BOX.ino 8.7 KB

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  1. #include <OneWire.h>
  2. #include <DS18B20.h> //temp DS18B20_RT by rob tillaart
  3. #include <DS3231.h> //RTC DS3231 by andrew wickert
  4. #include <DHT.h> //Adafruit
  5. #include <Wire.h>
  6. /*****************************************************************
  7. Déclaration des Capteurs
  8. *****************************************************************/
  9. //relay Lumiere
  10. const int RougeHaut = 2;
  11. const int BleuHaut = 3;
  12. const int RougeBas = 4;
  13. const int BleuBas = 5;
  14. //relay Ventilation
  15. const int DehumPin = 6;
  16. const int Extracteur = 7;
  17. const int VentilHaut = 8;
  18. const int VentilBas = 9;
  19. //relay Arrosage
  20. const int Arro1 = 10;
  21. const int Arro2 = 11;
  22. const int Evacuation = 12;
  23. const int Melange = 13;
  24. //Capteur niveau eau
  25. const int NiveauEauRecup = 14;
  26. const int NiveauEauAqua = 15;
  27. //Capteur Temp
  28. #define ONE_WIRE_TEMP 16
  29. OneWire oneWireTemp(ONE_WIRE_TEMP);
  30. DS18B20 Temp(&oneWireTemp);
  31. //capteur Hum air
  32. #define DHTTYPE DHT22
  33. #define DHTPIN 17
  34. DHT dht(DHTPIN, DHTTYPE);
  35. //Capteur hum sol
  36. const int HumidSolHaut = 18;
  37. const int HumidSolBas = 19;
  38. //interupteur
  39. const int interType = 22;
  40. const int interLum = 24;
  41. const int interONExt = 26;
  42. const int interONVentil = 28;
  43. const int interOFFExt = 30;
  44. const int interONAro = 32;
  45. const int interONVid = 34;
  46. const int interOFFAro = 36;
  47. const int inter9 = 38;
  48. const int inter10 = 40;
  49. //RTC
  50. DS3231 Clock;
  51. /*****************************************************************
  52. Déclaration des Variables globals
  53. *****************************************************************/
  54. //Variable lumiere
  55. int newDay = 1; // Variable pour savoir si nouveau jour.
  56. int HA; //heure allumage en minute
  57. int HE; //heure extinction en minute (Ha +12Hou18H +/-15min)
  58. //Variable Extraction
  59. int tmpExtract = 0, humExtract;
  60. int extract;
  61. //Variabe Arrosage
  62. const int delaySecArro = 20;
  63. const int delaySecEvacuation = 30;
  64. int SolBas, SolHaut;
  65. int HeuArrosage;
  66. /***********************************************************************
  67. Setup
  68. **********************************************************************/
  69. void setup() {
  70. Serial.begin(9600);
  71. /***********************************************************************
  72. init des pins
  73. * *********************************************************************/
  74. //PIN Lumiere
  75. pinMode(RougeHaut, OUTPUT);
  76. pinMode(RougeBas, OUTPUT);
  77. pinMode(BleuHaut, OUTPUT);
  78. pinMode(BleuBas, OUTPUT);
  79. digitalWrite(RougeHaut, HIGH);
  80. digitalWrite(RougeBas, HIGH);
  81. digitalWrite(BleuHaut, HIGH);
  82. digitalWrite(BleuBas, HIGH);
  83. //Pin ventilation
  84. pinMode(DehumPin, OUTPUT);
  85. pinMode(Extracteur, OUTPUT);
  86. pinMode(VentilHaut, OUTPUT);
  87. pinMode(VentilBas, OUTPUT);
  88. digitalWrite(DehumPin, HIGH);
  89. digitalWrite(Extracteur, HIGH);
  90. digitalWrite(VentilHaut, HIGH);
  91. digitalWrite(VentilBas, HIGH);
  92. //Pin Arrosage
  93. pinMode(Arro1, OUTPUT);
  94. pinMode(Arro2, OUTPUT);
  95. pinMode(Evacuation, OUTPUT);
  96. //pinMode(, OUTPUT);
  97. digitalWrite(Arro1, HIGH);
  98. digitalWrite(Arro2, HIGH);
  99. digitalWrite(Evacuation, HIGH);
  100. //interupteur
  101. pinMode(interType, INPUT);
  102. pinMode(interLum, INPUT);
  103. pinMode(interONExt, INPUT);
  104. pinMode(interONVentil, INPUT);
  105. pinMode(interOFFExt, INPUT);
  106. pinMode(interONAro, INPUT);
  107. pinMode(interONVid, INPUT);
  108. pinMode(interOFFAro, INPUT);
  109. pinMode(inter9, INPUT);
  110. pinMode(inter10, INPUT);
  111. /***********************************************************************
  112. init des capteurs
  113. * *********************************************************************/
  114. //Capteur Temp
  115. Temp.begin();
  116. Temp.setResolution(12);
  117. //capteur Hum air
  118. dht.begin();
  119. //Capteur hum sol
  120. pinMode(HumidSolBas, INPUT);
  121. pinMode(HumidSolHaut, INPUT);
  122. //RTC
  123. Wire.begin();
  124. }
  125. void loop() {
  126. /***********************************************************************
  127. Gestion des capteurs
  128. * **********************************************************************/
  129. //Capteur Temp
  130. Temp.requestTemperatures();
  131. while (!Temp.isConversionComplete());
  132. float Temper = Temp.getTempC();
  133. //capteur Hum air
  134. float hum = dht.readHumidity();
  135. //Capteur hum sol
  136. SolBas = !digitalRead(HumidSolBas);
  137. SolHaut = !digitalRead(HumidSolHaut);
  138. /*
  139. Serial.println(digitalRead(interType));
  140. Serial.println(digitalRead(interLum));
  141. Serial.println(digitalRead(interONExt));
  142. Serial.println(digitalRead(interONVentil));
  143. Serial.println(digitalRead(interOFFExt));
  144. Serial.println(digitalRead(interONAro));
  145. Serial.println(digitalRead(interONVid));
  146. Serial.println(digitalRead(interOFFAro));
  147. Serial.println(digitalRead(inter9));
  148. Serial.println(digitalRead(inter10));*/
  149. //RTC
  150. bool h24, am;
  151. int heure = Clock.getHour(h24, am );
  152. int minu = Clock.getMinute();
  153. int HMin = heure * 60 + minu; // heure en minute
  154. Serial.print("H:");
  155. Serial.print(HMin / 60);
  156. Serial.print(":");
  157. Serial.print(HMin % 60);
  158. Serial.print(" T:");
  159. Serial.print(Temper);
  160. Serial.print(" Hum:");
  161. Serial.println(hum);
  162. /***********************************************************************
  163. Gestion de la lumiere
  164. * *********************************************************************
  165. */
  166. if (newDay == 1) {
  167. newDay = 0;
  168. if (digitalRead(interType)) { //SI intertype ==1 alors Flo
  169. Serial.println("Floraison");
  170. HA = random (585, 615);
  171. HE = HA + 705 + random(15);
  172. }
  173. else {
  174. Serial.println("Croissance");
  175. HA = random (285, 315);
  176. HE = HA + 1065 + random(15);
  177. }
  178. }
  179. if (HMin == 0)
  180. newDay = 1;
  181. if ((HMin >= HA & HMin < HE) & digitalRead(interLum)) {
  182. Serial.print("Allumage ");
  183. digitalWrite(BleuBas, LOW);
  184. digitalWrite(BleuHaut, LOW);
  185. if (digitalRead(interType)) { //SI flo
  186. Serial.println("Flo");
  187. digitalWrite(RougeHaut, LOW);
  188. digitalWrite(RougeBas, LOW);
  189. }
  190. else {
  191. Serial.println("Cro");
  192. digitalWrite(RougeHaut, HIGH);
  193. digitalWrite(RougeBas, HIGH);
  194. }
  195. }
  196. else {
  197. Serial.println("Extinxtion");
  198. digitalWrite(RougeHaut, HIGH);
  199. digitalWrite(RougeBas, HIGH);
  200. digitalWrite(BleuBas, HIGH);
  201. digitalWrite(BleuHaut, HIGH);
  202. }
  203. /***********************************************************************
  204. Gestion de l'extraction
  205. * *********************************************************************/
  206. if (Temper >= 26) {
  207. Serial.println("tmp >= 26 °C");
  208. tmpExtract = 1 ;
  209. }
  210. if (Temper < 25) {
  211. Serial.println("tmp <25 °C");
  212. tmpExtract = 0;
  213. }
  214. /*if (digitalRead(interType) == 0 & hum > 75) {
  215. Serial.println("interType est en croi et plus de 75% d'hum");
  216. humExtract = 1;
  217. }
  218. else if ( digitalRead(interType) == 1 & hum > 60) {
  219. Serial.println("interType est en flo et plus de 60 % d'hum");
  220. humExtract = 1;
  221. }
  222. else if ( digitalRead(interType) == 0 & hum < 73) {
  223. humExtract = 0;
  224. }
  225. else if ( hum < 58) {
  226. humExtract = 0;
  227. }*/
  228. if ((minu == 0 | minu == 1 | tmpExtract | humExtract | digitalRead(interONExt)) & digitalRead(interOFFExt)) {
  229. Serial.println("Extracteur ON");
  230. digitalWrite(Extracteur, LOW);
  231. }
  232. else {
  233. Serial.println("Extracteur OFF");
  234. digitalWrite(Extracteur, HIGH);
  235. }
  236. /***********************************************************************
  237. Gestion de la ventilation
  238. * *********************************************************************/
  239. if (minu >= 55 | digitalRead(interONVentil) | tmpExtract | humExtract ) {
  240. Serial.println("Ventilation ON");
  241. digitalWrite(VentilHaut, LOW);
  242. digitalWrite(VentilBas, LOW);
  243. }
  244. else {
  245. Serial.println("Ventilation OFF");
  246. digitalWrite(VentilHaut, HIGH);
  247. digitalWrite(VentilBas, HIGH);
  248. }
  249. /***********************************************************************
  250. Gestion de l'arrosage
  251. * *********************************************************************/
  252. /* if ((SolBas | SolHaut) & digitalRead(interOFFAro) == 0 & digitalRead(interONAro) == 0) {
  253. Serial.println("Arrosage");
  254. digitalWrite(Arro1, LOW);
  255. digitalWrite(Arro2, LOW);
  256. delay(delaySecArro * 1000 );
  257. digitalWrite(Arro1, HIGH);
  258. digitalWrite(Arro2, HIGH);
  259. HeuArrosage = HMin;
  260. }
  261. if (HeuArrosage + 10 == HMin & digitalRead(interOFFAro) == 0 & digitalRead(interONVid) == 0) {
  262. Serial.println("Evacuation");
  263. digitalWrite(Evacuation, LOW);
  264. //delay(delaySecEvacuation * 1000 );
  265. digitalWrite(Evacuation, HIGH);
  266. }
  267. if (digitalRead(interONVid)) {
  268. Serial.println("Evacuation manuel");
  269. digitalWrite(Evacuation, LOW);
  270. }
  271. else
  272. digitalWrite(Evacuation, HIGH);
  273. if (digitalRead(interONAro)) {
  274. Serial.println("Arrosage manuel");
  275. digitalWrite(Arro1, LOW);
  276. digitalWrite(Arro2, LOW);
  277. }
  278. else {
  279. digitalWrite(Arro1, HIGH);
  280. digitalWrite(Arro2, HIGH);
  281. }*/
  282. Serial.println("");
  283. Serial.println("");
  284. delay(500);
  285. }