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4 commits

Author SHA1 Message Date
88fc817027 progress 2023-08-07 01:19:09 +02:00
f2e3fa1a01 progress 2023-08-07 01:08:16 +02:00
eef705ab62 progress 2023-08-07 01:08:03 +02:00
f2a9562f00 progress 2023-08-07 01:07:42 +02:00
2 changed files with 21 additions and 99 deletions

22
main.py
View file

@ -7,17 +7,25 @@
import serial
import time
ser = serial.Serial('/dev/ttyACM0', baudrate = 9600, timeout = 1)
ser = serial.Serial('/dev/ttyACM0', baudrate = 9600, timeout = 6)
#time.sleep(3)
#ser.readline()
while 1:
# { "command": "switch", "arg": "one", "state": "off", "ver":"1690931931"}
userInput = input('> ')
ser.write(str(userInput).encode('ascii'))
arduinoData = ser.readline().decode('ascii')
print(arduinoData)
# ser.readline()
Data = ser.readline().decode('ascii')
print(Data)
#outFile = open("arduino-fridge-powercontrol.json", "w")
#outFile.write(Data)
#outFile.close
##while 1:
## # { "command": "switch", "arg": "one", "state": "off", "ver":"1690931931"}
## userInput = input('> ')
## ser.write(str(userInput).encode('ascii'))
## arduinoData = ser.readline().decode('ascii')
## print(arduinoData)
##def getValues():

View file

@ -36,66 +36,20 @@ bool fetState2;
uint8_t addrSensor1[8] = { 0x28, 0xFF, 0x64, 0x1F, 0x79, 0xD1, 0xB1, 0x75 };
uint8_t addrSensor2[8] = { 0x28, 0xFF, 0x64, 0x1F, 0x79, 0xD7, 0xDA, 0x9A };
/*
// countLowTemp
int cLTemp1 = 0;
int cLTemp2 = 0;
// countHighTemp
int cHTemp1 = 0;
int cHTemp2 = 0;
// loops to count temp before switching state
int cTemp = 5;
*/
void setup() {
// put your setup code here, to run once:
pinMode(MOSFET1, OUTPUT);
pinMode(MOSFET2, OUTPUT);
Serial.begin(9600);
sensors.begin();
// locate devices on the bus
Serial.println("Locating devices...");
Serial.print("Found ");
deviceCount = sensors.getDeviceCount();
Serial.print(deviceCount, DEC);
Serial.println(" devices.");
Serial.println("");
Serial.println("Printing addresses...");
for (int i = 0; i < deviceCount; i++)
{
Serial.print("Sensor ");
Serial.print(i+1);
Serial.print(" : ");
sensors.getAddress(Thermometer, i);
printAddress(Thermometer);
}
Serial.println("");
Serial.print("MOSFET1 start temp: ");
Serial.print(HTemp1);
Serial.print("°C, stop temp: ");
Serial.print(LTemp1);
Serial.println("°C");
Serial.print("MOSFET2 start temp: ");
Serial.print(HTemp2);
Serial.print("°C, stop temp: ");
Serial.print(LTemp2);
Serial.println("°C");
}
void loop() {
// put your main code here, to run repeatedly:
//if(Serial.available()>0) {
sensors.requestTemperatures();
tempSensor1 = sensors.getTempC(addrSensor1);
if(tempSensor1 > HTemp1) {
@ -115,56 +69,16 @@ void loop() {
fetState2 = 0;
}
/*
Serial.print("Sens 1 ");
Serial.print("Celsius temperature: ");
// Why "byIndex"? You can have more than one IC on the same bus. 0 refers to the first IC on the wire
Serial.print(sensors.getTempC(addrSensor1));
Serial.print(" - Fahrenheit temperature: ");
Serial.print(sensors.getTempF(addrSensor1));
Serial.print(" - MOSFET1 Sate: ");
Serial.println(fetState1);
Serial.print("Sens 2 ");
Serial.print("Celsius temperature: ");
// Why "byIndex"? You can have more than one IC on the same bus. 0 refers to the first IC on the wire
Serial.print(sensors.getTempC(addrSensor2));
Serial.print(" - Fahrenheit temperature: ");
Serial.print(sensors.getTempF(addrSensor2));
Serial.print(" - MOSFET2 Sate: ");
Serial.println(fetState2);
*/
StaticJsonDocument<96> jsonOut;
//jsonOut["sensor"] = "1";
jsonOut["sensor1"]["temp"] = tempSensor1;
jsonOut["sensor1"]["state"] = fetState1;
jsonOut[0]["temp"] = tempSensor1;
jsonOut[0]["state"] = fetState1;
//jsonOut["sensor"] = "2";
jsonOut["sensor2"]["temp"] = tempSensor2;
jsonOut["sensor2"]["state"] = fetState2;
jsonOut[1]["temp"] = tempSensor2;
jsonOut[1]["state"] = fetState2;
serializeJson(jsonOut, Serial);
Serial.println();
/*
digitalWrite(MOSFET, HIGH);
delay(2000);
digitalWrite(MOSFET, LOW);
delay(2000);
*/
delay(1000);
// }
delay(5000);
}
void printAddress(DeviceAddress deviceAddress)
{
for (uint8_t i = 0; i < 8; i++)
{
Serial.print("0x");
if (deviceAddress[i] < 0x10) Serial.print("0");
Serial.print(deviceAddress[i], HEX);
if (i < 7) Serial.print(", ");
}
Serial.println("");
}