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0b8e4d3a5c
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7c12ac40f8
1 changed files with 20 additions and 84 deletions
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@ -2,67 +2,28 @@
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#include <LiquidCrystal_I2C.h> // Support for PCF8574 --> LCD
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#include <OneWire.h> // 1-Wiresupport for DS18B20
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#include <DallasTemperature.h> // Easy reading of DS18B20
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#include <PID_v1.h> // PID-Controller
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#define ONE_WIRE_BUS 10 // Enable 1-Wirebus on digital 10 (PB2 - Pin16)
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#define fan 8
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#define wecktopf 9
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LiquidCrystal_I2C lcd(0x3F,20,4); // declare LCD
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OneWire oneWire(ONE_WIRE_BUS); // declare 1-Wirebus
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DallasTemperature sensors(&oneWire); // declare sensors
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// Define variables PID is connected to
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double pidset, watertemp, output;
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// PID adjustment
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double Kp=2, Ki=5, Kd=1;
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PID myPID(&watertemp, &output, &pidset, Kp, Ki, Kd, DIRECT);
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int WindowSize = 5000;
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unsigned long windowStartTime;
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// Temp adjustment
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int tempset;
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float tempset;
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float watertemp;
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int poti;
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// time
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int onesecond = 1000;
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unsigned long previousMillis;
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// °C for LCD
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byte customChar[8] = {
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0b01110,
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0b01010,
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0b01010,
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0b01110,
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0b00000,
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0b00000,
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0b00000,
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0b00000
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};
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void setup() {
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// Setup GPIO
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pinMode(wecktopf, OUTPUT); // Output "Wecktopf"
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pinMode(fan, OUTPUT); // Fan
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pinMode(9, OUTPUT); // Output "Wecktopf"
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pinMode(8, OUTPUT); // Fan
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// Setup sensors
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sensors.begin();
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// Setup I2C-LCD
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lcd.init();
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lcd.backlight();
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lcd.clear();
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lcd.createChar(0, customChar);
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lcd.setCursor(1, 0);
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// Setup PID
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windowStartTime = millis();
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myPID.SetOutputLimits(0, WindowSize); //tell the PID to range between 0 and the full window size
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myPID.SetMode(AUTOMATIC); //turn the PID on
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// Greetings
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lcd.print("Weckkubator 0.0.1");
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delay(3000);
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@ -71,34 +32,23 @@ void setup() {
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}
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void loop() {
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//
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settemp();
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readtemp();
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lcdoutput();
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// run pid
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pid();
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delay(100);
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if (tempset >= watertemp) {
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digitalWrite(9, HIGH);
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// update LCD
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unsigned long currentMillis = millis();
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if (currentMillis - previousMillis >= onesecond) {
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settemp();
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readtemp();
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lcdoutput();
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}
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}
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else {
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digitalWrite(9, LOW);
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//------------------------------------------
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// PID-Controller
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void pid() {
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myPID.Compute();
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/************************************************
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* turn the output pin on/off based on pid output
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************************************************/
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if (millis() - windowStartTime > WindowSize)
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{ //time to shift the Relay Window
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windowStartTime += WindowSize;
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}
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if (output < millis() - windowStartTime) digitalWrite(wecktopf, LOW);
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else digitalWrite(wecktopf, HIGH);
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}
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//------------------------------------------
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@ -118,32 +68,18 @@ void readtemp() {
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void lcdoutput() {
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// Output temperatureset
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lcd.setCursor(0, 1);
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lcd.print("set: ");
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lcd.print("s:");
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lcd.print(tempset);
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lcd.write((byte)0);
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lcd.print("C");
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// Output watertemp
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lcd.setCursor(0, 2);
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lcd.print("temp: ");
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lcd.setCursor(9, 1);
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lcd.print("t:");
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lcd.print(watertemp);
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lcd.write((byte)0);
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lcd.print("C");
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lcd.print(" ");
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// output PID
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lcd.setCursor (0, 3);
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lcd.print("output: ");
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lcd.print(output);
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lcd.print(" ");
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}
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//------------------------------------------
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// Read Poti
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void settemp() {
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poti = analogRead(A3);
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tempset = (18+(poti*0.07)); // range between 18°C and 18+1024*0,07 (~89°C)
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pidset = tempset;
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tempset = (poti*0.1);
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}
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