add ds18b20 temperature sensors
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@ -181,8 +181,11 @@ void display_standingDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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display.print(" V");
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display.println();
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display.print(F("Temp:")); display.print(escFront.getFeedback_boardTemp());
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display.print(F("/")); display.print(escRear.getFeedback_boardTemp());
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//display.print(F("Temp:")); display.print(escFront.getFeedback_boardTemp());
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//display.print(F("/")); display.print(escRear.getFeedback_boardTemp());
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display.print(F("T:")); display.print(temp_ESCFront,0);
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display.print(F("/")); display.print(temp_ESCRear,0);
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display.print(F("/")); display.print(temp_Air,0);
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display.print(" C");
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display.println();
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@ -65,7 +65,8 @@ void loggingLoop(unsigned long loopmillis,ESCSerialComm& escFront, ESCSerialComm
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dataFile.print("current_FrontL,current_FrontR,current_RearL,current_RearR,");
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dataFile.print("rpm_FrontL,rpm_FrontR,rpm_RearL,rpm_RearR,");
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dataFile.print("temp_Front,temp_Rear,vbat_Front,vbat_Rear,");
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dataFile.println("currentAll,throttle,brake,speed,trip_Front,trip_Rear,currentConsumed_Front,currentConsumed_Rear");
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dataFile.print("currentAll,throttle,brake,speed,trip_Front,trip_Rear,currentConsumed_Front,currentConsumed_Rear");
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dataFile.println("temp_ESCFront,temp_ESCRear,temp_Air");
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dataFile.print("#TIMESTAMP:"); dataFile.println(now());
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logging_headerWritten=true;
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}
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@ -94,6 +95,9 @@ void loggingLoop(unsigned long loopmillis,ESCSerialComm& escFront, ESCSerialComm
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dataFile.print(escRear.getTrip()); dataFile.print(";");
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dataFile.print(escFront.getCurrentConsumed(),3); dataFile.print(";");
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dataFile.print(escRear.getCurrentConsumed(),3); dataFile.print(";");
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dataFile.print(temp_ESCFront,2); dataFile.print(";");
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dataFile.print(temp_ESCRear,2); dataFile.print(";");
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dataFile.print(temp_Air,2); dataFile.print(";");
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dataFile.println("");
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dataFile.close();
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}
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@ -0,0 +1,105 @@
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#ifndef _TEMPERATURE_H_
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#define _TEMPERATURE_H_
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#include <OneWire.h>
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#include <DallasTemperature.h>
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DeviceAddress thermometerESCFront={0x28,0xFF,0x64,0x0E,0x77,0xB0,0xAB,0x4B}; //IC with one marking 28FF640E77B0AB4B
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float temp_ESCFront;
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DeviceAddress thermometerESCRear={0x28,0xFF,0x64,0x0E,0x76,0x5D,0x86,0xC2}; //IC with two markings
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float temp_ESCRear;
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DeviceAddress thermometerAir={0x28,0xFF,0x64,0x0E,0x74,0x7E,0xFE,0x23}; //IC with three markings 28FF640E747EFE23
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float temp_Air;
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#define ONE_WIRE_BUS A2 //GPIO pin
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#define TEMPERATURE_PRECISION 12 //max is 12
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#define READINTERVAL_DS18B20 5000 //ms
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// Setup a oneWire instance to communicate with any OneWire devices (not just Maxim/Dallas temperature ICs)
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OneWire oneWire(ONE_WIRE_BUS);
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// Pass our oneWire reference to Dallas Temperature.
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DallasTemperature sensors(&oneWire);
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void initTemperature();
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void temperatureLoop();
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void printAddress(DeviceAddress deviceAddress);
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void initTemperature() {
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sensors.begin();
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delay(1000);
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Serial.print("Locating devices...");
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Serial.print("Found ");
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Serial.print(sensors.getDeviceCount(), DEC);
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Serial.println(" devices.");
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delay(1000);
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delay(1000);
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//Just search for devices. Only needed when connecting a new sensor to find the address
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oneWire.reset_search();
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for (uint8_t i=0;i<sensors.getDeviceCount();i++){
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DeviceAddress _addr;
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if (!oneWire.search(_addr)) {
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Serial.print("Error: Device not found");
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}else{
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Serial.print("Found device. Address:");
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printAddress(_addr);
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}
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Serial.println();
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}
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delay(1000);
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//sensors.setResolution(thermometerReservoir, TEMPERATURE_PRECISION);
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}
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void temperatureLoop(unsigned long loopmillis) {
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static unsigned long last_read_ds18b20;
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static bool flag_requestTemperatures=false;
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if (loopmillis>last_read_ds18b20+READINTERVAL_DS18B20) {
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if (loopmillis>last_read_ds18b20+READINTERVAL_DS18B20*10) { //timeout
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Serial.println("Warn: Request Temperatures Timeout!");
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flag_requestTemperatures=false;
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}
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if (!flag_requestTemperatures) {
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unsigned long _start=millis();
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sensors.requestTemperatures(); //this takes ~34ms
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Serial.print("DS Request took ms:"); Serial.println(millis()-_start);
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flag_requestTemperatures=true;
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}
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if (sensors.isConversionComplete()) {
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flag_requestTemperatures=false;
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last_read_ds18b20=loopmillis;
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temp_ESCFront= sensors.getTempC(thermometerESCFront); //This takes ~12.5ms
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temp_ESCRear= sensors.getTempC(thermometerESCRear);
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temp_Air= sensors.getTempC(thermometerAir);
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/*
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Serial.print("temp_ESCFront: "); Serial.println(temp_ESCFront);
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Serial.print("temp_ESCRear: "); Serial.println(temp_ESCRear);
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Serial.print("temp_Air: "); Serial.println(temp_Air);
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*/
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}
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}
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}
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void printAddress(DeviceAddress deviceAddress)
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{
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for (uint8_t i = 0; i < 8; i++)
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{
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// zero pad the address if necessary
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if (deviceAddress[i] < 16) Serial.print("0");
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Serial.print(deviceAddress[i], HEX);
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}
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}
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#endif
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@ -25,3 +25,4 @@ lib_deps =
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adafruit/Adafruit SSD1306@^2.5.7
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arduino-libraries/SD@^1.2.4
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https://github.com/adafruit/Adafruit_NeoPixel
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https://github.com/milesburton/Arduino-Temperature-Control-Library/
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@ -8,7 +8,7 @@
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#include "helpfunctions.h"
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#include "hoverboard-esc-serial-comm.h"
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#include "led.h"
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#include "temperature.h"
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//#include "comms.h"
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String getLogFilename();
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@ -21,6 +21,8 @@ String getLogFilename();
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ESCSerialComm escFront(Serial2);
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ESCSerialComm escRear(Serial3);
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//Serial1 = TX1=1, RX1=0
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@ -116,6 +118,7 @@ void setup()
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led_simpeProgress(5,true);
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//init ADS1115
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if (!ADS.begin()) {
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Serial.println("Error:"); delay(2000); Serial.println("ADS1115 Init Error!");
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led_simpeProgress(6,false);
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@ -143,6 +146,9 @@ void setup()
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led_simpeProgress(7,true);
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}
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initTemperature();
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led_simpeProgress(8,true);
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writeLogComment(millis(), "Setup Finished");
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@ -201,7 +207,7 @@ void loop() {
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if (loopmillis - last_adsread > ADSREADPERIOD) { //read teensy adc and filter
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if (ADS.isConnected() && (loopmillis - last_adsread > ADSREADPERIOD) ) { //read teensy adc and filter
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last_adsread=loopmillis;
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if (ADS.isBusy() == false) //reads a register on ads
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{
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@ -277,6 +283,9 @@ void loop() {
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display_update(escFront,escRear);
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}
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//Temperature
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temperatureLoop(loopmillis);
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//Fan
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static unsigned long last_fan_update=0;
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#define FANUPDATEPERIOD 5000
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@ -285,7 +294,8 @@ void loop() {
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if (loopmillis - last_fan_update > FANUPDATEPERIOD) {
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last_fan_update=loopmillis;
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boolean fanstatus=digitalRead(PIN_FAN);
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float temp=max(escFront.getFeedback_boardTemp(),escRear.getFeedback_boardTemp());
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//float temp=max(escFront.getFeedback_boardTemp(),escRear.getFeedback_boardTemp());
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float temp=max(temp_ESCFront,temp_ESCRear);
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if (!escFront.getControllerConnected() || !escRear.getControllerConnected()) { //boards are not powered on
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digitalWrite(PIN_FAN,HIGH); //force fan on
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}else{ //if both controllers are on, use temperature regulation
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