba | 656 | LONG_HK_data[1][52] = actual_data.bit_data_acs_mm[0]; |
lakshya | 49:61c9f28332ba | 657 | LONG_HK_data[1][53] = actual_data.bit_data_acs_mm[0]>>8; |
lakshya | 49:61c9f28332ba | 658 | LONG_HK_data[1][54] = actual_data.bit_data_acs_mm[1]; |
lakshya | 49:61c9f28332ba | 659 | LONG_HK_data[1][55] = actual_data.bit_data_acs_mm[1]>>8; |
lakshya | 49:61c9f28332ba | 660 | LONG_HK_data[1][56] = actual_data.bit_data_acs_mm[2]; |
lakshya | 49:61c9f28332ba | 661 | LONG_HK_data[1][57] = actual_data.bit_data_acs_mm[2]>>8; |
lakshya | 20:949d13045431 | 662 | |
lakshya | 49:61c9f28332ba | 663 | LONG_HK_data[1][58] = actual_data.bit_data_acs_mg[0]; |
lakshya | 49:61c9f28332ba | 664 | LONG_HK_data[1][59] = actual_data.bit_data_acs_mg[0]>>8; |
lakshya | 49:61c9f28332ba | 665 | LONG_HK_data[1][60] = actual_data.bit_data_acs_mg[1]; |
lakshya | 49:61c9f28332ba | 666 | LONG_HK_data[1][61] = actual_data.bit_data_acs_mg[1]>>8; |
lakshya | 49:61c9f28332ba | 667 | LONG_HK_data[1][62] = actual_data.bit_data_acs_mg[2]; |
lakshya | 49:61c9f28332ba | 668 | LONG_HK_data[1][63] = actual_data.bit_data_acs_mg[2]>>8; |
lakshya | 20:949d13045431 | 669 | |
lakshya | 49:61c9f28332ba | 670 | LONG_HK_data[1][64] = BCN_TX_OC_FAULT; |
lakshya | 49:61c9f28332ba | 671 | LONG_HK_data[1][64] = (LONG_HK_data[1][64]<<1) | ACS_TR_XY_ENABLE; |
lakshya | 49:61c9f28332ba | 672 | LONG_HK_data[1][64] = (LONG_HK_data[1][64]<<1) | ACS_TR_Z_ENABLE; |
lakshya | 49:61c9f28332ba | 673 | LONG_HK_data[1][64] = (LONG_HK_data[1][64]<<1) | ACS_TR_XY_OC_FAULT; |
lakshya | 49:61c9f28332ba | 674 | LONG_HK_data[1][64] = (LONG_HK_data[1][64]<<1) | ACS_TR_Z_OC_FAULT; |
lakshya | 49:61c9f28332ba | 675 | LONG_HK_data[1][64] = (LONG_HK_data[1][64]<<1) | ACS_TR_XY_FAULT; |
lakshya | 49:61c9f28332ba | 676 | LONG_HK_data[1][64] = (LONG_HK_data[1][64]<<1) | EPS_CHARGER_FAULT; |
lakshya | 49:61c9f28332ba | 677 | LONG_HK_data[1][64] = (LONG_HK_data[1][64]<<1) | EPS_CHARGER_STATUS; |
lakshya | 49:61c9f28332ba | 678 | |
lakshya | 49:61c9f28332ba | 679 | LONG_HK_data[1][65] = EPS_BATTERY_GAUGE_ALERT; |
lakshya | 49:61c9f28332ba | 680 | LONG_HK_data[1][65] = (LONG_HK_data[1][65]<<1) | CDMS_OC_FAULT; |
lakshya | 49:61c9f28332ba | 681 | LONG_HK_data[1][65] = (LONG_HK_data[1][65]<<1) | ACS_ATS1_OC_FAULT; |
lakshya | 49:61c9f28332ba | 682 | LONG_HK_data[1][65] = (LONG_HK_data[1][65]<<1) | ACS_ATS2_OC_FAULT; |
lakshya | 49:61c9f28332ba | 683 | LONG_HK_data[1][65] = (LONG_HK_data[1][65]<<1) | ACS_TR_Z_FAULT; |
lakshya | 49:61c9f28332ba | 684 | LONG_HK_data[1][65] = (LONG_HK_data[1][65]<<3); |
lakshya | 20:949d13045431 | 685 | //3 spare |
lakshya | 20:949d13045431 | 686 | |
lakshya | 49:61c9f28332ba | 687 | LONG_HK_data[1][66] = ACS_TR_X_PWM; |
lakshya | 49:61c9f28332ba | 688 | LONG_HK_data[1][67] = ACS_TR_Y_PWM; |
lakshya | 49:61c9f28332ba | 689 | LONG_HK_data[1][68] = ACS_TR_Z_PWM; |
lakshya | 20:949d13045431 | 690 | //spare byte |
lakshya | 20:949d13045431 | 691 | //assigned it to counter HTR_CYCLE_COUNTER |
lakshya | 20:949d13045431 | 692 | |
lakshya | 20:949d13045431 | 693 | //assign it b_scz_angle |
lakshya | 49:61c9f28332ba | 694 | LONG_HK_data[1][69] = B_SCZ_ANGLE>>4; ; |
lakshya | 49:61c9f28332ba | 695 | LONG_HK_data[1][69] = (LONG_HK_data[1][69]<<1) | alarmmode; |
lakshya | 49:61c9f28332ba | 696 | LONG_HK_data[1][69] = (LONG_HK_data[1][69]<<1) | controlmode_mms; |
lakshya | 49:61c9f28332ba | 697 | LONG_HK_data[1][69] = (LONG_HK_data[1][69]<<1) | singularity_flag_mms; |
lakshya | 49:61c9f28332ba | 698 | LONG_HK_data[1][69] = (LONG_HK_data[1][69]<<1); |
lakshya | 49:61c9f28332ba | 699 | //1 bit spare |
lakshya | 20:949d13045431 | 700 | |
lakshya | 20:949d13045431 | 701 | for(int i=0;i<9;i++) |
lakshya | 20:949d13045431 | 702 | { |
lakshya | 49:61c9f28332ba | 703 | LONG_HK_data[1][70+i] = invjm_mms[i]; |
lakshya | 33:76f2b8735501 | 704 | LONG_HK_data[1][81+i] = jm_mms[i]; |
lakshya | 20:949d13045431 | 705 | } |
lakshya | 20:949d13045431 | 706 | |
lakshya | 49:61c9f28332ba | 707 | for(int i=0;i<2;i++) |
lakshya | 49:61c9f28332ba | 708 | LONG_HK_data[1][79+i] = bb_mms[i]; |
lakshya | 20:949d13045431 | 709 | |
lakshya | 20:949d13045431 | 710 | for(int i=0;i<16;i++) |
lakshya | 20:949d13045431 | 711 | { |
lakshya | 33:76f2b8735501 | 712 | LONG_HK_data[1][90+i] = quant_data.voltage_quant[i]; |
lakshya | 33:76f2b8735501 | 713 | LONG_HK_data[1][106+i] = quant_data.current_quant[i]; |
lakshya | 20:949d13045431 | 714 | } |
lakshya | 20:949d13045431 | 715 | |
lakshya | 33:76f2b8735501 | 716 | LONG_HK_data[1][122] = quant_data.Batt_voltage_quant; |
lakshya | 33:76f2b8735501 | 717 | LONG_HK_data[1][123] = quant_data.BAE_temp_quant; |
lakshya | 33:76f2b8735501 | 718 | LONG_HK_data[1][124] = (uint8_t)(actual_data.Batt_gauge_actual[1]); |
lakshya | 33:76f2b8735501 | 719 | LONG_HK_data[1][125] = quant_data.Batt_temp_quant[0]; |
lakshya | 33:76f2b8735501 | 720 | LONG_HK_data[1][126] = quant_data.Batt_temp_quant[1]; |
lakshya | 33:76f2b8735501 | 721 | LONG_HK_data[1][127] = BCN_TMP; |
lakshya | 33:76f2b8735501 | 722 | LONG_HK_data[1][128] = 0x00; |
lakshya | 33:76f2b8735501 | 723 | LONG_HK_data[1][129] = 0x00; |
lakshya | 33:76f2b8735501 | 724 | LONG_HK_data[1][130] = 0x00; |
lakshya | 33:76f2b8735501 | 725 | LONG_HK_data[1][131] = 0x00; |
lakshya | 20:949d13045431 | 726 | uint16_t crc = crc_hk_data(); |
lakshya | 33:76f2b8735501 | 727 | LONG_HK_data[1][132] = (uint8_t)(crc >> 8); |
lakshya | 33:76f2b8735501 | 728 | LONG_HK_data[1][133] = crc; |
lakshya | 20:949d13045431 | 729 | |
lakshya | 20:949d13045431 | 730 | //=================================================== |
lakshya | 20:949d13045431 | 731 | /* can be retrived from the earlier code (function)*/ |
sakthipriya | 5:bb592f3185cc | 732 | } |
sakthipriya | 5:bb592f3185cc | 733 | |
sakthipriya | 5:bb592f3185cc | 734 | uint8_t quantiz(float start,float step,float x) |
sakthipriya | 0:7b4c00e3912f | 735 | { |
sakthipriya | 0:7b4c00e3912f | 736 | int y=(x-start)/step; |
sakthipriya | 0:7b4c00e3912f | 737 | if(y<=0)y=0; |
sakthipriya | 0:7b4c00e3912f | 738 | if(y>=255)y=255; |
sakthipriya | 0:7b4c00e3912f | 739 | return y; |
sakthipriya | 0:7b4c00e3912f | 740 | } |
sakthipriya | 0:7b4c00e3912f | 741 | |
sakthipriya | 3:07e15677a75c | 742 | bool firstCount=true; // goes to EPS init |
sakthipriya | 3:07e15677a75c | 743 | |
sakthipriya | 3:07e15677a75c | 744 | |
sakthipriya | 3:07e15677a75c | 745 | void saveMin(char x,char y){ |
sakthipriya | 3:07e15677a75c | 746 | if(y<x){ |
sakthipriya | 3:07e15677a75c | 747 | x=y; |
sakthipriya | 3:07e15677a75c | 748 | } |
sakthipriya | 3:07e15677a75c | 749 | |
sakthipriya | 3:07e15677a75c | 750 | } |
sakthipriya | 3:07e15677a75c | 751 | void saveMax(char x,char y){ |
sakthipriya | 3:07e15677a75c | 752 | if (y>x) |
sakthipriya | 3:07e15677a75c | 753 | { |
sakthipriya | 3:07e15677a75c | 754 | x=y; |
sakthipriya | 3:07e15677a75c | 755 | } |
sakthipriya | 0:7b4c00e3912f | 756 | } |
sakthipriya | 0:7b4c00e3912f | 757 | |
sakthipriya | 3:07e15677a75c | 758 | |
sakthipriya | 3:07e15677a75c | 759 | void minMaxHkData(){ |
sakthipriya | 3:07e15677a75c | 760 | if(firstCount==true){ |
sakthipriya | 3:07e15677a75c | 761 | for (int i = 0; i < 16; ++i){ |
sakthipriya | 3:07e15677a75c | 762 | bae_HK_minmax.voltage_min[i] = quant_data.voltage_quant[i]; |
sakthipriya | 3:07e15677a75c | 763 | bae_HK_minmax.voltage_max[i] = quant_data.voltage_quant[i]; |
sakthipriya | 3:07e15677a75c | 764 | } |
sakthipriya | 3:07e15677a75c | 765 | for (int i = 0; i < 12; ++i){ |
sakthipriya | 3:07e15677a75c | 766 | bae_HK_minmax.current_min[i] = quant_data.current_quant[i]; |
sakthipriya | 3:07e15677a75c | 767 | bae_HK_minmax.current_max[i] = quant_data.current_quant[i]; |
sakthipriya | 3:07e15677a75c | 768 | } |
sakthipriya | 3:07e15677a75c | 769 | |
sakthipriya | 3:07e15677a75c | 770 | for (int i = 0; i < 2; ++i){ |
sakthipriya | 3:07e15677a75c | 771 | bae_HK_minmax.Batt_temp_min[i] = quant_data.Batt_temp_quant[i]; |
sakthipriya | 3:07e15677a75c | 772 | bae_HK_minmax.Batt_temp_max[i] = quant_data.Batt_temp_quant[i]; |
sakthipriya | 3:07e15677a75c | 773 | } |
lakshya | 20:949d13045431 | 774 | /* |
sakthipriya | 3:07e15677a75c | 775 | for (int i = 0; i < 3; ++i){ |
sakthipriya | 3:07e15677a75c | 776 | bae_HK_minmax.Batt_gauge_min[i] = quant_data.Batt_gauge_quant[i]; |
sakthipriya | 3:07e15677a75c | 777 | bae_HK_minmax.Batt_gauge_max[i] = quant_data.Batt_gauge_quant[i]; |
sakthipriya | 3:07e15677a75c | 778 | } |
lakshya | 20:949d13045431 | 779 | */ |
lakshya | 20:949d13045431 | 780 | bae_HK_minmax.Batt_SOC_min = quant_data.Batt_gauge_quant[1]; |
lakshya | 20:949d13045431 | 781 | bae_HK_minmax.Batt_SOC_max = quant_data.Batt_gauge_quant[1]; |
lakshya | 20:949d13045431 | 782 | |
lakshya | 20:949d13045431 | 783 | bae_HK_minmax.BCN_TEMP_min = BCN_TMP; |
lakshya | 20:949d13045431 | 784 | bae_HK_minmax.BCN_TEMP_min = BCN_TMP; |
lakshya | 20:949d13045431 | 785 | |
sakthipriya | 3:07e15677a75c | 786 | for (int i = 0; i < 3; ++i){ |
lakshya | 20:949d13045431 | 787 | bae_HK_minmax.bit_data_acs_mg_min[i] = actual_data.bit_data_acs_mg[i]; |
lakshya | 20:949d13045431 | 788 | bae_HK_minmax.bit_data_acs_mg_max[i] = actual_data.bit_data_acs_mg[i]; |
sakthipriya | 3:07e15677a75c | 789 | } |
sakthipriya | 3:07e15677a75c | 790 | for (int i = 0; i < 3; ++i){ |
lakshya | 20:949d13045431 | 791 | bae_HK_minmax.bit_data_acs_mm_min[i] = actual_data.bit_data_acs_mm[i];//Bvalue_quant earlier |
lakshya | 20:949d13045431 | 792 | bae_HK_minmax.bit_data_acs_mm_max[i] = actual_data.bit_data_acs_mm[i]; |
sakthipriya | 3:07e15677a75c | 793 | } |
sakthipriya | 3:07e15677a75c | 794 | bae_HK_minmax.BAE_temp_min=quant_data.BAE_temp_quant; |
sakthipriya | 3:07e15677a75c | 795 | bae_HK_minmax.BAE_temp_max=quant_data.BAE_temp_quant; |
sakthipriya | 3:07e15677a75c | 796 | bae_HK_minmax.Batt_voltage_min=quant_data.Batt_voltage_quant; |
sakthipriya | 3:07e15677a75c | 797 | bae_HK_minmax.Batt_voltage_max=quant_data.Batt_voltage_quant; |
sakthipriya | 3:07e15677a75c | 798 | |
sakthipriya | 3:07e15677a75c | 799 | } |
sakthipriya | 3:07e15677a75c | 800 | else { |
sakthipriya | 3:07e15677a75c | 801 | for (int i = 0; i < 16; ++i) |
sakthipriya | 3:07e15677a75c | 802 | { |
sakthipriya | 3:07e15677a75c | 803 | saveMin(bae_HK_minmax.voltage_min[i],quant_data.voltage_quant[i]); |
sakthipriya | 3:07e15677a75c | 804 | saveMax(bae_HK_minmax.voltage_max[i],quant_data.voltage_quant[i]); |
sakthipriya | 3:07e15677a75c | 805 | } |
sakthipriya | 3:07e15677a75c | 806 | for (int i = 0; i < 12; ++i) |
sakthipriya | 3:07e15677a75c | 807 | { |
sakthipriya | 3:07e15677a75c | 808 | saveMin(bae_HK_minmax.current_min[i],quant_data.current_quant[i]); |
sakthipriya | 3:07e15677a75c | 809 | saveMax(bae_HK_minmax.current_max[i],quant_data.current_quant[i]); |
sakthipriya | 3:07e15677a75c | 810 | } |
sakthipriya | 3:07e15677a75c | 811 | |
sakthipriya | 3:07e15677a75c | 812 | for (int i = 0; i < 2; ++i) |
sakthipriya | 3:07e15677a75c | 813 | { |
sakthipriya | 3:07e15677a75c | 814 | saveMin(bae_HK_minmax.Batt_temp_min[i],quant_data.Batt_temp_quant[i]); |
sakthipriya | 3:07e15677a75c | 815 | saveMax(bae_HK_minmax.Batt_temp_max[i],quant_data.Batt_temp_quant[i]); |
sakthipriya | 3:07e15677a75c | 816 | } |
lakshya | 20:949d13045431 | 817 | /* |
sakthipriya | 3:07e15677a75c | 818 | for (int i = 0; i < 3; ++i) |
sakthipriya | 3:07e15677a75c | 819 | { |
sakthipriya | 3:07e15677a75c | 820 | saveMin(bae_HK_minmax.Batt_gauge_min[i], quant_data.Batt_gauge_quant[i]); |
sakthipriya | 3:07e15677a75c | 821 | saveMax(bae_HK_minmax.Batt_gauge_max[i], quant_data.Batt_gauge_quant[i]); |
sakthipriya | 3:07e15677a75c | 822 | } |
lakshya | 20:949d13045431 | 823 | */ |
lakshya | 20:949d13045431 | 824 | saveMin(bae_HK_minmax.Batt_SOC_min, quant_data.Batt_gauge_quant[1]); |
lakshya | 20:949d13045431 | 825 | saveMax(bae_HK_minmax.Batt_SOC_max, quant_data.Batt_gauge_quant[1]); |
lakshya | 20:949d13045431 | 826 | |
lakshya | 20:949d13045431 | 827 | saveMin(bae_HK_minmax.BCN_TEMP_min, BCN_TMP); |
lakshya | 20:949d13045431 | 828 | saveMin(bae_HK_minmax.BCN_TEMP_max, BCN_TMP); |
lakshya | 20:949d13045431 | 829 | |
sakthipriya | 3:07e15677a75c | 830 | for (int i = 0; i < 3; ++i) |
sakthipriya | 3:07e15677a75c | 831 | { |
lakshya | 20:949d13045431 | 832 | saveMin(bae_HK_minmax.bit_data_acs_mg_min[i], actual_data.bit_data_acs_mg[i]); |
lakshya | 20:949d13045431 | 833 | saveMax(bae_HK_minmax.bit_data_acs_mg_max[i], actual_data.bit_data_acs_mg[i]); |
sakthipriya | 3:07e15677a75c | 834 | } |
sakthipriya | 3:07e15677a75c | 835 | for (int i = 0; i < 3; ++i) |
sakthipriya | 3:07e15677a75c | 836 | { |
lakshya | 20:949d13045431 | 837 | saveMin(bae_HK_minmax.bit_data_acs_mm_min[i], actual_data.bit_data_acs_mm[i]); |
lakshya | 20:949d13045431 | 838 | saveMax(bae_HK_minmax.bit_data_acs_mm_max[i], actual_data.bit_data_acs_mm[i]); |
sakthipriya | 3:07e15677a75c | 839 | } |
sakthipriya | 3:07e15677a75c | 840 | saveMin(bae_HK_minmax.BAE_temp_min,quant_data.BAE_temp_quant); |
sakthipriya | 3:07e15677a75c | 841 | saveMax(bae_HK_minmax.BAE_temp_max,quant_data.BAE_temp_quant); |
sakthipriya | 3:07e15677a75c | 842 | saveMin(bae_HK_minmax.Batt_voltage_min,quant_data.Batt_voltage_quant); |
sakthipriya | 3:07e15677a75c | 843 | saveMin(bae_HK_minmax.Batt_voltage_max,quant_data.Batt_voltage_quant); |
sakthipriya | 3:07e15677a75c | 844 | |
sakthipriya | 3:07e15677a75c | 845 | |
sakthipriya | 3:07e15677a75c | 846 | } |
sakthipriya | 3:07e15677a75c | 847 | firstCount=false; |
sakthipriya | 3:07e15677a75c | 848 | } |
sakthipriya | 3:07e15677a75c | 849 | |
sakthipriya | 3:07e15677a75c | 850 | |
sakthipriya | 0:7b4c00e3912f | 851 | //............................................BATTERY GAUGE......................................// |
sakthipriya | 0:7b4c00e3912f | 852 | void FCTN_BATTERYGAUGE_INIT() |
sakthipriya | 0:7b4c00e3912f | 853 | { |
sakthipriya | 0:7b4c00e3912f | 854 | disable_sleep(); |
sakthipriya | 0:7b4c00e3912f | 855 | disable_hibernate(); |
sakthipriya | 0:7b4c00e3912f | 856 | socChangeAlertEnabled(true); //enabling alert on soc changing by 1% |
sakthipriya | 0:7b4c00e3912f | 857 | emptyAlertThreshold(32);//setting empty alert threshold to 32% soc |
sakthipriya | 0:7b4c00e3912f | 858 | vAlertMinMaxThreshold();//set min, max value of Valrt register |
sakthipriya | 0:7b4c00e3912f | 859 | vResetThresholdSet();//set threshold voltage for reset |
sakthipriya | 0:7b4c00e3912f | 860 | vResetAlertEnabled(true);//enable alert on reset for V < Vreset |
lakshya | 33:76f2b8735501 | 861 | int ack = write(REG_STATUS, read(REG_STATUS) & 0xFEFF); //Clearing Reset Indicator bit |
lakshya | 49:61c9f28332ba | 862 | if( ack == 0 ) eps_pc.printf("BTG init success\n\r"); |
lakshya | 49:61c9f28332ba | 863 | else eps_pc.printf("BTG init fail ack = %d\n\r", ack); |
lakshya | 33:76f2b8735501 | 864 | write(REG_STATUS, read(REG_STATUS) & 0xFEFF); //Clearing Reset Indicator bit |
sakthipriya | 0:7b4c00e3912f | 865 | } |
sakthipriya | 0:7b4c00e3912f | 866 | |
lakshya | 33:76f2b8735501 | 867 | int FCTN_BATTERYGAUGE_MAIN(float Battery_parameters[4], float temp) |
sakthipriya | 0:7b4c00e3912f | 868 | { |
lakshya | 49:61c9f28332ba | 869 | //// eps_pc.printf("\n\r battery gauge \n"); |
sakthipriya | 0:7b4c00e3912f | 870 | |
lakshya | 33:76f2b8735501 | 871 | //float temp=30; //=Battery_temp (from temp sensor on battery board) //value of battery temperature in C currently given a dummy value. Should be updated everytime. |
lakshya | 49:61c9f28332ba | 872 | int flag = tempCompensation(temp); |
lakshya | 49:61c9f28332ba | 873 | //tempCompensation(temp); |
sakthipriya | 0:7b4c00e3912f | 874 | |
lakshya | 49:61c9f28332ba | 875 | if( flag == 0 ) |
lakshya | 49:61c9f28332ba | 876 | { |
lakshya | 49:61c9f28332ba | 877 | Battery_parameters[0]=vcell(); |
lakshya | 49:61c9f28332ba | 878 | |
lakshya | 49:61c9f28332ba | 879 | timer_soc.reset(); |
lakshya | 49:61c9f28332ba | 880 | timer_soc.start(); |
lakshya | 49:61c9f28332ba | 881 | Battery_parameters[1]=soc(); |
lakshya | 49:61c9f28332ba | 882 | timer_soc.stop(); |
lakshya | 49:61c9f28332ba | 883 | |
lakshya | 49:61c9f28332ba | 884 | Battery_parameters[2]=crate(); |
lakshya | 49:61c9f28332ba | 885 | |
lakshya | 49:61c9f28332ba | 886 | //// eps_pc.printf("\nVcell=%f",vcell()); //remove this for final code |
lakshya | 49:61c9f28332ba | 887 | //// eps_pc.printf("\nSOC=%f",soc()); //remove this for final code |
lakshya | 49:61c9f28332ba | 888 | //// eps_pc.printf("\nC_rate=%f",crate()); //remove this for final code |
lakshya | 49:61c9f28332ba | 889 | |
lakshya | 49:61c9f28332ba | 890 | |
lakshya | 49:61c9f28332ba | 891 | if (alerting()== true) //alert is on |
lakshya | 49:61c9f28332ba | 892 | { timer_alertFlags.reset(); |
lakshya | 49:61c9f28332ba | 893 | timer_alertFlags.start(); |
lakshya | 49:61c9f28332ba | 894 | Battery_parameters[3]=alertFlags(); |
lakshya | 49:61c9f28332ba | 895 | timer_alertFlags.stop(); |
lakshya | 49:61c9f28332ba | 896 | |
lakshya | 49:61c9f28332ba | 897 | clearAlert();//clear alert |
lakshya | 49:61c9f28332ba | 898 | clearAlertFlags();//clear all alert flags |
lakshya | 49:61c9f28332ba | 899 | } |
lakshya | 49:61c9f28332ba | 900 | } |
sakthipriya | 0:7b4c00e3912f | 901 | |
lakshya | 49:61c9f28332ba | 902 | if( soc() == 200 || flag != 0) return 1; |
lakshya | 49:61c9f28332ba | 903 | else return 0; |
sakthipriya | 0:7b4c00e3912f | 904 | |
sakthipriya | 0:7b4c00e3912f | 905 | } |
lakshya | 49:61c9f28332ba | 906 | int tempCompensation(float temp) |
lakshya | 33:76f2b8735501 | 907 | { |
lakshya | 33:76f2b8735501 | 908 | //Calculate the new RCOMP value |
lakshya | 33:76f2b8735501 | 909 | char rcomp; |
lakshya | 33:76f2b8735501 | 910 | if (temp > 20.0) { |
lakshya | 33:76f2b8735501 | 911 | rcomp = RCOMP0 + (temp - 20.0) * -0.5; |
lakshya | 33:76f2b8735501 | 912 | } else { |
lakshya | 33:76f2b8735501 | 913 | rcomp = RCOMP0 + (temp - 20.0) * -5.0; |
lakshya | 33:76f2b8735501 | 914 | } |
lakshya | 33:76f2b8735501 | 915 | |
lakshya | 33:76f2b8735501 | 916 | //Update the RCOMP value |
lakshya | 49:61c9f28332ba | 917 | return compensation(rcomp); |
lakshya | 33:76f2b8735501 | 918 | } |
lakshya | 33:76f2b8735501 | 919 | |
lakshya | 49:61c9f28332ba | 920 | int compensation(char rcomp) |
lakshya | 33:76f2b8735501 | 921 | { |
lakshya | 33:76f2b8735501 | 922 | //Read the current 16-bit register value |
lakshya | 33:76f2b8735501 | 923 | unsigned short value = read(REG_CONFIG); |
lakshya | 33:76f2b8735501 | 924 | |
lakshya | 33:76f2b8735501 | 925 | //Update the register value |
lakshya | 33:76f2b8735501 | 926 | value &= 0x00FF; |
lakshya | 33:76f2b8735501 | 927 | value |= rcomp << 8; |
lakshya | 33:76f2b8735501 | 928 | |
lakshya | 33:76f2b8735501 | 929 | //Write the value back out |
lakshya | 49:61c9f28332ba | 930 | return (write(REG_CONFIG, value)); |
lakshya | 33:76f2b8735501 | 931 | } |
lakshya | 33:76f2b8735501 | 932 | |
lakshya | 33:76f2b8735501 | 933 | int write(char reg, unsigned short data) |
lakshya | 33:76f2b8735501 | 934 | { |
lakshya | 49:61c9f28332ba | 935 | eps_btg_writ_flag = -1; |
lakshya | 33:76f2b8735501 | 936 | //Create a temporary buffer |
lakshya | 33:76f2b8735501 | 937 | char buff[3]; |
lakshya | 33:76f2b8735501 | 938 | |
lakshya | 33:76f2b8735501 | 939 | //Load the register address and 16-bit data |
lakshya | 33:76f2b8735501 | 940 | buff[0] = reg; |
lakshya | 33:76f2b8735501 | 941 | buff[1] = data >> 8; |
lakshya | 33:76f2b8735501 | 942 | buff[2] = data; |
lakshya | 33:76f2b8735501 | 943 | |
lakshya | 33:76f2b8735501 | 944 | int flag = m_I2C.write(m_ADDR, buff, 3); //Write the data and return ack |
lakshya | 33:76f2b8735501 | 945 | |
lakshya | 33:76f2b8735501 | 946 | if( flag != 0 ) |
lakshya | 33:76f2b8735501 | 947 | { |
lakshya | 33:76f2b8735501 | 948 | flag = m_I2C.write(m_ADDR, buff, 3); //Write the data and return ack |
lakshya | 49:61c9f28332ba | 949 | if( data != read(reg) ) |
lakshya | 49:61c9f28332ba | 950 | eps_btg_writ_flag = 1; |
lakshya | 49:61c9f28332ba | 951 | //EPS_BATTERY_GAUGE_STATUS = 0; //clear EPS_BATTERY_GAUGE_STATUS |
lakshya | 49:61c9f28332ba | 952 | else eps_btg_writ_flag = 0; |
lakshya | 49:61c9f28332ba | 953 | //Verify written data |
lakshya | 49:61c9f28332ba | 954 | //EPS_BATTERY_GAUGE_STATUS = 0; //clear EPS_BATTERY_GAUGE_STATUS |
lakshya | 33:76f2b8735501 | 955 | } |
lakshya | 33:76f2b8735501 | 956 | |
lakshya | 33:76f2b8735501 | 957 | return flag; |
lakshya | 33:76f2b8735501 | 958 | } |
lakshya | 33:76f2b8735501 | 959 | |
lakshya | 33:76f2b8735501 | 960 | unsigned short read(char reg) |
lakshya | 33:76f2b8735501 | 961 | { |
lakshya | 49:61c9f28332ba | 962 | eps_btg_read_flag = -1; |
lakshya | 33:76f2b8735501 | 963 | int flag = 1; |
lakshya | 33:76f2b8735501 | 964 | char buff[2]; //Create a temporary buffer |
lakshya | 33:76f2b8735501 | 965 | |
lakshya | 33:76f2b8735501 | 966 | //Select the register |
lakshya | 33:76f2b8735501 | 967 | m_I2C.write(m_ADDR, ®, 1, true); |
lakshya | 33:76f2b8735501 | 968 | //Read the 16-bit register |
lakshya | 33:76f2b8735501 | 969 | flag = m_I2C.read(m_ADDR, buff, 2); |
lakshya | 33:76f2b8735501 | 970 | |
lakshya | 33:76f2b8735501 | 971 | if( flag ) |
lakshya | 33:76f2b8735501 | 972 | { |
lakshya | 33:76f2b8735501 | 973 | m_I2C.write(m_ADDR, ®, 1, true); |
lakshya | 33:76f2b8735501 | 974 | flag = m_I2C.read(m_ADDR, buff, 2); |
lakshya | 49:61c9f28332ba | 975 | //if( flag ) |
lakshya | 49:61c9f28332ba | 976 | // EPS_BATTERY_GAUGE_STATUS = 0; //clear EPS_BATTERY_GAUGE_STATUS |
lakshya | 33:76f2b8735501 | 977 | } |
lakshya | 33:76f2b8735501 | 978 | |
lakshya | 49:61c9f28332ba | 979 | eps_btg_read_flag = flag; |
lakshya | 33:76f2b8735501 | 980 | //Return the combined 16-bit value |
lakshya | 33:76f2b8735501 | 981 | return (buff[0] << 8) | buff[1]; |
lakshya | 33:76f2b8735501 | 982 | } |
lakshya | 33:76f2b8735501 | 983 | /* |
lakshya | 33:76f2b8735501 | 984 | |
sakthipriya | 0:7b4c00e3912f | 985 | unsigned short read(char reg) |
sakthipriya | 0:7b4c00e3912f | 986 | { |
sakthipriya | 0:7b4c00e3912f | 987 | |
sakthipriya | 0:7b4c00e3912f | 988 | //Create a temporary buffer |
sakthipriya | 0:7b4c00e3912f | 989 | char buff[2]; |
sakthipriya | 0:7b4c00e3912f | 990 | |
sakthipriya | 0:7b4c00e3912f | 991 | //Select the register |
sakthipriya | 0:7b4c00e3912f | 992 | m_I2C.write(m_ADDR, ®, 1, true); |
sakthipriya | 0:7b4c00e3912f | 993 | |
sakthipriya | 0:7b4c00e3912f | 994 | //Read the 16-bit register |
sakthipriya | 0:7b4c00e3912f | 995 | m_I2C.read(m_ADDR, buff, 2); |
sakthipriya | 0:7b4c00e3912f | 996 | |
sakthipriya | 0:7b4c00e3912f | 997 | //Return the combined 16-bit value |
sakthipriya | 0:7b4c00e3912f | 998 | return (buff[0] << 8) | buff[1]; |
sakthipriya | 0:7b4c00e3912f | 999 | } |
sakthipriya | 0:7b4c00e3912f | 1000 | |
sakthipriya | 3:07e15677a75c | 1001 | |
sakthipriya | 1:446a959e36ce | 1002 | |
sakthipriya | 3:07e15677a75c | 1003 | |
sakthipriya | 0:7b4c00e3912f | 1004 | |
sakthipriya | 0:7b4c00e3912f | 1005 | void write(char reg, unsigned short data) |
sakthipriya | 0:7b4c00e3912f | 1006 | { |
sakthipriya | 0:7b4c00e3912f | 1007 | //Create a temporary buffer |
sakthipriya | 0:7b4c00e3912f | 1008 | char buff[3]; |
sakthipriya | 0:7b4c00e3912f | 1009 | |
sakthipriya | 0:7b4c00e3912f | 1010 | //Load the register address and 16-bit data |
sakthipriya | 0:7b4c00e3912f | 1011 | buff[0] = reg; |
sakthipriya | 0:7b4c00e3912f | 1012 | buff[1] = data >> 8; |
sakthipriya | 0:7b4c00e3912f | 1013 | buff[2] = data; |
sakthipriya | 0:7b4c00e3912f | 1014 | |
sakthipriya | 0:7b4c00e3912f | 1015 | //Write the data |
sakthipriya | 0:7b4c00e3912f | 1016 | m_I2C.write(m_ADDR, buff, 3); |
sakthipriya | 0:7b4c00e3912f | 1017 | } |
sakthipriya | 0:7b4c00e3912f | 1018 | |
sakthipriya | 0:7b4c00e3912f | 1019 | |
lakshya | 33:76f2b8735501 | 1020 | */ |
sakthipriya | 0:7b4c00e3912f | 1021 | // Command the MAX17049 to perform a power-on reset |
sakthipriya | 0:7b4c00e3912f | 1022 | void reset() |
sakthipriya | 0:7b4c00e3912f | 1023 | { |
sakthipriya | 0:7b4c00e3912f | 1024 | //Write the POR command |
sakthipriya | 0:7b4c00e3912f | 1025 | write(REG_CMD, 0x5400); |
lakshya | 33:76f2b8735501 | 1026 | //Re-initialise gauge |
lakshya | 49:61c9f28332ba | 1027 | |
lakshya | 49:61c9f28332ba | 1028 | timer_FCTN_BATTERYGAUGE_INIT.reset(); |
lakshya | 49:61c9f28332ba | 1029 | timer_FCTN_BATTERYGAUGE_INIT.start(); |
lakshya | 33:76f2b8735501 | 1030 | FCTN_BATTERYGAUGE_INIT(); |
lakshya | 49:61c9f28332ba | 1031 | timer_FCTN_BATTERYGAUGE_INIT.stop(); |
sakthipriya | 0:7b4c00e3912f | 1032 | } |
sakthipriya | 0:7b4c00e3912f | 1033 | |
sakthipriya | 0:7b4c00e3912f | 1034 | // Command the MAX17049 to perform a QuickStart |
sakthipriya | 0:7b4c00e3912f | 1035 | void quickStart() |
sakthipriya | 0:7b4c00e3912f | 1036 | { |
sakthipriya | 0:7b4c00e3912f | 1037 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1038 | unsigned short value = read(REG_MODE); |
lakshya | 15:e09aaaccf134 | 1039 | |
sakthipriya | 0:7b4c00e3912f | 1040 | //Set the QuickStart bit |
sakthipriya | 0:7b4c00e3912f | 1041 | value |= (1 << 14); |
sakthipriya | 0:7b4c00e3912f | 1042 | |
sakthipriya | 0:7b4c00e3912f | 1043 | //Write the value back out |
sakthipriya | 0:7b4c00e3912f | 1044 | write(REG_MODE, value); |
sakthipriya | 0:7b4c00e3912f | 1045 | } |
sakthipriya | 0:7b4c00e3912f | 1046 | |
sakthipriya | 0:7b4c00e3912f | 1047 | |
sakthipriya | 0:7b4c00e3912f | 1048 | //disable sleep |
sakthipriya | 0:7b4c00e3912f | 1049 | void disable_sleep() |
sakthipriya | 0:7b4c00e3912f | 1050 | { |
sakthipriya | 0:7b4c00e3912f | 1051 | unsigned short value = read(REG_MODE); |
sakthipriya | 0:7b4c00e3912f | 1052 | value &= ~(1 << 13); |
sakthipriya | 0:7b4c00e3912f | 1053 | write(REG_MODE, value); |
sakthipriya | 0:7b4c00e3912f | 1054 | } |
sakthipriya | 0:7b4c00e3912f | 1055 | |
sakthipriya | 0:7b4c00e3912f | 1056 | //disable the hibernate of the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1057 | void disable_hibernate() |
sakthipriya | 0:7b4c00e3912f | 1058 | { |
sakthipriya | 0:7b4c00e3912f | 1059 | write(REG_HIBRT, 0x0000); |
sakthipriya | 0:7b4c00e3912f | 1060 | } |
sakthipriya | 0:7b4c00e3912f | 1061 | |
sakthipriya | 0:7b4c00e3912f | 1062 | |
sakthipriya | 0:7b4c00e3912f | 1063 | // Enable or disable the SOC 1% change alert on the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1064 | void socChangeAlertEnabled(bool enabled) |
sakthipriya | 0:7b4c00e3912f | 1065 | { |
sakthipriya | 0:7b4c00e3912f | 1066 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1067 | unsigned short value = read(REG_CONFIG); |
sakthipriya | 0:7b4c00e3912f | 1068 | |
sakthipriya | 0:7b4c00e3912f | 1069 | //Set or clear the ALSC bit |
sakthipriya | 0:7b4c00e3912f | 1070 | if (enabled) |
sakthipriya | 0:7b4c00e3912f | 1071 | value |= (1 << 6); |
sakthipriya | 0:7b4c00e3912f | 1072 | else |
sakthipriya | 0:7b4c00e3912f | 1073 | value &= ~(1 << 6); |
sakthipriya | 0:7b4c00e3912f | 1074 | |
sakthipriya | 0:7b4c00e3912f | 1075 | //Write the value back out |
sakthipriya | 0:7b4c00e3912f | 1076 | write(REG_CONFIG, value); |
sakthipriya | 0:7b4c00e3912f | 1077 | } |
sakthipriya | 0:7b4c00e3912f | 1078 | |
lakshya | 33:76f2b8735501 | 1079 | /* |
sakthipriya | 0:7b4c00e3912f | 1080 | void compensation(char rcomp) |
sakthipriya | 0:7b4c00e3912f | 1081 | { |
sakthipriya | 0:7b4c00e3912f | 1082 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1083 | unsigned short value = read(REG_CONFIG); |
sakthipriya | 0:7b4c00e3912f | 1084 | |
sakthipriya | 0:7b4c00e3912f | 1085 | //Update the register value |
sakthipriya | 0:7b4c00e3912f | 1086 | value &= 0x00FF; |
sakthipriya | 0:7b4c00e3912f | 1087 | value |= rcomp << 8; |
sakthipriya | 0:7b4c00e3912f | 1088 | |
sakthipriya | 0:7b4c00e3912f | 1089 | //Write the value back out |
sakthipriya | 0:7b4c00e3912f | 1090 | write(REG_CONFIG, value); |
sakthipriya | 0:7b4c00e3912f | 1091 | } |
sakthipriya | 0:7b4c00e3912f | 1092 | |
lakshya | 33:76f2b8735501 | 1093 | |
sakthipriya | 0:7b4c00e3912f | 1094 | void tempCompensation(float temp) |
sakthipriya | 0:7b4c00e3912f | 1095 | { |
sakthipriya | 0:7b4c00e3912f | 1096 | //Calculate the new RCOMP value |
sakthipriya | 0:7b4c00e3912f | 1097 | char rcomp; |
sakthipriya | 0:7b4c00e3912f | 1098 | if (temp > 20.0) { |
sakthipriya | 0:7b4c00e3912f | 1099 | rcomp = RCOMP0 + (temp - 20.0) * -0.5; |
sakthipriya | 0:7b4c00e3912f | 1100 | } else { |
sakthipriya | 0:7b4c00e3912f | 1101 | rcomp = RCOMP0 + (temp - 20.0) * -5.0; |
sakthipriya | 0:7b4c00e3912f | 1102 | } |
sakthipriya | 0:7b4c00e3912f | 1103 | |
sakthipriya | 0:7b4c00e3912f | 1104 | //Update the RCOMP value |
sakthipriya | 0:7b4c00e3912f | 1105 | compensation(rcomp); |
sakthipriya | 0:7b4c00e3912f | 1106 | } |
sakthipriya | 0:7b4c00e3912f | 1107 | |
lakshya | 33:76f2b8735501 | 1108 | */ |
sakthipriya | 0:7b4c00e3912f | 1109 | // Command the MAX17049 to de-assert the ALRT pin |
sakthipriya | 0:7b4c00e3912f | 1110 | void clearAlert() |
sakthipriya | 0:7b4c00e3912f | 1111 | { |
sakthipriya | 0:7b4c00e3912f | 1112 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1113 | unsigned short value = read(REG_CONFIG); |
sakthipriya | 0:7b4c00e3912f | 1114 | |
sakthipriya | 0:7b4c00e3912f | 1115 | //Clear the ALRT bit |
sakthipriya | 0:7b4c00e3912f | 1116 | value &= ~(1 << 5); |
sakthipriya | 0:7b4c00e3912f | 1117 | |
sakthipriya | 0:7b4c00e3912f | 1118 | //Write the value back out |
sakthipriya | 0:7b4c00e3912f | 1119 | write(REG_CONFIG, value); |
sakthipriya | 0:7b4c00e3912f | 1120 | } |
sakthipriya | 0:7b4c00e3912f | 1121 | |
sakthipriya | 0:7b4c00e3912f | 1122 | |
sakthipriya | 0:7b4c00e3912f | 1123 | //Set the SOC empty alert threshold of the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1124 | void emptyAlertThreshold(char threshold) |
sakthipriya | 0:7b4c00e3912f | 1125 | { |
sakthipriya | 0:7b4c00e3912f | 1126 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1127 | unsigned short value = read(REG_CONFIG); |
sakthipriya | 0:7b4c00e3912f | 1128 | |
sakthipriya | 0:7b4c00e3912f | 1129 | //Update the register value |
sakthipriya | 0:7b4c00e3912f | 1130 | value &= 0xFFE0; |
sakthipriya | 0:7b4c00e3912f | 1131 | value |= 32 - threshold; |
sakthipriya | 0:7b4c00e3912f | 1132 | |
sakthipriya | 0:7b4c00e3912f | 1133 | //Write the 16-bit register |
sakthipriya | 0:7b4c00e3912f | 1134 | write(REG_CONFIG, value); |
sakthipriya | 0:7b4c00e3912f | 1135 | } |
sakthipriya | 0:7b4c00e3912f | 1136 | |
sakthipriya | 0:7b4c00e3912f | 1137 | // Set the low and high voltage alert threshold of the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1138 | void vAlertMinMaxThreshold() |
sakthipriya | 0:7b4c00e3912f | 1139 | { |
sakthipriya | 0:7b4c00e3912f | 1140 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1141 | unsigned short value = read(REG_VALRT); |
sakthipriya | 0:7b4c00e3912f | 1142 | |
sakthipriya | 0:7b4c00e3912f | 1143 | //Mask off the old value |
sakthipriya | 0:7b4c00e3912f | 1144 | |
sakthipriya | 0:7b4c00e3912f | 1145 | value = 0x96D2; |
sakthipriya | 0:7b4c00e3912f | 1146 | |
sakthipriya | 0:7b4c00e3912f | 1147 | //Write the 16-bit register |
sakthipriya | 0:7b4c00e3912f | 1148 | write(REG_VALRT, value); |
sakthipriya | 0:7b4c00e3912f | 1149 | } |
sakthipriya | 0:7b4c00e3912f | 1150 | |
sakthipriya | 0:7b4c00e3912f | 1151 | |
sakthipriya | 0:7b4c00e3912f | 1152 | // Set the reset voltage threshold of the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1153 | void vResetThresholdSet() |
sakthipriya | 0:7b4c00e3912f | 1154 | { |
sakthipriya | 0:7b4c00e3912f | 1155 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1156 | unsigned short value = read(REG_VRESET_ID); |
sakthipriya | 0:7b4c00e3912f | 1157 | |
sakthipriya | 0:7b4c00e3912f | 1158 | //Mask off the old //value |
sakthipriya | 0:7b4c00e3912f | 1159 | value &= 0x00FF;//Dis=0 |
sakthipriya | 0:7b4c00e3912f | 1160 | |
sakthipriya | 0:7b4c00e3912f | 1161 | value |= 0x9400;//corresponding to 2.5 V |
sakthipriya | 0:7b4c00e3912f | 1162 | |
sakthipriya | 0:7b4c00e3912f | 1163 | |
sakthipriya | 0:7b4c00e3912f | 1164 | //Write the 16-bit register |
sakthipriya | 0:7b4c00e3912f | 1165 | write(REG_VRESET_ID, value); |
sakthipriya | 0:7b4c00e3912f | 1166 | } |
sakthipriya | 0:7b4c00e3912f | 1167 | |
sakthipriya | 0:7b4c00e3912f | 1168 | |
sakthipriya | 0:7b4c00e3912f | 1169 | // Enable or disable the voltage reset alert on the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1170 | void vResetAlertEnabled(bool enabled) |
sakthipriya | 0:7b4c00e3912f | 1171 | { |
sakthipriya | 0:7b4c00e3912f | 1172 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1173 | unsigned short value = read(REG_STATUS); |
sakthipriya | 0:7b4c00e3912f | 1174 | |
sakthipriya | 0:7b4c00e3912f | 1175 | //Set or clear the EnVR bit |
sakthipriya | 0:7b4c00e3912f | 1176 | if (enabled) |
sakthipriya | 0:7b4c00e3912f | 1177 | value |= (1 << 14); |
sakthipriya | 0:7b4c00e3912f | 1178 | else |
sakthipriya | 0:7b4c00e3912f | 1179 | value &= ~(1 << 14); |
sakthipriya | 0:7b4c00e3912f | 1180 | |
sakthipriya | 0:7b4c00e3912f | 1181 | //Write the value back out |
sakthipriya | 0:7b4c00e3912f | 1182 | write(REG_STATUS, value); |
sakthipriya | 0:7b4c00e3912f | 1183 | } |
sakthipriya | 0:7b4c00e3912f | 1184 | |
sakthipriya | 0:7b4c00e3912f | 1185 | //Get the current alert flags on the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1186 | //refer datasheet-status registers section to decode it. |
sakthipriya | 0:7b4c00e3912f | 1187 | char alertFlags() |
sakthipriya | 0:7b4c00e3912f | 1188 | { |
sakthipriya | 0:7b4c00e3912f | 1189 | //Read the 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1190 | unsigned short value = read(REG_STATUS); |
sakthipriya | 0:7b4c00e3912f | 1191 | |
sakthipriya | 0:7b4c00e3912f | 1192 | //Return only the flag bits |
sakthipriya | 0:7b4c00e3912f | 1193 | return (value >> 8) & 0x3F; |
sakthipriya | 0:7b4c00e3912f | 1194 | } |
sakthipriya | 0:7b4c00e3912f | 1195 | |
sakthipriya | 0:7b4c00e3912f | 1196 | // Clear all the alert flags on the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1197 | void clearAlertFlags() |
sakthipriya | 0:7b4c00e3912f | 1198 | { |
sakthipriya | 0:7b4c00e3912f | 1199 | //Read the current 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1200 | unsigned short value = read(REG_STATUS); |
sakthipriya | 0:7b4c00e3912f | 1201 | |
sakthipriya | 0:7b4c00e3912f | 1202 | //Clear the specified flag bits |
sakthipriya | 0:7b4c00e3912f | 1203 | value &= ~( 0x3F<< 8); |
sakthipriya | 0:7b4c00e3912f | 1204 | |
sakthipriya | 0:7b4c00e3912f | 1205 | //Write the value back out |
sakthipriya | 0:7b4c00e3912f | 1206 | write(REG_STATUS, value); |
sakthipriya | 0:7b4c00e3912f | 1207 | } |
sakthipriya | 0:7b4c00e3912f | 1208 | |
sakthipriya | 0:7b4c00e3912f | 1209 | // Get the current cell voltage measurement of the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1210 | float vcell() |
sakthipriya | 0:7b4c00e3912f | 1211 | { |
sakthipriya | 1:446a959e36ce | 1212 | |
sakthipriya | 0:7b4c00e3912f | 1213 | //Read the 16-bit raw Vcell value |
sakthipriya | 0:7b4c00e3912f | 1214 | unsigned short value = read(REG_VCELL); |
sakthipriya | 0:7b4c00e3912f | 1215 | |
sakthipriya | 0:7b4c00e3912f | 1216 | //Return Vcell in volts |
sakthipriya | 0:7b4c00e3912f | 1217 | return value * 0.000078125*2; |
sakthipriya | 0:7b4c00e3912f | 1218 | } |
sakthipriya | 0:7b4c00e3912f | 1219 | |
sakthipriya | 0:7b4c00e3912f | 1220 | // Get the current state of charge measurement of the MAX17049 as a float |
sakthipriya | 0:7b4c00e3912f | 1221 | float soc() |
sakthipriya | 0:7b4c00e3912f | 1222 | { |
sakthipriya | 3:07e15677a75c | 1223 | |
sakthipriya | 3:07e15677a75c | 1224 | //Create a temporary buffer |
sakthipriya | 0:7b4c00e3912f | 1225 | char buff[2]; |
sakthipriya | 3:07e15677a75c | 1226 | int ack = 1; |
sakthipriya | 3:07e15677a75c | 1227 | //Select the register |
sakthipriya | 3:07e15677a75c | 1228 | char reg = REG_SOC; // cannot pass the hash defined values directly |
sakthipriya | 3:07e15677a75c | 1229 | m_I2C.write(m_ADDR, ®, 1, true); |
sakthipriya | 3:07e15677a75c | 1230 | |
sakthipriya | 3:07e15677a75c | 1231 | |
sakthipriya | 3:07e15677a75c | 1232 | //Read the 16-bit register |
sakthipriya | 3:07e15677a75c | 1233 | |
sakthipriya | 3:07e15677a75c | 1234 | ack = m_I2C.read(m_ADDR, buff, 2); |
sakthipriya | 3:07e15677a75c | 1235 | |
lakshya | 49:61c9f28332ba | 1236 | //// eps_pc.printf("\n\r acknow %d", ack); |
sakthipriya | 0:7b4c00e3912f | 1237 | |
sakthipriya | 0:7b4c00e3912f | 1238 | //Return SOC in percent |
sakthipriya | 2:c823d84b4cb0 | 1239 | if(ack == 0) |
sakthipriya | 3:07e15677a75c | 1240 | return ((buff[0] << 8) | buff[1]) * 0.00390625; |
sakthipriya | 2:c823d84b4cb0 | 1241 | else |
sakthipriya | 2:c823d84b4cb0 | 1242 | return 200; |
sakthipriya | 0:7b4c00e3912f | 1243 | } |
sakthipriya | 0:7b4c00e3912f | 1244 | |
sakthipriya | 0:7b4c00e3912f | 1245 | |
sakthipriya | 0:7b4c00e3912f | 1246 | |
sakthipriya | 0:7b4c00e3912f | 1247 | // Get the current C rate measurement of the MAX17049 |
sakthipriya | 0:7b4c00e3912f | 1248 | float crate() |
sakthipriya | 0:7b4c00e3912f | 1249 | { |
sakthipriya | 0:7b4c00e3912f | 1250 | //Read the 16-bit raw C/Rate value |
sakthipriya | 0:7b4c00e3912f | 1251 | short value = read(REG_CRATE); |
sakthipriya | 0:7b4c00e3912f | 1252 | |
sakthipriya | 0:7b4c00e3912f | 1253 | //Return C/Rate in %/hr |
sakthipriya | 0:7b4c00e3912f | 1254 | return value * 0.208; |
sakthipriya | 0:7b4c00e3912f | 1255 | } |
sakthipriya | 0:7b4c00e3912f | 1256 | |
sakthipriya | 0:7b4c00e3912f | 1257 | // Determine whether or not the MAX17049 is asserting the ALRT pin |
sakthipriya | 0:7b4c00e3912f | 1258 | bool alerting() |
sakthipriya | 0:7b4c00e3912f | 1259 | { |
sakthipriya | 0:7b4c00e3912f | 1260 | //Read the 16-bit register value |
sakthipriya | 0:7b4c00e3912f | 1261 | unsigned short value = read(REG_CONFIG); |
sakthipriya | 0:7b4c00e3912f | 1262 | |
sakthipriya | 0:7b4c00e3912f | 1263 | //Return the status of the ALRT bit |
sakthipriya | 0:7b4c00e3912f | 1264 | if (value & (1 << 5)) |
sakthipriya | 0:7b4c00e3912f | 1265 | return true; |
sakthipriya | 0:7b4c00e3912f | 1266 | else |
sakthipriya | 0:7b4c00e3912f | 1267 | return false; |
sakthipriya | 2:c823d84b4cb0 | 1268 | } |
sakthipriya | 2:c823d84b4cb0 | 1269 | |
sakthipriya | 2:c823d84b4cb0 | 1270 | //.............................Battery board Temp sensor........................// |
sakthipriya | 2:c823d84b4cb0 | 1271 | void FCTN_BATTTEMP_INIT() |
sakthipriya | 2:c823d84b4cb0 | 1272 | { |
sakthipriya | 2:c823d84b4cb0 | 1273 | ssn1=1;ssn2=1; |
sakthipriya | 2:c823d84b4cb0 | 1274 | //PS=0; |
sakthipriya | 2:c823d84b4cb0 | 1275 | //HS=0; |
sakthipriya | 2:c823d84b4cb0 | 1276 | spi_bt.format(8,3); |
sakthipriya | 2:c823d84b4cb0 | 1277 | spi_bt.frequency(1000000); |
lakshya | 33:76f2b8735501 | 1278 | EPS_BTRY_TMP_STATUS = 1; |
sakthipriya | 2:c823d84b4cb0 | 1279 | } |
sakthipriya | 2:c823d84b4cb0 | 1280 | |
sakthipriya | 2:c823d84b4cb0 | 1281 | void FCTN_BATT_TEMP_SENSOR_MAIN(float temp[2]) |
sakthipriya | 2:c823d84b4cb0 | 1282 | { |
sakthipriya | 2:c823d84b4cb0 | 1283 | uint8_t MSB, LSB; |
sakthipriya | 2:c823d84b4cb0 | 1284 | int16_t bit_data; |
sakthipriya | 2:c823d84b4cb0 | 1285 | float sensitivity=0.0078125; //1 LSB = sensitivity degree celcius |
sakthipriya | 2:c823d84b4cb0 | 1286 | wait_ms(320); |
lakshya | 20:949d13045431 | 1287 | //can we reduce it further ??? azad.......!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
sakthipriya | 2:c823d84b4cb0 | 1288 | ssn1=0; |
sakthipriya | 2:c823d84b4cb0 | 1289 | |
sakthipriya | 2:c823d84b4cb0 | 1290 | spi_bt.write(0x80);//Reading digital data from Sensor 1 |
sakthipriya | 2:c823d84b4cb0 | 1291 | LSB = spi_bt.write(0x00);//LSB first |
lakshya | 20:949d13045431 | 1292 | wait_ms(10); |
sakthipriya | 2:c823d84b4cb0 | 1293 | MSB = spi_bt.write(0x00); |
sakthipriya | 2:c823d84b4cb0 | 1294 | wait_ms(10); |
lakshya | 49:61c9f28332ba | 1295 | //// pc_eps.eps_pc.printf("%d %d\n",MSB,LSB); |
sakthipriya | 2:c823d84b4cb0 | 1296 | bit_data= ((uint16_t)MSB<<8)|LSB; |
sakthipriya | 2:c823d84b4cb0 | 1297 | wait_ms(10); |
sakthipriya | 2:c823d84b4cb0 | 1298 | temp[0]=(float)bit_data*sensitivity;//Converting into decimal value |
sakthipriya | 2:c823d84b4cb0 | 1299 | ssn1=1; |
sakthipriya | 2:c823d84b4cb0 | 1300 | wait_ms(10); |
sakthipriya | 2:c823d84b4cb0 | 1301 | ssn2=0;//Reading data from sensor 2 |
sakthipriya | 2:c823d84b4cb0 | 1302 | spi_bt.write(0x80); |
sakthipriya | 2:c823d84b4cb0 | 1303 | LSB = spi_bt.write(0x00); |
sakthipriya | 2:c823d84b4cb0 | 1304 | wait_ms(10); |
sakthipriya | 2:c823d84b4cb0 | 1305 | MSB = spi_bt.write(0x00); |
sakthipriya | 2:c823d84b4cb0 | 1306 | wait_ms(10); |
sakthipriya | 2:c823d84b4cb0 | 1307 | bit_data= ((int16_t)MSB<<8)|LSB; |
sakthipriya | 2:c823d84b4cb0 | 1308 | wait_ms(10); |
sakthipriya | 2:c823d84b4cb0 | 1309 | temp[1]=(float)bit_data*sensitivity; |
sakthipriya | 2:c823d84b4cb0 | 1310 | ssn2=1; |
sakthipriya | 2:c823d84b4cb0 | 1311 | |
sakthipriya | 2:c823d84b4cb0 | 1312 | } |