Demonstration of Class-A LoRaWAN device using NAMote-72

Dependencies:   LoRaWAN-lib mbed lib_mpl3115a2 lib_mma8451q lib_gps SX1272Lib

Dependents:   LoRaWAN-NAMote72-BVS-confirmed-tester-0-7v1_copy

LoRaWAN-NAMote72 Application Demo is a Class-A device example project using LoRaWAN-lib and SX1272Lib libraries.

This project is compliant with LoRaWAN V1.0.1 specification.

Comissioning.h (LoRaWAN Network Configuration)

The end-device can be activated in one of the two ways:

Over the Air (OTA) activation can be enabled as shown in the figure below. /media/uploads/ubhat/ota_enable.png

The end-device must be configured with the following parameters:

  • LORAWAN_DEVICE_EUI (8 Bytes) : Fist 3 Bytes is the Organizationally Unique Identifier (OUI) followed by 5 bytes of unique ID. If not defined by user, then the firmware automatically assigns one to the end-device
  • LORAWAN_APPLICATION_EUI (8 Bytes)
  • LORAWAN_APPLICATION_KEY (or DEVKEY) (16 Bytes)

/media/uploads/ubhat/ota_eui.png

Activation by Personalization (ABP) can be enabled as shown in the figure below. /media/uploads/ubhat/abp_enable.png

The end-device must be configured with the following parameters:

  • LORAWAN_DEVICE_ADDRESS (4 Bytes) : If not defined by user, then the firmware automatically assigns one to the end-device
  • LORAWAN_NWKSKEY (16 Bytes)
  • LORAWAN_APPSKEY (16 Bytes)

/media/uploads/ubhat/abp_key.png

Config.h (LoRaWAN Communication Parameters)

  • Mode of Operation : Hybrid If the end-device needs to be configured to operate over 8-channels, then Hybrid Mode needs to be enabled /media/uploads/ubhat/hybridenable.png
  • Mode of Operation : Frequency Hop If the end-device needs to be configured to operate over 64-channels, then Hybrid Mode needs to be disabled
  • Delay between successive JOIN REQUESTs : The delay between successive Join Requests (until the end-device joins the network) can be configured using the parameter OVER_THE_AIR_ACTIVATION_DUTYCYCLE
  • Inter-Frame Delay : One can change the delay between each frame transmission using APP_TX_DUTYCYCLE It is advisable that APP_TX_DUTYCYCLE is greater than or equal to 3sec.
  • Data Rate : The data rate can be configured as per LoRaWAN specification using the paramter LORAWAN_DEFAULT_DATARATE. The range of values are DR_0, DR_1, DR_2, DR_3 and DR_4
  • Confirmed/Unconfirmed Messages : The uplink message or payload can be chosen to be confirmed or unconfirmed using the parameter LORAWAN_CONFIRMED_MSG_ON. When set to 1, the transmitted messages need to be confirmed with an ACK by the network server in the subsequent RX window. When set to 0, no ACK is requested.
  • ADR ON/OFF : The ADR can be enabled or disabled using the parameter LORAWAN_ADR_ON. When set to 1, ADR is enabled and disabled when set to 0.
  • Application Port : The application port can be set using parameter LORAWAN_APP_PORT.
  • Payload Length : The lenght of the payload (in bytes) to be transmitted can be configured using LORAWAN_APP_DATA_SIZE
  • Transmit Power : The transmit power can be configured using LORAWAN_TX_POWER (LoRaMAC verifies if the set power is compliant with the LoRaWAN spec and FCC guidelines)

/media/uploads/ubhat/loraconfig.png

Main.cpp (Device State Machine)

The end-device state machine is defined.

  • Initial State : Device is initialized.
  • Join State : For OTA, Join Request is transmitted to the network until Join Accept is received by the end-device. Join event function is called that sets Red LED ON.
  • Send State : Transmit payload frame is prepared. Tx event is called that blinks the Red LED indicating uplink transmission.
  • Cycle State : Next packet transmission is scheduled

LoRaEventProc.cpp (Events and On-board Application)

Define events during Join, Tx & Rx. Prepare TX packet by appending with appropriate application data.

/media/uploads/ubhat/lora_events.png

  • PrepareLoRaFrame(uint8_t port ) : Prepare LoRa payload frame with on-board application data such as GPS, Temperature, Battery, etc. LoRa.ApplicationCall(AppType ) calls application AppType defined in LoRaApp.cpp. AppType is defined in LoRaApp.h

/media/uploads/ubhat/lora_app.png

LoRaApp.cpp

User-defined applications such as GPS, Temp, Accelerometer, LED indications etc. Event based actions such as LED blink on Tx, LED toggle on downlink etc /media/uploads/ubhat/apptype.png

LoRaDeviceStateProc.cpp

Process function calls corresponding to different Device states /media/uploads/ubhat/device_state.png

LoRaMacLayerService.cpp

Define MAC Layer Services: MLME & MCPS

Serial Terminal Display

By using a serial port connection using applications such as teraterm or putty, one can view the status of the End-Device. Once the End-Device Joins the network, transmission parameters such as payload data, application port, message type etc. are displayed on the terminal.

/media/uploads/ubhat/serial.png

Default Application Payload

This application defaults to sending uplink data to logical port 5. The application payload consists of: /media/uploads/jknapp_smtc/payload.png

Sample Application Payload Calculation for Longitude/Latitude

Payload => 00 19 F6 352BBA A94C20 FFFF

Temperature Calculation

19H => 2510

Temp = 25/2 = 12.5 oC

Battery Level

FFH => 100 %

F6H => 96.5 %

Longitude Calculation

longitude = A94C20H => 1109507210

longitudinal coordinate = -360 + (longitude10 x 180/(223))

longitudinal coordinate = -121.93

Latitude Calculation

latitude = 352BBAH = 348460210

latitude coordinate = (latitude10 x 90/(223-1))

latitude coordinate = 37.39

Committer:
ubhat
Date:
Tue Aug 30 06:35:16 2016 +0000
Revision:
13:6b6f4be13633
Parent:
8:14521932100a
Child:
15:39a23f5affd1
NA Mote Sensor Application (Pressure, Battery, Temperature + Accelerometer)

Who changed what in which revision?

UserRevisionLine numberNew contents of line
ubhat 0:69f2e28d12c1 1 /*
ubhat 0:69f2e28d12c1 2 / _____) _ | |
ubhat 0:69f2e28d12c1 3 ( (____ _____ ____ _| |_ _____ ____| |__
ubhat 0:69f2e28d12c1 4 \____ \| ___ | (_ _) ___ |/ ___) _ \
ubhat 0:69f2e28d12c1 5 _____) ) ____| | | || |_| ____( (___| | | |
ubhat 0:69f2e28d12c1 6 (______/|_____)_|_|_| \__)_____)\____)_| |_|
ubhat 0:69f2e28d12c1 7 (C)2015 Semtech
ubhat 0:69f2e28d12c1 8
ubhat 0:69f2e28d12c1 9 Description: Define events during Join, Tx & Rx
ubhat 0:69f2e28d12c1 10 Prepare TX packet by appending with appropriate application data
ubhat 0:69f2e28d12c1 11
ubhat 0:69f2e28d12c1 12 License: Revised BSD License, see LICENSE.TXT file include in the project
ubhat 0:69f2e28d12c1 13
ubhat 0:69f2e28d12c1 14 Maintainer: Uttam Bhat
ubhat 0:69f2e28d12c1 15 */
ubhat 0:69f2e28d12c1 16
ubhat 0:69f2e28d12c1 17 #include "LoRaEventProc.h"
ubhat 0:69f2e28d12c1 18
ubhat 5:6ffeac53b7cb 19 /*!
ubhat 5:6ffeac53b7cb 20 * Defines the application data transmission duty cycle
ubhat 5:6ffeac53b7cb 21 */
ubhat 5:6ffeac53b7cb 22 uint32_t TxDutyCycleTime = APP_TX_DUTYCYCLE;
ubhat 5:6ffeac53b7cb 23
ubhat 0:69f2e28d12c1 24 bool AppLed = 0;
ubhat 0:69f2e28d12c1 25
ubhat 0:69f2e28d12c1 26 /*!
ubhat 0:69f2e28d12c1 27 * \brief Prepares the payload of the frame based on application port
ubhat 0:69f2e28d12c1 28 */
ubhat 0:69f2e28d12c1 29 void PrepareLoRaFrame( uint8_t port )
ubhat 0:69f2e28d12c1 30 {
ubhat 0:69f2e28d12c1 31
ubhat 0:69f2e28d12c1 32 switch( port )
ubhat 0:69f2e28d12c1 33 {
ubhat 0:69f2e28d12c1 34 case 5:
ubhat 0:69f2e28d12c1 35 {
ubhat 0:69f2e28d12c1 36 uint8_t tmp;
ubhat 0:69f2e28d12c1 37 uint8_t tmpLength;
ubhat 0:69f2e28d12c1 38 uint8_t ptrIndex = 0;
ubhat 0:69f2e28d12c1 39
ubhat 0:69f2e28d12c1 40 // Point the pointer to position index of Tx Buffer
ubhat 0:69f2e28d12c1 41 LoRaApp.ApplicationPtrPos( ptrIndex );
ubhat 0:69f2e28d12c1 42
ubhat 0:69f2e28d12c1 43 tmp = ( AppLed != 0 ) ? 0x0F : 0x00;
ubhat 0:69f2e28d12c1 44 tmpLength = 1;
ubhat 0:69f2e28d12c1 45
ubhat 0:69f2e28d12c1 46 LoRaApp.ApplicationAppendData( &tmp, tmpLength ); // Populate lower nibble of 0th Byte with LED state
ubhat 0:69f2e28d12c1 47
ubhat 0:69f2e28d12c1 48 /*!
ubhat 0:69f2e28d12c1 49 * Read Temperature
ubhat 0:69f2e28d12c1 50 * Appends 1 Byte to TX buffer
ubhat 0:69f2e28d12c1 51 */
ubhat 0:69f2e28d12c1 52 LoRaApp.ApplicationCall( AppTemp );
ubhat 0:69f2e28d12c1 53
ubhat 0:69f2e28d12c1 54 /*!
ubhat 0:69f2e28d12c1 55 * Read Battery
ubhat 0:69f2e28d12c1 56 * Appends 1 Byte to TX buffer
ubhat 0:69f2e28d12c1 57 */
ubhat 0:69f2e28d12c1 58 LoRaApp.ApplicationCall( AppBat );
ubhat 0:69f2e28d12c1 59
ubhat 0:69f2e28d12c1 60 /*!
ubhat 0:69f2e28d12c1 61 * Read GPS coordinates
ubhat 0:69f2e28d12c1 62 * Appends 8 Bytes (3 bytes longitude, 3 bytes latitude, 2 bytes altitude) to TX buffer
ubhat 0:69f2e28d12c1 63 */
ubhat 0:69f2e28d12c1 64 LoRaApp.ApplicationCall( AppGps );
ubhat 0:69f2e28d12c1 65
ubhat 0:69f2e28d12c1 66 /*!
ubhat 0:69f2e28d12c1 67 * Read Accelerometer
ubhat 0:69f2e28d12c1 68 * Appends 2 Bytes to TX buffer
ubhat 0:69f2e28d12c1 69 * Value Orientation
ubhat 0:69f2e28d12c1 70 * 0x99 0x00 horizontal + faceup
ubhat 0:69f2e28d12c1 71 * 0x66 0x00 horizontal + facedown
ubhat 0:69f2e28d12c1 72 * 0x00 0x11 vertical
ubhat 0:69f2e28d12c1 73 */
ubhat 0:69f2e28d12c1 74 LoRaApp.ApplicationCall( AppAccl ); // Generate Accelerometer data bytes
ubhat 0:69f2e28d12c1 75
ubhat 0:69f2e28d12c1 76 /*!
ubhat 0:69f2e28d12c1 77 * Generate Ramp data bytes
ubhat 0:69f2e28d12c1 78 * Appends incremental values of 1 Byte each to TX buffer until Full
ubhat 0:69f2e28d12c1 79 */
ubhat 0:69f2e28d12c1 80 LoRaApp.ApplicationCall( AppRamp );
ubhat 0:69f2e28d12c1 81
ubhat 0:69f2e28d12c1 82 break;
ubhat 0:69f2e28d12c1 83 }
ubhat 0:69f2e28d12c1 84
ubhat 0:69f2e28d12c1 85 // Senet M2X ORIENTATION Demo
ubhat 0:69f2e28d12c1 86 // Set LORAWAN_APP_DATA_SIZE to 2
ubhat 0:69f2e28d12c1 87 case 6:
ubhat 0:69f2e28d12c1 88 {
ubhat 0:69f2e28d12c1 89 uint8_t ptrIndex = 1;
ubhat 0:69f2e28d12c1 90
ubhat 0:69f2e28d12c1 91 //Point the pointer to position index of Tx Buffer
ubhat 0:69f2e28d12c1 92 LoRaApp.ApplicationPtrPos( ptrIndex );
ubhat 0:69f2e28d12c1 93
ubhat 0:69f2e28d12c1 94 LoRaApp.ApplicationCall( AppAcclSenet ); // Generate Accelerometer data bytes
ubhat 0:69f2e28d12c1 95
ubhat 0:69f2e28d12c1 96
ubhat 0:69f2e28d12c1 97
ubhat 0:69f2e28d12c1 98 break;
ubhat 0:69f2e28d12c1 99 }
ubhat 0:69f2e28d12c1 100
ubhat 0:69f2e28d12c1 101 /* Senet GPS Demo
ubhat 0:69f2e28d12c1 102 Data Format (in Hex):
ubhat 0:69f2e28d12c1 103 [01, 02, Lattitude (3 bytes), Longitude (3 Bytes), Elevation (2 bytes), Tx Power (1 byte)]
ubhat 0:69f2e28d12c1 104 */
ubhat 0:69f2e28d12c1 105 case 7:
ubhat 0:69f2e28d12c1 106 {
ubhat 0:69f2e28d12c1 107 uint8_t ptrIndex = 0;
ubhat 0:69f2e28d12c1 108 uint8_t tmp[] = {0x01, 0x02};
ubhat 0:69f2e28d12c1 109
ubhat 0:69f2e28d12c1 110 //Point the pointer to position index of Tx Buffer
ubhat 0:69f2e28d12c1 111 LoRaApp.ApplicationPtrPos( ptrIndex );
ubhat 0:69f2e28d12c1 112
ubhat 0:69f2e28d12c1 113 LoRaApp.ApplicationAppendData( tmp, 2 );
ubhat 0:69f2e28d12c1 114
ubhat 0:69f2e28d12c1 115 LoRaApp.ApplicationCall( AppGps ); // Generate Accelerometer data bytes
ubhat 0:69f2e28d12c1 116
ubhat 0:69f2e28d12c1 117 uint8_t pow = 30 - 2*(( uint8_t ) LoRaMacUplinkStatus.TxPower);
ubhat 0:69f2e28d12c1 118 LoRaApp.ApplicationAppendData( &pow, 1 );
ubhat 0:69f2e28d12c1 119
ubhat 0:69f2e28d12c1 120 break;
ubhat 0:69f2e28d12c1 121 }
ubhat 6:f8194e691dd4 122
ubhat 6:f8194e691dd4 123 // Push-Button Demo
ubhat 6:f8194e691dd4 124 case 11:
ubhat 6:f8194e691dd4 125 {
ubhat 6:f8194e691dd4 126 uint8_t ptrIndex = 0;
ubhat 6:f8194e691dd4 127
ubhat 6:f8194e691dd4 128 //Point the pointer to position index of Tx Buffer
ubhat 6:f8194e691dd4 129 LoRaApp.ApplicationPtrPos( ptrIndex );
ubhat 6:f8194e691dd4 130
ubhat 7:92f4f419f91f 131 LoRaApp.ApplicationCall( AppPushButton ); // Transmit uplink counter
ubhat 7:92f4f419f91f 132
ubhat 7:92f4f419f91f 133 break;
ubhat 7:92f4f419f91f 134 }
ubhat 7:92f4f419f91f 135
ubhat 7:92f4f419f91f 136 // Transmit on Vertical Orientation Demo
ubhat 7:92f4f419f91f 137 case 12:
ubhat 7:92f4f419f91f 138 {
ubhat 7:92f4f419f91f 139 uint8_t ptrIndex = 0;
ubhat 7:92f4f419f91f 140
ubhat 7:92f4f419f91f 141 //Point the pointer to position index of Tx Buffer
ubhat 7:92f4f419f91f 142 LoRaApp.ApplicationPtrPos( ptrIndex );
ubhat 7:92f4f419f91f 143
ubhat 7:92f4f419f91f 144 LoRaApp.ApplicationCall( AppPushButton ); // Transmit uplink counter
ubhat 6:f8194e691dd4 145
ubhat 6:f8194e691dd4 146 break;
ubhat 6:f8194e691dd4 147 }
ubhat 13:6b6f4be13633 148
ubhat 13:6b6f4be13633 149
ubhat 13:6b6f4be13633 150 /* Senet myDevices Sensor Demo
ubhat 13:6b6f4be13633 151 Data Format (in Hex):
ubhat 13:6b6f4be13633 152 [Pressure (2 Bytes), Temperature (1 Byte), X-Axis (2 bytes), Y-Axis (2 bytes), Z-Axis (2 bytes), ]
ubhat 13:6b6f4be13633 153 */
ubhat 13:6b6f4be13633 154 case 13:
ubhat 13:6b6f4be13633 155 {
ubhat 13:6b6f4be13633 156 uint8_t ptrIndex = 0;
ubhat 13:6b6f4be13633 157
ubhat 13:6b6f4be13633 158 //Point the pointer to position index of Tx Buffer
ubhat 13:6b6f4be13633 159 LoRaApp.ApplicationPtrPos( ptrIndex );
ubhat 13:6b6f4be13633 160
ubhat 13:6b6f4be13633 161 LoRaApp.ApplicationCall( AppPrsr);
ubhat 13:6b6f4be13633 162
ubhat 13:6b6f4be13633 163 LoRaApp.ApplicationCall( AppTemp );
ubhat 13:6b6f4be13633 164
ubhat 13:6b6f4be13633 165 LoRaApp.ApplicationCall( AppBat );
ubhat 13:6b6f4be13633 166
ubhat 13:6b6f4be13633 167 LoRaApp.ApplicationCall( AppAcclSensor ); // Generate Accelerometer data bytes
ubhat 13:6b6f4be13633 168
ubhat 13:6b6f4be13633 169
ubhat 13:6b6f4be13633 170 break;
ubhat 13:6b6f4be13633 171 }
ubhat 0:69f2e28d12c1 172
ubhat 0:69f2e28d12c1 173 default:
ubhat 0:69f2e28d12c1 174 break;
ubhat 0:69f2e28d12c1 175 }
ubhat 0:69f2e28d12c1 176 }
ubhat 0:69f2e28d12c1 177
ubhat 5:6ffeac53b7cb 178
ubhat 5:6ffeac53b7cb 179 /*!
ubhat 5:6ffeac53b7cb 180 * \brief Sets Interrupt for next payload transmission
ubhat 5:6ffeac53b7cb 181 */
ubhat 5:6ffeac53b7cb 182 void InitNextTxInterrupt( uint8_t port )
ubhat 5:6ffeac53b7cb 183 {
ubhat 5:6ffeac53b7cb 184 switch( port )
ubhat 5:6ffeac53b7cb 185 {
ubhat 5:6ffeac53b7cb 186 /* GPS Application Demo
ubhat 5:6ffeac53b7cb 187 Set Timer interrupt for next uplink
ubhat 5:6ffeac53b7cb 188 */
ubhat 5:6ffeac53b7cb 189 case 5:
ubhat 5:6ffeac53b7cb 190 {
ubhat 5:6ffeac53b7cb 191 }
ubhat 5:6ffeac53b7cb 192
ubhat 5:6ffeac53b7cb 193 /* Senet + M2X demo
ubhat 5:6ffeac53b7cb 194 Set Timer interrupt for next uplink
ubhat 5:6ffeac53b7cb 195 */
ubhat 5:6ffeac53b7cb 196 case 6:
ubhat 5:6ffeac53b7cb 197 {
ubhat 5:6ffeac53b7cb 198
ubhat 5:6ffeac53b7cb 199 }
ubhat 5:6ffeac53b7cb 200
ubhat 5:6ffeac53b7cb 201 /* Senet GPS Demo
ubhat 5:6ffeac53b7cb 202 Set Timer interrupt for next uplink
ubhat 5:6ffeac53b7cb 203 */
ubhat 5:6ffeac53b7cb 204 case 7:
ubhat 5:6ffeac53b7cb 205 {
ubhat 5:6ffeac53b7cb 206 // Schedule next packet transmission
ubhat 5:6ffeac53b7cb 207 TxDutyCycleTime = APP_TX_DUTYCYCLE + randr( -APP_TX_DUTYCYCLE_RND, APP_TX_DUTYCYCLE_RND );
ubhat 5:6ffeac53b7cb 208 TimerSetValue( &TxNextPacketTimer, TxDutyCycleTime );
ubhat 5:6ffeac53b7cb 209 TimerStart( &TxNextPacketTimer );
ubhat 5:6ffeac53b7cb 210 break;
ubhat 5:6ffeac53b7cb 211 }
ubhat 5:6ffeac53b7cb 212
ubhat 5:6ffeac53b7cb 213 /* Push Button Demo
ubhat 6:f8194e691dd4 214 Send Packet Immedietly if PC0 = GND
ubhat 5:6ffeac53b7cb 215 */
ubhat 5:6ffeac53b7cb 216 case 11:
ubhat 5:6ffeac53b7cb 217 {
ubhat 6:f8194e691dd4 218 volatile bool PushButtonStatus;
ubhat 6:f8194e691dd4 219
ubhat 6:f8194e691dd4 220 PushButtonStatus = PC0;
ubhat 6:f8194e691dd4 221
ubhat 6:f8194e691dd4 222 if(PushButtonStatus == 0)
ubhat 6:f8194e691dd4 223 {
ubhat 6:f8194e691dd4 224 // Send Pkt immedietly if PC = GND
ubhat 6:f8194e691dd4 225 DeviceState = DEVICE_STATE_SEND;
ubhat 6:f8194e691dd4 226 NextTx = true;
ubhat 6:f8194e691dd4 227 }
ubhat 6:f8194e691dd4 228 else
ubhat 6:f8194e691dd4 229 {
ubhat 6:f8194e691dd4 230 // Keep polling
ubhat 6:f8194e691dd4 231 IsTxIntUpdate = true;
ubhat 6:f8194e691dd4 232 }
ubhat 5:6ffeac53b7cb 233 break;
ubhat 5:6ffeac53b7cb 234 }
ubhat 5:6ffeac53b7cb 235
ubhat 7:92f4f419f91f 236 /* Orientation Demo
ubhat 7:92f4f419f91f 237 Send Packet Immedietly if Mote is Vertical
ubhat 7:92f4f419f91f 238 */
ubhat 7:92f4f419f91f 239 case 12:
ubhat 7:92f4f419f91f 240 {
ubhat 8:14521932100a 241 CheckOrientation( );
ubhat 7:92f4f419f91f 242
ubhat 7:92f4f419f91f 243 if(VerticalStatus == true)
ubhat 7:92f4f419f91f 244 {
ubhat 7:92f4f419f91f 245 // Send Pkt immedietly if PC = GND
ubhat 7:92f4f419f91f 246 DeviceState = DEVICE_STATE_SEND;
ubhat 7:92f4f419f91f 247 NextTx = true;
ubhat 7:92f4f419f91f 248 }
ubhat 7:92f4f419f91f 249 else
ubhat 7:92f4f419f91f 250 {
ubhat 7:92f4f419f91f 251 // Keep polling
ubhat 7:92f4f419f91f 252 IsTxIntUpdate = true;
ubhat 7:92f4f419f91f 253 }
ubhat 7:92f4f419f91f 254 break;
ubhat 7:92f4f419f91f 255 }
ubhat 7:92f4f419f91f 256
ubhat 5:6ffeac53b7cb 257 /* Compliance Test
ubhat 5:6ffeac53b7cb 258 Set Timer interrupt for next uplink
ubhat 5:6ffeac53b7cb 259 */
ubhat 5:6ffeac53b7cb 260 case 224:
ubhat 5:6ffeac53b7cb 261 {
ubhat 5:6ffeac53b7cb 262 // Schedule next packet transmission
ubhat 5:6ffeac53b7cb 263 TimerSetValue( &TxNextPacketTimer, COMPLIANCE_TX_DUTYCYCLE );
ubhat 5:6ffeac53b7cb 264 TimerStart( &TxNextPacketTimer );
ubhat 5:6ffeac53b7cb 265 break;
ubhat 5:6ffeac53b7cb 266 }
ubhat 5:6ffeac53b7cb 267
ubhat 5:6ffeac53b7cb 268 default:
ubhat 5:6ffeac53b7cb 269 {
ubhat 5:6ffeac53b7cb 270 // Schedule next packet transmission
ubhat 13:6b6f4be13633 271 TxDutyCycleTime = APP_TX_DUTYCYCLE + randr( -APP_TX_DUTYCYCLE_RND, APP_TX_DUTYCYCLE_RND );
ubhat 5:6ffeac53b7cb 272 TimerSetValue( &TxNextPacketTimer, TxDutyCycleTime );
ubhat 5:6ffeac53b7cb 273 TimerStart( &TxNextPacketTimer );
ubhat 5:6ffeac53b7cb 274 break;
ubhat 5:6ffeac53b7cb 275 }
ubhat 5:6ffeac53b7cb 276 }
ubhat 5:6ffeac53b7cb 277
ubhat 5:6ffeac53b7cb 278 }
ubhat 5:6ffeac53b7cb 279
ubhat 0:69f2e28d12c1 280 /*!
ubhat 0:69f2e28d12c1 281 * \brief What to do during JOIN process ? blink/toggle LED etc.
ubhat 0:69f2e28d12c1 282 */
ubhat 0:69f2e28d12c1 283 void JoinEvent( void )
ubhat 0:69f2e28d12c1 284 {
ubhat 0:69f2e28d12c1 285 // CtrlLED is defined in LoRaBoardAppIf.h
ubhat 0:69f2e28d12c1 286 // param 1: LED color (Red, Yellow or Green)
ubhat 0:69f2e28d12c1 287 // param 2: LED_ON or LED_OFF
ubhat 0:69f2e28d12c1 288 CtrlLED( Red, LED_ON );
ubhat 0:69f2e28d12c1 289 }
ubhat 0:69f2e28d12c1 290
ubhat 0:69f2e28d12c1 291
ubhat 0:69f2e28d12c1 292 /*!
ubhat 0:69f2e28d12c1 293 * \brief What to do during TX ? blink/toggle LED etc.
ubhat 0:69f2e28d12c1 294 */
ubhat 0:69f2e28d12c1 295 void TxEvent( void )
ubhat 0:69f2e28d12c1 296 {
ubhat 0:69f2e28d12c1 297 int blinkTime = 25000;
ubhat 0:69f2e28d12c1 298
ubhat 0:69f2e28d12c1 299 // Blink Red LED for 25msec
ubhat 0:69f2e28d12c1 300 BlinkLED( Red, blinkTime );
ubhat 0:69f2e28d12c1 301 }
ubhat 0:69f2e28d12c1 302
ubhat 0:69f2e28d12c1 303 void RxEvent()
ubhat 0:69f2e28d12c1 304 {
ubhat 0:69f2e28d12c1 305 // Toggle yellow LED
ubhat 0:69f2e28d12c1 306 ToggleLED( Yellow );
ubhat 0:69f2e28d12c1 307
ubhat 0:69f2e28d12c1 308 // If Rx Data is 0x01 turn on Green LED else if 0x0 Turn Green LED off
ubhat 0:69f2e28d12c1 309 if( LoRaMacDownlinkStatus.BufferSize == 1 )
ubhat 0:69f2e28d12c1 310 {
ubhat 0:69f2e28d12c1 311 if( LoRaMacDownlinkStatus.Buffer[0] == 0x01 )
ubhat 0:69f2e28d12c1 312 {
ubhat 0:69f2e28d12c1 313 AppLed = 1;
ubhat 0:69f2e28d12c1 314 }
ubhat 0:69f2e28d12c1 315 else
ubhat 0:69f2e28d12c1 316 {
ubhat 0:69f2e28d12c1 317 if( LoRaMacDownlinkStatus.Buffer[0] == 0x00 )
ubhat 0:69f2e28d12c1 318 {
ubhat 0:69f2e28d12c1 319 AppLed = 0;
ubhat 0:69f2e28d12c1 320 }
ubhat 0:69f2e28d12c1 321 }
ubhat 0:69f2e28d12c1 322 }
ubhat 0:69f2e28d12c1 323
ubhat 0:69f2e28d12c1 324 if( AppLed != 0 )
ubhat 0:69f2e28d12c1 325 {
ubhat 0:69f2e28d12c1 326 // Turn USR_LED ON
ubhat 0:69f2e28d12c1 327 CtrlLED( Usr, LED_ON );
ubhat 0:69f2e28d12c1 328 }
ubhat 0:69f2e28d12c1 329 else
ubhat 0:69f2e28d12c1 330 {
ubhat 0:69f2e28d12c1 331 // Turn USR_LED OFF
ubhat 0:69f2e28d12c1 332 CtrlLED( Usr, LED_OFF );
ubhat 0:69f2e28d12c1 333 }
ubhat 0:69f2e28d12c1 334 }
ubhat 0:69f2e28d12c1 335