brewco/pid.c

Sun, 20 Dec 2015 20:37:40 +0100

author
Michiel Broek <mbroek@mbse.eu>
date
Sun, 20 Dec 2015 20:37:40 +0100
changeset 464
4a624c071ca9
parent 454
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child 473
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permissions
-rw-r--r--

Added file copy. Move home directory detection to the main program function. During opening of the main configuration file, backups are made, 10 revisions in total.

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1 /*****************************************************************************
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2 * Copyright (C) 2015
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3 *
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4 * Michiel Broek <mbroek at mbse dot eu>
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5 *
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6 * This file is part of the mbsePi-apps
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7 *
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8 * This is free software; you can redistribute it and/or modify it
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9 * under the terms of the GNU General Public License as published by the
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10 * Free Software Foundation; either version 2, or (at your option) any
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11 * later version.
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12 *
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13 * mbsePi-apps is distributed in the hope that it will be useful, but
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14 * WITHOUT ANY WARRANTY; without even the implied warranty of
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15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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16 * General Public License for more details.
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17 *
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18 * You should have received a copy of the GNU General Public License
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19 * along with ThermFerm; see the file COPYING. If not, write to the Free
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20 * Software Foundation, 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
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21 *
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22 * Based on the Arduino PID Library 1.1.1 by Brett Beauregard <br3ttb@gmail.com>
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23 * This Library is licensed under a GPLv3 License
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24 *****************************************************************************/
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25
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26 #include "brewco.h"
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27 #include "pid.h"
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28 #include "util.h"
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29
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30
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31 /*
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32 * The parameters specified here are those for for which we can't set up
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33 * reliable defaults, so we need to have the user set them.
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34 */
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35 void PID_init(pid_var *pid, double *Input, double *Output, double *Setpoint, double Kp, double Ki, double Kd, int ControllerDirection)
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36 {
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37 pid->myOutput = Output;
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38 pid->myInput = Input;
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39 pid->mySetpoint = Setpoint;
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40 pid->inAuto = FALSE;
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41 PID_setOutputLimits(pid, 0, 255);
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42 pid->SampleTime = 100;
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43 PID_setDirection(pid, ControllerDirection);
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44 PID_setTunings(pid, Kp, Ki, Kd);
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45 pid->lastTime = millis() - pid->SampleTime;
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46 }
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47
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48
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49
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50 /*
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51 * Allows the controller Mode to be set to manual (0) or Automatic (non-zero)
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52 * when the transition from manual to auto occurs, the controller is
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53 * automatically initialized
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54 */
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55 void PID_setMode(pid_var *pid, int Mode)
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56 {
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57 int newAuto = (Mode == P_AUTOMATIC);
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58
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59 if (newAuto != pid->inAuto) {
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60 /*
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61 * we just went from manual to auto
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62 */
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63 pid->ITerm = *pid->myOutput;
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64 pid->lastInput = *pid->myInput;
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65 if (pid->ITerm > pid->outMax)
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66 pid->ITerm = pid->outMax;
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67 else if (pid->ITerm < pid->outMin)
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68 pid->ITerm = pid->outMin;
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69 }
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70 pid->inAuto = newAuto;
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71 }
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72
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74
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75 /*
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76 * This function will be used far more often than SetInputLimits. while
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77 * the input to the controller will generally be in the 0-1023 range (which is
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78 * the default already,) the output will be a little different. maybe they'll
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79 * be doing a time window and will need 0-8000 or something. or maybe they'll
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80 * want to clamp it from 0-125. who knows. at any rate, that can all be done
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81 * here.
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82 */
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83 void PID_setOutputLimits(pid_var *pid, double Min, double Max)
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84 {
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85 if (Min >= Max)
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86 return;
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87
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88 pid->outMin = Min;
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89 pid->outMax = Max;
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90
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91 if (pid->inAuto == P_AUTOMATIC) {
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92 if (*pid->myOutput > pid->outMax)
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93 *pid->myOutput = pid->outMax;
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94 else if (*pid->myOutput < pid->outMin)
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95 *pid->myOutput = pid->outMin;
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96
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97 if (pid->ITerm > pid->outMax)
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98 pid->ITerm = pid->outMax;
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99 else if (pid->ITerm < pid->outMin)
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100 pid->ITerm = pid->outMin;
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101 }
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102 }
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103
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104
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105
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106 /*
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107 * This function allows the controller's dynamic performance to be adjusted.
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108 * it's called automatically from the constructor, but tunings can also
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109 * be adjusted on the fly during normal operation.
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110 */
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111 void PID_setTunings(pid_var *pid, double Kp, double Ki, double Kd)
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112 {
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113 if (Kp < 0 || Ki < 0 || Kd < 0)
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114 return;
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115 pid->dispKp = Kp;
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116 pid->dispKi = Ki;
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117 pid->dispKd = Kd;
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118
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119 double SampleTimeInSec = ((double)pid->SampleTime) / 1000;
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120 pid->Kp = Kp;
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121 pid->Ki = Ki * SampleTimeInSec;
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122 pid->Kd = Kd / SampleTimeInSec;
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123
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124 if (pid->Direction == P_REVERSE) {
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125 pid->Kp = (0 - pid->Kp);
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126 pid->Ki = (0 - pid->Ki);
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127 pid->Kd = (0 - pid->Kd);
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128 }
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129 }
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130
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131
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132
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133 /*
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134 * The PID will either be connected to a DIRECT acting process (+Output leads
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135 * to +Input) or a REVERSE acting process(+Output leads to -Input.) we need to
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136 * know which one, because otherwise we may increase the output when we should
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137 * be decreasing. This is called from PID_init().
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138 */
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139 void PID_setDirection(pid_var *pid, int Direction)
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140 {
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141 if (pid->inAuto && Direction != pid->Direction) {
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142 pid->Kp = (0 - pid->Kp);
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143 pid->Ki = (0 - pid->Ki);
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144 pid->Kd = (0 - pid->Kd);
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145 }
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146 pid->Direction = Direction;
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147 }
434
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446
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149
434
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151 /*
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152 * sets the period, in Milliseconds, at which the calculation is performed.
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153 */
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154 void PID_setSampleTime(pid_var *pid, int NewSampleTime)
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155 {
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156 if (NewSampleTime > 0) {
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157 double ratio = (double)NewSampleTime / (double)pid->SampleTime;
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158
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159 pid->Ki *= ratio;
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160 pid->Kd /= ratio;
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161 pid->SampleTime = NewSampleTime;
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162 }
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163 }
434
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164
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165
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166
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167 /*
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168 * Just because you set the Kp=-1 doesn't mean it actually happened. these
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169 * functions query the internal state of the PID. they're here for display
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170 * purposes. this are the functions the PID Front-end uses for example
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171 */
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172 double PID_getKp(pid_var *pid)
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173 {
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174 return pid->dispKp;
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175 }
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176
434
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177
446
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178
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179 double PID_getKi(pid_var *pid)
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180 {
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181 return pid->dispKi;
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182 }
434
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183
446
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184
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185
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186 double PID_getKd(pid_var *pid)
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187 {
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188 return pid->dispKd;
434
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189 }
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190
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191
446
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192
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193 int PID_getMode(pid_var *pid)
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194 {
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195 return pid->inAuto ? P_AUTOMATIC : P_MANUAL;
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196 }
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197
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198
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199
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200 int PID_getDirection(pid_var *pid)
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201 {
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202 return pid->Direction;
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203 }
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204
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205
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206
448
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207 int PID_getSampleTime(pid_var *pid)
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208 {
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209 return pid->SampleTime;
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210 }
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211
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212
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213
446
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214 /*
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215 * This, as they say, is where the magic happens. this function should be called
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216 * every time "void loop()" executes. the function will decide for itself whether a new
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217 * pid Output needs to be computed. returns true when the output is computed,
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218 * false when nothing has been done.
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219 */
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220 int PID_compute(pid_var *pid)
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221 {
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222 if (! pid->inAuto)
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223 return FALSE;
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224
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225 long now = millis();
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226 long timeChange = (now - pid->lastTime);
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227
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228 if (timeChange >= pid->SampleTime) {
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229 /*
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230 * Compute all the working error variables
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231 */
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232 double input = *pid->myInput;
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233 double error = *pid->mySetpoint - input;
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234 pid->ITerm += (pid->Ki * error);
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235 if (pid->ITerm > pid->outMax)
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236 pid->ITerm = pid->outMax;
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237 else if (pid->ITerm < pid->outMin)
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238 pid->ITerm = pid->outMin;
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239 double dInput = input - pid->lastInput;
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240
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241 /*
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242 * Compute PID output
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243 */
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244 double output = pid->Kp * error + pid->ITerm - pid->Kd * dInput;
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245 if (output > pid->outMax)
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246 output = pid->outMax;
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247 else if (output < pid->outMin)
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248 output = pid->outMin;
454
78242696c15a Beginning of the main program loop
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249 *pid->myOutput = output;
446
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250
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251 /*
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252 * Remember some variables for the next time
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253 */
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254 pid->lastInput = input;
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255 pid->lastTime = now;
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256 return TRUE;
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257 }
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258
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259 return FALSE;
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260 }
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261
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262

mercurial