RemyCluze 5 năm trước cách đây
mục cha
commit
40158dfb3d
1 tập tin đã thay đổi với 30 bổ sung12 xóa
  1. 30 12
      Soft/tmp/tmp.ino

+ 30 - 12
Soft/tmp/tmp.ino

@@ -1,13 +1,13 @@
 
 #include <OneWire.h>
-#include <DS18B20.h>
-#include <DS3231.h>
+#include <DS18B20.h>  //DS18B20_RT by rob tillaart
+#include <DS3231.h>   //DS3231 by andrew wickert
 #include <Wire.h>
 
-#define ONE_WIRE_BUS 2
+#define ONE_WIRE_BUS 3
 
 //pin relay
-const int ExtracteurPin   = 3;
+const int ExtracteurPin   = 2;
 const int Rouge1Pin       = 4;
 const int Rouge2Pin       = 5;
 const int Bleu1Pin        = 6;
@@ -28,6 +28,13 @@ const int inter9  = 30;
 const int inter10 = 31;
 const int inter11 = 32;
 
+//Variable lumiere
+  int newDay = 1; // Variable pour savoir si nouveau jour.
+  int HAFlo;  //heure allumage floraison en minute (9H45 ou 10H15)
+  int HEFlo;  //heure extinction floraison en minute (HaFlo +12H +/-15min)
+  int HACro;  //heure allumage croissance en minute (4H45 ou 5H15)
+  int HECro;  //heure extinction croissance en minute (HaFlo +18H +/-15min)
+
 OneWire oneWire(ONE_WIRE_BUS);
 DS18B20 sensor(&oneWire);
 DS3231 Clock;
@@ -69,6 +76,7 @@ void setup() {
   Wire.begin();
   sensor.begin();
   sensor.setResolution(12);
+  delay(1000);
 }
 
 
@@ -79,15 +87,20 @@ void loop() {
   * *********************************************************************
   */
   //temperature
+  Serial.println("salut1");
   sensor.requestTemperatures();
+  Serial.println("salut2");
   while (!sensor.isConversionComplete());
+  Serial.println("salut3");
   float temp = sensor.getTempC();
+  Serial.println(temp);
 
   //heure
   bool h24, am;
   int heure = Clock.getHour(h24, am );
   int minu = Clock.getMinute();
   int HMin = heure * 60 + minu; // heure en minute
+  Serial.println(HMin);
 
   //Hydrometrie
 
@@ -95,18 +108,21 @@ void loop() {
                           Gestion de la lumiere
    * *********************************************************************
   */
-  int newDay = 1; // Variable pour savoir si nouveau jour.
-  int HAFlo;  //heure allumage floraison en minute (9H45 ou 10H15)
-  int HEFlo;  //heure extinction floraison en minute (HaFlo +12H +/-15min)
-  int HACro;  //heure allumage croissance en minute (4H45 ou 5H15)
-  int HECro;  //heure extinction croissance en minute (HaFlo +18H +/-15min)
 
-  if (newDay) {
+
+  if (newDay==1) {
     newDay = 0;
+    Serial.println("newDay");
+    Serial.println(HMin);
     HAFlo = random (585, 615);
+    Serial.println(HAFlo);
     HEFlo = HAFlo + 705 + random(30);
+    Serial.println(HEFlo);
     HACro = random (285, 315);
+    Serial.println(HACro);
     HECro = HACro + 1065 + random(30);
+    Serial.println(HECro);
+    Serial.println("fin newDay");
   }
 
   if (HMin == 0)
@@ -115,13 +131,15 @@ void loop() {
   if (HMin >= HAFlo & HMin < HEFlo) {
     digitalWrite(Rouge1Pin, LOW);
     digitalWrite(Rouge2Pin, LOW);
+    Serial.println("Alum Flo");
   }
   else {
     digitalWrite(Rouge1Pin, HIGH);
     digitalWrite(Rouge2Pin, HIGH);
+    Serial.println("Ext Flo");
   }
 
-  if (HMin >= HAFlo & HMin < HEFlo) {
+  if (HMin >= HACro & HMin < HECro) {
     digitalWrite(Bleu1Pin, LOW);
     digitalWrite(Bleu2Pin, LOW);
     digitalWrite(Bleu3Pin, LOW);
@@ -143,5 +161,5 @@ void loop() {
     digitalWrite(ExtracteurPin, HIGH);
 
 
-  delay(1000);
+  delay(10000);
 }