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215
Radio433_2_BMP_Narco/Radio433_2_BMP_Narco.ino
Executable file
215
Radio433_2_BMP_Narco/Radio433_2_BMP_Narco.ino
Executable file
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/*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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#include <Wire.h>
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#include <Adafruit_BMP085.h>
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#include <Narcoleptic.h> // Economie d'énergie
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#include <RCSwitch.h>
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const byte TRANSMITTER_PIN = 9;
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// Init RCSwitch
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RCSwitch mySwitch = RCSwitch();
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//
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float temperature = 0.0;
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float pressure = 0.0;
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float pression = 0.0;
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float presiune = 0.0;
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int sensorValue = 0;
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int sensorValue2 = 0;
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int sensorValue3 = 0;
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int distance = 0;
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const int TrigPin = 2;
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const int EchoPin = 3;
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// ################# Barometre ####
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Adafruit_BMP085 bmp;
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// #####################
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const unsigned long TIME = 512;
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const unsigned long TWOTIME = TIME*2;
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/******************************************************************/
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void setup() {
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// Serial.begin(9600);
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mySwitch.enableTransmit(TRANSMITTER_PIN);
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pinMode(TrigPin, OUTPUT);
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pinMode(EchoPin, INPUT);
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// BMP
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if (!bmp.begin()) {
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// Serial.println("nu exita senzor compatibil BMP085 sau BMP180");
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while (1) {}
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}
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}
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void loop()
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{
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// en premier pour la température
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barometre();
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readSensors();
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readPresence();
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// printAll();
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sendAll();
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//Narcoleptic.delay(45000); // During this time power consumption is minimised(5000);
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delay(5000);
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}
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void sendAll() {
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sendValues(1111, temperature * 100);
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sendValues(2222, (int) (pression * 10));
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sendValues(3333, (int) (pressure * 10));
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sendValues(4444, sensorValue);
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sendValues(5555, sensorValue2);
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sendValues(6666, (int) (sensorValue3 / 10.24));
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sendValues(7777, distance);
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// mySwitch.send("TEST");
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}
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void barometre() {
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/* See Example: TypeA_WithDIPSwitches */
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// mySwitch.switchOn("00001", "10000");
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// delay(1000);
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temperature = bmp.readTemperature();
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pressure= bmp.readPressure() / 100.0;
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pression = pressure / 101.325;
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pression = pression * 0.760 * 100;
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// http://en.wikipedia.org/wiki/Atmospheric_pressure#Mean_sea_level_pressure
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// Serial.print("Presiure la nivelul marii (calculata) = ");
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presiune = bmp.readSealevelPressure() / 101.325;
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presiune = presiune * 0.760;
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}
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void printAll() {
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Serial.print("Temperature=");
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Serial.print(temperature);
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//Serial.print(" *C");
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Serial.print(" Pression=");
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Serial.print(pressure);
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Serial.print(" Mercure=");
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Serial.print(pression);
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//Serial.print(" mmHg");
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// Calculate altitude assuming 'standard' barometric
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// pressure of 1013.25 millibar = 101325 Pascal
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Serial.print(" Altitude=");
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Serial.print(bmp.readAltitude());
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// Serial.print(" m");
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//Serial.print(" Pression au niveau de la mer (calculee) = ");
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Serial.print(" Mer=");
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Serial.print(bmp.readSealevelPressure());
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//Serial.print(" Pa / ");
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Serial.print(" MerMercure=");
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Serial.print(presiune);
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Serial.println(" mmHg");
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Serial.print("fumee=");
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Serial.print(sensorValue);
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Serial.print(" gaz=");
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Serial.print(sensorValue2);
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Serial.print(" photo=");
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Serial.println((int) (sensorValue3 / 10.24));
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// you can get a more precise measurement of altitude
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// if you know the current sea level pressure which will
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// vary with weather and such. If it is 1015 millibars
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// that is equal to 101500 Pascals.
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// Serial.print("Altitude reelle = ");
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// Serial.print(bmp.readAltitude(101500));
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// Serial.println(" m");
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//
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// Serial.println();
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}
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void readPresence() {
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digitalWrite(TrigPin, LOW); //Low high and low level take a short time to TrigPin pulse
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delayMicroseconds(2);
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digitalWrite(TrigPin, HIGH);
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delayMicroseconds(10);
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digitalWrite(TrigPin, LOW);
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float cm = pulseIn(EchoPin, HIGH) / 58.0; //Echo time conversion into cm
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cm = (int(cm * 100.0)) / 100.0; //Keep two decimal places
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distance = cm * 100;
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// Serial.print(cm);
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// Serial.print("cm");
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// Serial.println();
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}
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void readSensors() {
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// ##########################################"
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// Analogic read
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// ------------------------------------------
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sensorValue = analogRead(A0);
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sensorValue2 = analogRead(A1);
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sensorValue3 = analogRead(A2);
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// int sensorValue4 = digitalRead(10);
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//vol = (float)sensorValue / 1024 * 5.0;
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// ##########################################
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}
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void sendValues(int id, int value) {
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// char buf[7];
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//char buf2[7];
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/* See Example: TypeA_WithDIPSwitches */
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// itoa(id, buf, 10);
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// itoa(value, buf2, 10);
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// Serial.print(value);
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// Serial.println(buf2);
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mySwitch.send(id, 32);
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delay(500);
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mySwitch.send(value, 32);
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// mySwitch.switchOn(buf,buf2);
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delay(500);
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// mySwitch.switchOn(id, value);
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// delay(1000);
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}
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