ec calibration measurements 20230502
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@ -31,7 +31,8 @@ unsigned long last_measurement_ec=0;
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#define EC_RELAY_SWITCH_SETTLETIME 500 //time until voltage of ec circuit has settled
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#define EC_RELAY_SWITCH_SETTLETIME 500 //time until voltage of ec circuit has settled
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const uint16_t ec_centerADCvalue=1909; //adc value when probe resistance is equal to the range resistor (mean of both)
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//const uint16_t ec_centerADCvalue=9026; //adc value when probe resistance is equal to the range resistor (mean of both)
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//Range Resistor is two parallel 1k2 = 600 Ohm
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unsigned long ec_last_change_relay=0; //millis of last relay change
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unsigned long ec_last_change_relay=0; //millis of last relay change
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@ -46,7 +47,7 @@ float ec; //ec value after adjustment for reference (at current temperature)
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float ec25; //ec value but temperature adjusted for 25 degC
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float ec25; //ec value but temperature adjusted for 25 degC
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float ec_tempadjust_alpa=0.2; //TODO
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float ec_tempadjust_alpa=0.2; //TODO
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float ec_reference_adc=5889; //adc reference value for the calibration resistor measurement
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float ec_reference_adc=6011.5; //adc reference value for the calibration resistor measurement.
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//x^0*p[0] + ... + x^n*p[n]
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//x^0*p[0] + ... + x^n*p[n]
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float ec_calibration_polynom[]={691.5992624638029,-1.4015367296761692,0.0008513503472324141,-2.2140576823179093e-07,2.8962580780180067e-11,-1.8577565383307114e-15,4.7162479484903865e-20};
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float ec_calibration_polynom[]={691.5992624638029,-1.4015367296761692,0.0008513503472324141,-2.2140576823179093e-07,2.8962580780180067e-11,-1.8577565383307114e-15,4.7162479484903865e-20};
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@ -82,7 +83,7 @@ void ec_loop(unsigned long loopmillis) {
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last_measurement_ec=loopmillis;
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last_measurement_ec=loopmillis;
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ec_startMeasurement();
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ec_startMeasurement();
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ec_connectProbe(true);
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ec_connectProbe(true);
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Serial.println("Measuring EC");
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ecstate=MEASURE;
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ecstate=MEASURE;
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}
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}
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break;
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break;
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@ -90,7 +91,6 @@ void ec_loop(unsigned long loopmillis) {
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case MEASURE:
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case MEASURE:
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if (ec_measurementReady()) {
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if (ec_measurementReady()) {
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ec_releaseRelay();
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ec_releaseRelay();
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Serial.println("Finished EC");
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ec_adc=getMean(ec_array,EC_ARRAY_SIZE);
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ec_adc=getMean(ec_array,EC_ARRAY_SIZE);
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if (isValueArrayOK(ec_calib_array,EC_CALIB_ARRAY_SIZE,0)){
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if (isValueArrayOK(ec_calib_array,EC_CALIB_ARRAY_SIZE,0)){
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ec_calib_adc=getMean(ec_calib_array,EC_CALIB_ARRAY_SIZE);
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ec_calib_adc=getMean(ec_calib_array,EC_CALIB_ARRAY_SIZE);
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14
src/main.cpp
14
src/main.cpp
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@ -62,16 +62,20 @@ void setup() {
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delay(200);
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delay(200);
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//Test adc to ec function output
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//Test adc to ec function output
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/*
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Serial.println();
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Serial.println();
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for (int i=830;i<13300;i+=100) {
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for (int i=830;i<13300;i+=100) {
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float _ec=ec_getECfromADC(i);
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float _ec=ec_getECfromADC(i);
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Serial.print(i); Serial.print(","); Serial.print(_ec); Serial.println();
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Serial.print(i); Serial.print(","); Serial.print(_ec); Serial.println();
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}
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}
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delay(100000);
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delay(100000);
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*/
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Serial.println("time,tempReservoir,ECadcCalib,ECadc,ECadcAdjusted,EC,EC25");
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//Serial.println("time,tempReservoir,ECadcCalib,ECadc,ECadcAdjusted,EC,EC25");
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Serial.println("time,tempReservoir,ECadcCalib,ECadc,ECadcAdjusted");
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}
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}
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@ -120,9 +124,9 @@ void loop() {
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Serial.print(ec_calib_adc); Serial.print(",");
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Serial.print(ec_calib_adc); Serial.print(",");
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Serial.print(ec_adc); Serial.print(",");
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Serial.print(ec_adc); Serial.print(",");
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Serial.print(ec_adc_adjusted); Serial.print(",");
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Serial.print(ec_adc_adjusted); //Serial.print(",");
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Serial.print(ec); Serial.print(",");
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//Serial.print(ec); Serial.print(",");
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Serial.print(ec25);
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//Serial.print(ec25);
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Serial.println();
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Serial.println();
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