#include #include //temp DS18B20_RT by rob tillaart #include //RTC DS3231 by andrew wickert #include //Adafruit #include /***************************************************************** Déclaration des Capteurs *****************************************************************/ //relay Lumiere const int RougeHaut = 2; const int BleuHaut = 3; const int RougeBas = 4; const int BleuBas = 5; //relay Ventilation const int DehumPin = 6; const int Extracteur = 7; const int VentilHaut = 8; const int VentilBas = 9; //relay Arrosage const int Arro1 = 10; const int Arro2 = 11; const int Evacuation = 12; const int Melange = 13; //Capteur niveau eau const int NiveauEauRecup = 14; const int NiveauEauAqua = 15; //Capteur Temp #define ONE_WIRE_TEMP 16 OneWire oneWireTemp(ONE_WIRE_TEMP); DS18B20 Temp(&oneWireTemp); //capteur Hum air #define DHTTYPE DHT22 #define DHTPIN 17 DHT dht(DHTPIN, DHTTYPE); //Capteur hum sol const int HumidSolHaut = 18; const int HumidSolBas = 19; //interupteur const int interType = 22; const int interLum = 24; const int interONExt = 26; const int interONVentil = 28; const int interOFFExt = 30; const int interONAro = 32; const int interONVid = 34; const int interOFFAro = 36; const int inter9 = 38; const int inter10 = 40; //RTC DS3231 Clock; /***************************************************************** Déclaration des Variables globals *****************************************************************/ //Variable lumiere int newDay = 1; // Variable pour savoir si nouveau jour. int HA; //heure allumage en minute int HE; //heure extinction en minute (Ha +12Hou18H +/-15min) //Variable Extraction int tmpExtract = 0, humExtract; int extract; //Variabe Arrosage const int delaySecArro = 20; const int delaySecEvacuation = 30; int SolBas, SolHaut; int HeuArrosage; /*********************************************************************** Setup **********************************************************************/ void setup() { Serial.begin(9600); /*********************************************************************** init des pins * *********************************************************************/ //PIN Lumiere pinMode(RougeHaut, OUTPUT); pinMode(RougeBas, OUTPUT); pinMode(BleuHaut, OUTPUT); pinMode(BleuBas, OUTPUT); digitalWrite(RougeHaut, HIGH); digitalWrite(RougeBas, HIGH); digitalWrite(BleuHaut, HIGH); digitalWrite(BleuBas, HIGH); //Pin ventilation pinMode(DehumPin, OUTPUT); pinMode(Extracteur, OUTPUT); pinMode(VentilHaut, OUTPUT); pinMode(VentilBas, OUTPUT); digitalWrite(DehumPin, HIGH); digitalWrite(Extracteur, HIGH); digitalWrite(VentilHaut, HIGH); digitalWrite(VentilBas, HIGH); //Pin Arrosage pinMode(Arro1, OUTPUT); pinMode(Arro2, OUTPUT); pinMode(Evacuation, OUTPUT); pinMode(Melange, OUTPUT); digitalWrite(Arro1, HIGH); digitalWrite(Arro2, HIGH); digitalWrite(Evacuation, HIGH); digitalWrite(Melange, HIGH); } /* const int Arro1 = 10; const int Arro2 = 11; const int Evacuation = 12; const int Melange = 13; */ int incomingByte = 0; // for incoming serial data void loop() { if (Serial.available() > 0) { // read the incoming byte: incomingByte = Serial.read(); if (incomingByte == 'a') { Serial.println("ON1"); digitalWrite(Arro1, LOW); } if (incomingByte == 'z') { Serial.println("ON2"); digitalWrite(Arro2, LOW); } if (incomingByte == 'q') { Serial.println("OFF1"); digitalWrite(Arro1, HIGH); } if (incomingByte == 's') { Serial.println("OFF2"); digitalWrite(Arro2, HIGH); } } }