C++ class for controlling DC motor with encoder feedback. Dependencies include LS7366LIB, MotCon, and PID.

Dependencies:   LS7366LIB MotCon2 PID

Dependents:   LPC1768_6axis_Arm

Committer:
jebradshaw
Date:
Mon Jul 11 18:26:26 2016 +0000
Revision:
8:7e399d7c990d
Parent:
7:d0458137d6e0
Child:
9:7bc59203ce98
Updated gains for DC motors

Who changed what in which revision?

UserRevisionLine numberNew contents of line
jebradshaw 0:cf7192f9f99a 1
jebradshaw 0:cf7192f9f99a 2 #include "Axis.h"
jebradshaw 0:cf7192f9f99a 3 #include "LS7366.h"
jebradshaw 0:cf7192f9f99a 4 #include "MotCon.h"
jebradshaw 0:cf7192f9f99a 5 #include "PID.h"
jebradshaw 0:cf7192f9f99a 6
jebradshaw 8:7e399d7c990d 7 Axis::Axis(SPI& spi, PinName cs, PinName pwm, PinName dir, PinName analog, int* limit): _spi(spi), _cs(cs), _pwm(pwm), _dir(dir) , _analog(analog){
jebradshaw 4:4079f92f9c26 8 this->_cs = 1; // Initialize chip select as off (high)
jebradshaw 4:4079f92f9c26 9 this->_pwm = 0.0;
jebradshaw 4:4079f92f9c26 10 this->_dir = 0;
jebradshaw 4:4079f92f9c26 11 this->co = 0.0;
jebradshaw 4:4079f92f9c26 12 this->Tdelay = .01;
jebradshaw 4:4079f92f9c26 13 this->Pk = 120.0; //80.0; //rough gains, seem to work well but could use tuning
jebradshaw 8:7e399d7c990d 14 this->Ik = 75.0; //35.0;
jebradshaw 4:4079f92f9c26 15 this->Dk = 0.0;
jebradshaw 4:4079f92f9c26 16 this->set_point = 0.0;
jebradshaw 4:4079f92f9c26 17 this->set_point_last = 0.0;
jebradshaw 4:4079f92f9c26 18 this->pos = 0.0;
jebradshaw 4:4079f92f9c26 19 this->vel = 0.0;
jebradshaw 4:4079f92f9c26 20 this->acc = 0.0;
jebradshaw 8:7e399d7c990d 21 this->stat = -1;
jebradshaw 4:4079f92f9c26 22 this->pos_cmd = 0.0;
jebradshaw 4:4079f92f9c26 23 this->vel_cmd = 0.0;
jebradshaw 4:4079f92f9c26 24 this->vel_avg_cmd = 0;
jebradshaw 4:4079f92f9c26 25 this->acc_cmd = 0.0;
jebradshaw 4:4079f92f9c26 26 this->vel_max = 2700.0 * Tdelay; //counts * Tdelay
jebradshaw 4:4079f92f9c26 27 this->acc_max = 1200.0 * Tdelay; //counts/sec/sec * Tdelay
jebradshaw 4:4079f92f9c26 28 this->p_higher = 0.0;
jebradshaw 4:4079f92f9c26 29 this->p_lower = 0.0;
jebradshaw 4:4079f92f9c26 30 this->vel_accum = 0.0;
jebradshaw 4:4079f92f9c26 31 this->moveTime = 0.0;
jebradshaw 4:4079f92f9c26 32 this->enc = 0;
jebradshaw 4:4079f92f9c26 33 this->moveStatus = 0; //status flag to indicate state of profile movement
jebradshaw 4:4079f92f9c26 34 this->moveState = 0; //used for state machine in movement profiles
jebradshaw 4:4079f92f9c26 35 this->debug = 0;
jebradshaw 4:4079f92f9c26 36 this->update.attach(this, &Axis::paramUpdate, Tdelay);
jebradshaw 5:79dcaa63700c 37 this->axisState = 0;
jebradshaw 5:79dcaa63700c 38 this->mot_I_lim = .35;
jebradshaw 7:d0458137d6e0 39 this->motInvert = 0;
jebradshaw 7:d0458137d6e0 40 this->dataFormat = 'r'; //default is radians
jebradshaw 8:7e399d7c990d 41 // this->ctsPerDeg = cpd; //update counts per degree passed from constructor
jebradshaw 0:cf7192f9f99a 42
jebradshaw 4:4079f92f9c26 43 this->pid = new PID(0.0,0.0,0.0,Tdelay); //Kc, Ti, Td, interval
jebradshaw 4:4079f92f9c26 44 this->ls7366 = new LS7366(spi, cs); //LS7366 encoder interface IC
jebradshaw 4:4079f92f9c26 45 this->motcon = new MotCon(pwm, dir);
jebradshaw 4:4079f92f9c26 46 this->ptr_limit = limit;
jebradshaw 0:cf7192f9f99a 47
jebradshaw 0:cf7192f9f99a 48 //start at 0
jebradshaw 0:cf7192f9f99a 49 this->ls7366->LS7366_reset_counter();
jebradshaw 0:cf7192f9f99a 50 this->ls7366->LS7366_quad_mode_x4();
jebradshaw 0:cf7192f9f99a 51 this->ls7366->LS7366_write_DTR(0);
jebradshaw 0:cf7192f9f99a 52
jebradshaw 0:cf7192f9f99a 53 this->set_point = 0.0;
jebradshaw 0:cf7192f9f99a 54 this->pid->setSetPoint(this->set_point);
jebradshaw 0:cf7192f9f99a 55 this->enc = this->ls7366->LS7366_read_counter(); //update class variable
jebradshaw 0:cf7192f9f99a 56 }
jebradshaw 0:cf7192f9f99a 57
jebradshaw 2:653433f4ee72 58 void Axis::init(void){
jebradshaw 0:cf7192f9f99a 59 //resets the controllers internals
jebradshaw 0:cf7192f9f99a 60 this->pid->reset();
jebradshaw 0:cf7192f9f99a 61
jebradshaw 0:cf7192f9f99a 62 //Encoder counts limit
jebradshaw 8:7e399d7c990d 63 this->pid->setInputLimits(-55000, 55000);
jebradshaw 0:cf7192f9f99a 64 //Pwm output from 0.0 to 1.0
jebradshaw 0:cf7192f9f99a 65 this->pid->setOutputLimits(-1.0, 1.0);
jebradshaw 0:cf7192f9f99a 66 //If there's a bias.
jebradshaw 0:cf7192f9f99a 67 this->pid->setBias(0.0);
jebradshaw 0:cf7192f9f99a 68 this->pid->setMode(AUTO_MODE);
jebradshaw 0:cf7192f9f99a 69
jebradshaw 0:cf7192f9f99a 70 this->pid->setInterval(this->Tdelay);
jebradshaw 0:cf7192f9f99a 71
jebradshaw 0:cf7192f9f99a 72 //start at 0
jebradshaw 0:cf7192f9f99a 73 this->ls7366->LS7366_reset_counter();
jebradshaw 0:cf7192f9f99a 74 this->ls7366->LS7366_quad_mode_x4();
jebradshaw 0:cf7192f9f99a 75 this->ls7366->LS7366_write_DTR(0);
jebradshaw 0:cf7192f9f99a 76
jebradshaw 0:cf7192f9f99a 77 this->set_point = 0.0;
jebradshaw 0:cf7192f9f99a 78 this->pid->setSetPoint(this->set_point);
jebradshaw 0:cf7192f9f99a 79 this->enc = this->ls7366->LS7366_read_counter(); //update class variable
jebradshaw 0:cf7192f9f99a 80
jebradshaw 0:cf7192f9f99a 81 //resets the controllers internals
jebradshaw 0:cf7192f9f99a 82 this->pid->reset();
jebradshaw 0:cf7192f9f99a 83 //start at 0
jebradshaw 0:cf7192f9f99a 84 this->set_point = 0.0;
jebradshaw 0:cf7192f9f99a 85 this->pid->setSetPoint(0);
jebradshaw 0:cf7192f9f99a 86
jebradshaw 0:cf7192f9f99a 87 this->pid->setTunings(this->Pk, this->Ik, this->Dk); //turns on controller
jebradshaw 0:cf7192f9f99a 88 }
jebradshaw 0:cf7192f9f99a 89
jebradshaw 0:cf7192f9f99a 90 void Axis::paramUpdate(void){
jebradshaw 0:cf7192f9f99a 91 //testOut = 1;
jebradshaw 0:cf7192f9f99a 92 this->enc = this->ls7366->LS7366_read_counter();
jebradshaw 0:cf7192f9f99a 93 this->pos = (float)this->enc; // * this->countsPerDeg * PI/180.0; //times counts/degree and convert to radians
jebradshaw 0:cf7192f9f99a 94
jebradshaw 0:cf7192f9f99a 95 this->vel = (this->pos - this->pos_last) * this->Tdelay;
jebradshaw 0:cf7192f9f99a 96 this->acc = (this->vel - this->vel_last);
jebradshaw 0:cf7192f9f99a 97
jebradshaw 0:cf7192f9f99a 98 this->pid->setSetPoint(this->set_point);
jebradshaw 0:cf7192f9f99a 99
jebradshaw 0:cf7192f9f99a 100 //Update the process variable.
jebradshaw 0:cf7192f9f99a 101 this->pid->setProcessValue(this->pos);
jebradshaw 0:cf7192f9f99a 102 //Set the new output.
jebradshaw 0:cf7192f9f99a 103 this->co = this->pid->compute();
jebradshaw 0:cf7192f9f99a 104
jebradshaw 7:d0458137d6e0 105 if(this->axisState){
jebradshaw 7:d0458137d6e0 106 if(this->motInvert==0){
jebradshaw 7:d0458137d6e0 107 this->motcon->mot_control(this->co); //send controller output to PWM motor control command
jebradshaw 7:d0458137d6e0 108 }
jebradshaw 7:d0458137d6e0 109 else{
jebradshaw 7:d0458137d6e0 110 this->motcon->mot_control(this->co, 1); //send controller output to PWM motor control command
jebradshaw 7:d0458137d6e0 111 }
jebradshaw 7:d0458137d6e0 112 }
jebradshaw 4:4079f92f9c26 113 else{
jebradshaw 4:4079f92f9c26 114 this->co = 0.0;
jebradshaw 4:4079f92f9c26 115 this->motcon->mot_control(0.0); //turn off motor command
jebradshaw 4:4079f92f9c26 116 }
jebradshaw 4:4079f92f9c26 117
jebradshaw 0:cf7192f9f99a 118 this->pos_last = this->pos;
jebradshaw 0:cf7192f9f99a 119 this->vel_last = this->vel;
jebradshaw 0:cf7192f9f99a 120 this->set_point_last = this->set_point;
jebradshaw 0:cf7192f9f99a 121 //testOut = 0;
jebradshaw 0:cf7192f9f99a 122 }
jebradshaw 0:cf7192f9f99a 123
jebradshaw 8:7e399d7c990d 124 void Axis::center(void){
jebradshaw 5:79dcaa63700c 125 while((*this->ptr_limit == 1) && (this->readCurrent() < mot_I_lim)){ //limit switch not pressed and mot current not exceeded
jebradshaw 0:cf7192f9f99a 126 this->set_point += 100;
jebradshaw 7:d0458137d6e0 127 wait(.05);
jebradshaw 0:cf7192f9f99a 128 if(this->debug)
jebradshaw 2:653433f4ee72 129 printf("T=%.2f SP=%.3f co=%.3f pos=%.3f vel=%.3f acc=%.3f limit=%d motI=%.3f\r\n", t.read(), this->set_point, this->co, this->pos, this->vel, this->acc,*this->ptr_limit, this->_analog.read());
jebradshaw 0:cf7192f9f99a 130 }
jebradshaw 5:79dcaa63700c 131 wait(.5);
jebradshaw 5:79dcaa63700c 132 while((*this->ptr_limit == 0)){ //limit switch is pressed
jebradshaw 5:79dcaa63700c 133 this->set_point -= 10;
jebradshaw 5:79dcaa63700c 134 wait(.1);
jebradshaw 5:79dcaa63700c 135 if(this->debug)
jebradshaw 2:653433f4ee72 136 printf("T=%.2f SP=%.3f co=%.3f pos=%.3f vel=%.3f acc=%.3f limit=%d motI=%.3f\r\n", t.read(), this->set_point, this->co, this->pos, this->vel, this->acc,*this->ptr_limit, this->_analog.read());
jebradshaw 0:cf7192f9f99a 137 }
jebradshaw 5:79dcaa63700c 138 this->zero(); //zero channel
jebradshaw 0:cf7192f9f99a 139
jebradshaw 8:7e399d7c990d 140 // this->set_point = -(totalCounts/2.0);
jebradshaw 0:cf7192f9f99a 141
jebradshaw 2:653433f4ee72 142 if(this->debug)
jebradshaw 2:653433f4ee72 143 printf("HOME END:T=%.2f SP=%.3f co=%.3f pos=%.3f vel=%.3f acc=%.3f limit=%d motI=%.3f\r\n", t.read(), this->set_point, this->co, this->pos, this->vel, this->acc,*this->ptr_limit, this->_analog.read());
jebradshaw 0:cf7192f9f99a 144 // pc.printf("End Home\r\n\r\n");
jebradshaw 0:cf7192f9f99a 145 }
jebradshaw 0:cf7192f9f99a 146
jebradshaw 2:653433f4ee72 147 void Axis::moveUpdate(void){
jebradshaw 2:653433f4ee72 148
jebradshaw 5:79dcaa63700c 149 /* if(*this->ptr_limit == 0){
jebradshaw 2:653433f4ee72 150 this->moveState = 4; //terminate the move
jebradshaw 2:653433f4ee72 151 printf("\r\nLimit reached on axis!\r\n");
jebradshaw 2:653433f4ee72 152 }
jebradshaw 5:79dcaa63700c 153 */
jebradshaw 2:653433f4ee72 154 if(this->debug)
jebradshaw 2:653433f4ee72 155 printf("T=%.2f SP=%.3f co=%.3f pos=%.3f vel=%.3f acc=%.3f limit=%d motI=%.3f\r\n", t.read(), this->set_point, this->co, this->pos, this->vel, this->acc,*this->ptr_limit, this->_analog.read());
jebradshaw 2:653433f4ee72 156
jebradshaw 0:cf7192f9f99a 157 switch(this->moveState){
jebradshaw 0:cf7192f9f99a 158 case 0:
jebradshaw 0:cf7192f9f99a 159 break;
jebradshaw 0:cf7192f9f99a 160
jebradshaw 0:cf7192f9f99a 161 //accelerate
jebradshaw 0:cf7192f9f99a 162 case 1:
jebradshaw 0:cf7192f9f99a 163 //testOut = 1;
jebradshaw 0:cf7192f9f99a 164 this->vel_accum += this->acc_cmd * this->Tdelay; //add acceleration to the velocity accumulator
jebradshaw 0:cf7192f9f99a 165 if(this->vel_avg_cmd > 0.0){ //check the sign of the movement
jebradshaw 0:cf7192f9f99a 166 if(this->vel_accum >= this->vel_cmd) //if the accumulator reaches or exceeds the velocity command
jebradshaw 0:cf7192f9f99a 167 this->vel_accum = this->vel_cmd; // only add the velocity command to the accumulator
jebradshaw 0:cf7192f9f99a 168 }
jebradshaw 0:cf7192f9f99a 169 else{ //if the sign was negative
jebradshaw 0:cf7192f9f99a 170 if(this->vel_accum <= this->vel_cmd)
jebradshaw 0:cf7192f9f99a 171 this->vel_accum = this->vel_cmd;
jebradshaw 0:cf7192f9f99a 172 }
jebradshaw 0:cf7192f9f99a 173 //testOut = 0;
jebradshaw 0:cf7192f9f99a 174
jebradshaw 0:cf7192f9f99a 175 this->set_point += this->vel_accum;
jebradshaw 0:cf7192f9f99a 176 //pc.printf("T=%.2f SP=%.3f co=%.3f enc=%d pos=%.3f vel=%.3f acc=%.3f vel_accum=%.2f accelCnt=%.2f \r\n", t.read(), con0.set_point, con0.co, con0.enc, con0.pos, con0.vel, con0.acc, vel_accum, accelCnt);
jebradshaw 0:cf7192f9f99a 177 //pc.printf("acc_up,%.2f,%.3f,%.1f,%.3f,%.3f,%.2f,%.2f\r\n", this->t.read(), this->set_point, this->pos, this->vel, this->acc, this->vel_accum, this->acc_cmd);
jebradshaw 0:cf7192f9f99a 178
jebradshaw 0:cf7192f9f99a 179 if(this->t.read()>=(this->moveTime/3.0) || (abs(this->vel_accum) > abs(this->vel_cmd)))
jebradshaw 0:cf7192f9f99a 180 this->moveState = 2;
jebradshaw 0:cf7192f9f99a 181 break;
jebradshaw 0:cf7192f9f99a 182
jebradshaw 0:cf7192f9f99a 183 //constant velocity
jebradshaw 0:cf7192f9f99a 184 case 2:
jebradshaw 0:cf7192f9f99a 185 //testOut = 1;
jebradshaw 0:cf7192f9f99a 186 //this->vel_accum += this->vel_cmd * this->Tdelay;
jebradshaw 0:cf7192f9f99a 187 this->set_point += this->vel_cmd;
jebradshaw 0:cf7192f9f99a 188 //testOut = 0;
jebradshaw 0:cf7192f9f99a 189 //pc.printf("T=%.2f SP=%.3f co=%.3f enc=%d pos=%.3f vel=%.3f acc=%.3f vel_accum=%.2f accelCnt=%.2f \r\n", t.read(), con0.set_point, con0.co, con0.enc, con0.pos, con0.vel, con0.acc, vel_accum, accelCnt);
jebradshaw 0:cf7192f9f99a 190 //pc.printf("vel_cn,%.2f,%.3f,%.1f,%.3f,%.3f,%.2f,%.2f\r\n", this->t.read(), this->set_point, this->pos, this->vel, this->acc, this->vel_accum, this->acc_cmd);
jebradshaw 0:cf7192f9f99a 191
jebradshaw 0:cf7192f9f99a 192 if(this->t.read()>=(2.0/3.0 * this->moveTime))
jebradshaw 0:cf7192f9f99a 193 this->moveState = 3;
jebradshaw 0:cf7192f9f99a 194 break;
jebradshaw 0:cf7192f9f99a 195
jebradshaw 0:cf7192f9f99a 196 //decelerate
jebradshaw 0:cf7192f9f99a 197 case 3:
jebradshaw 0:cf7192f9f99a 198 this->vel_accum -= this->acc_cmd * this->Tdelay;
jebradshaw 0:cf7192f9f99a 199
jebradshaw 0:cf7192f9f99a 200 this->set_point += this->vel_accum; //ramp down velocity by acceleration
jebradshaw 0:cf7192f9f99a 201 //pc.printf("T=%.2f SP=%.3f co=%.3f enc=%d pos=%.3f vel=%.3f acc=%.3f vel_accum=%.2f accelCnt=%.2f \r\n", t.read(), con0.set_point, con0.co, con0.enc, con0.pos, con0.vel, con0.acc, vel_accum, accelCnt);
jebradshaw 0:cf7192f9f99a 202 //pc.printf("acc_dn,%.2f,%.3f,%.1f,%.3f,%.3f,%.2f,%.2f\r\n", this->t.read(), this->set_point, this->pos, this->vel, this->acc, this->vel_accum, this->acc_cmd);
jebradshaw 0:cf7192f9f99a 203
jebradshaw 0:cf7192f9f99a 204 if(this->vel_avg_cmd > 0.0){
jebradshaw 1:cd249816dba8 205 if(this->pos_cmd <= this->pos){
jebradshaw 1:cd249816dba8 206 //finish with position command
jebradshaw 1:cd249816dba8 207 this->set_point = this->pos_cmd;
jebradshaw 0:cf7192f9f99a 208 this->moveState = 4;
jebradshaw 1:cd249816dba8 209 }
jebradshaw 0:cf7192f9f99a 210 }
jebradshaw 0:cf7192f9f99a 211 else{
jebradshaw 1:cd249816dba8 212 if(this->pos_cmd >= this->pos){
jebradshaw 1:cd249816dba8 213 //finish with position command
jebradshaw 5:79dcaa63700c 214 //this->set_point = this->pos_cmd; //May be causing jerk after multi-axis movements J Bradshaw 20151124
jebradshaw 1:cd249816dba8 215 this->moveState = 4;
jebradshaw 1:cd249816dba8 216 }
jebradshaw 0:cf7192f9f99a 217 }
jebradshaw 0:cf7192f9f99a 218
jebradshaw 0:cf7192f9f99a 219 if(this->t.read()>=this->moveTime){
jebradshaw 1:cd249816dba8 220 //finish with position command
jebradshaw 5:79dcaa63700c 221 //this->set_point = this->pos_cmd; //May be causing jerk after multi-axis movements J Bradshaw 20151124
jebradshaw 0:cf7192f9f99a 222 this->moveState = 4;
jebradshaw 0:cf7192f9f99a 223 }
jebradshaw 0:cf7192f9f99a 224 break;
jebradshaw 0:cf7192f9f99a 225
jebradshaw 0:cf7192f9f99a 226 case 4:
jebradshaw 0:cf7192f9f99a 227 this->moveProfile.detach(); //turn off the trapazoidal update ticker
jebradshaw 0:cf7192f9f99a 228 this->t.stop();
jebradshaw 0:cf7192f9f99a 229 this->moveState = 0;
jebradshaw 0:cf7192f9f99a 230 break;
jebradshaw 0:cf7192f9f99a 231 }//switch moveStatus
jebradshaw 0:cf7192f9f99a 232 return;
jebradshaw 0:cf7192f9f99a 233 }
jebradshaw 0:cf7192f9f99a 234
jebradshaw 0:cf7192f9f99a 235 // position - encoder position to move to
jebradshaw 0:cf7192f9f99a 236 // time - duration of the movement
jebradshaw 0:cf7192f9f99a 237 void Axis::moveTrapezoid(float positionCmd, float time){
jebradshaw 0:cf7192f9f99a 238 this->pos_cmd = positionCmd;
jebradshaw 0:cf7192f9f99a 239 this->moveTime = time;
jebradshaw 4:4079f92f9c26 240 float enc_distance = this->pos_cmd - (float)this->enc;// * 1.0/con0.countsPerDeg * 180.0/PI;
jebradshaw 0:cf7192f9f99a 241
jebradshaw 0:cf7192f9f99a 242 this->vel_avg_cmd = enc_distance / time;
jebradshaw 0:cf7192f9f99a 243 this->vel_cmd = 1.5 * this->vel_avg_cmd * this->Tdelay;
jebradshaw 0:cf7192f9f99a 244 this->acc_cmd = 4.5 * (enc_distance / (this->moveTime * this->moveTime)) * this->Tdelay;
jebradshaw 0:cf7192f9f99a 245
jebradshaw 0:cf7192f9f99a 246 //pc.printf("tx=%f encdist=%.3f vAvg=%.3f vMax=%.3f Acc=%.3f \r\n", this->moveTime, enc_distance,this->vel_avg_cmd,this->vel_cmd,this->acc_cmd);
jebradshaw 0:cf7192f9f99a 247
jebradshaw 0:cf7192f9f99a 248 //establish encoder velocities and accelerations for position control per Tdelay
jebradshaw 0:cf7192f9f99a 249 this->vel_accum = 0.0;
jebradshaw 0:cf7192f9f99a 250
jebradshaw 0:cf7192f9f99a 251 // this->set_point = this->pos;
jebradshaw 0:cf7192f9f99a 252 this->moveState = 1;
jebradshaw 0:cf7192f9f99a 253 this->t.reset();
jebradshaw 0:cf7192f9f99a 254 this->t.start();
jebradshaw 0:cf7192f9f99a 255 this->moveProfile.attach(this, &Axis::moveUpdate, this->Tdelay);
jebradshaw 0:cf7192f9f99a 256 }
jebradshaw 2:653433f4ee72 257
jebradshaw 4:4079f92f9c26 258 float Axis::readCurrent(void){
jebradshaw 8:7e399d7c990d 259 motCurrent = (this->_analog.read() * 3.3)/ .525; //525mV per amp
jebradshaw 4:4079f92f9c26 260 return motCurrent;
jebradshaw 2:653433f4ee72 261 }
jebradshaw 2:653433f4ee72 262
jebradshaw 2:653433f4ee72 263 void Axis::axisOff(void){
jebradshaw 4:4079f92f9c26 264 this->co = 0;
jebradshaw 2:653433f4ee72 265 this->axisState = 0;
jebradshaw 2:653433f4ee72 266 }
jebradshaw 2:653433f4ee72 267
jebradshaw 2:653433f4ee72 268 void Axis::axisOn(void){
jebradshaw 4:4079f92f9c26 269 this->co = 0.0;
jebradshaw 4:4079f92f9c26 270 this->pid->reset();
jebradshaw 4:4079f92f9c26 271 //start at 0
jebradshaw 4:4079f92f9c26 272 this->set_point = 0.0;
jebradshaw 4:4079f92f9c26 273 this->pid->setSetPoint(0);
jebradshaw 4:4079f92f9c26 274
jebradshaw 4:4079f92f9c26 275 this->pid->setTunings(this->Pk, this->Ik, this->Dk); //turns on controller
jebradshaw 2:653433f4ee72 276 this->axisState = 1;
jebradshaw 5:79dcaa63700c 277 }
jebradshaw 5:79dcaa63700c 278
jebradshaw 5:79dcaa63700c 279 void Axis::zero(void){
jebradshaw 5:79dcaa63700c 280 this->ls7366->LS7366_reset_counter();
jebradshaw 5:79dcaa63700c 281 this->ls7366->LS7366_quad_mode_x4();
jebradshaw 5:79dcaa63700c 282 this->ls7366->LS7366_write_DTR(0);
jebradshaw 5:79dcaa63700c 283
jebradshaw 5:79dcaa63700c 284 this->set_point = 0.0;
jebradshaw 5:79dcaa63700c 285 this->pid->setSetPoint(0);
jebradshaw 8:7e399d7c990d 286 }
jebradshaw 8:7e399d7c990d 287
jebradshaw 8:7e399d7c990d 288 void Axis::writeEncoderValue(long value){
jebradshaw 8:7e399d7c990d 289 this->ls7366->LS7366_write_DTR(value);
jebradshaw 8:7e399d7c990d 290
jebradshaw 8:7e399d7c990d 291 this->set_point = (float)value;
jebradshaw 8:7e399d7c990d 292 this->pid->setSetPoint(this->set_point);
jebradshaw 2:653433f4ee72 293 }