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Updated examples to MQ-4
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@ -31,9 +31,6 @@
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//Declare Sensor
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MQUnifiedsensor MQ2(placa, Voltage_Resolution, ADC_Bit_Resolution, pin, type);
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//Variables
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float CH4, LPG, CO, Alcohol, Hexane, Benzine;
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void setup() {
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//Init the serial port communication - to debug the library
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Serial.begin(9600); //Init serial port
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@ -31,9 +31,6 @@
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//Declare Sensor
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MQUnifiedsensor MQ3(placa, Voltage_Resolution, ADC_Bit_Resolution, pin, type);
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//Variables
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float CH4, LPG, CO, Alcohol, Hexane, Benzine;
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void setup() {
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//Init the serial port communication - to debug the library
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Serial.begin(9600); //Init serial port
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@ -41,6 +38,16 @@ void setup() {
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//Set math model to calculate the PPM concentration and the value of constants
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MQ3.setRegressionMethod("Exponential"); //_PPM = a*ratio^b
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MQ3.setA(4.8387); MQ3.setB(-2.68); // Configurate the ecuation values to get Benzene concentration
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/*
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Exponential regression:
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Gas | a | b
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LPG | 44771 | -3.245
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CH4 | 2*10^31| 19.01
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CO | 521853 | -3.821
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Alcohol| 0.3934 | -1.504
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Benzene| 4.8387 | -2.68
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Hexane | 7585.3 | -2.849
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*/
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// Calibration setup
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MQ3.setR0(3.86018237);
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@ -9,6 +9,10 @@
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modified 23 May 2019
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by Miguel Califa
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Updated library usage
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modified 26 March 2020
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by Miguel Califa
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This example code is in the public domain.
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*/
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@ -17,65 +21,57 @@
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#include <MQUnifiedsensor.h>
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//Definitions
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#define placa "Arduino UNO"
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#define Voltage_Resolution 5
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#define pin A0 //Analog input 0 of your arduino
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#define type 4 //MQ4
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#define type "MQ-4" //MQ4
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#define ADC_Bit_Resolution 10 // For arduino UNO/MEGA/NANO
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//#define calibration_button 13 //Pin to calibrate your sensor
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//Declare Sensor
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MQUnifiedsensor MQ4(pin, type);
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//Variables
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float CH4, LPG, CO, Alcohol, smoke;
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MQUnifiedsensor MQ4(placa, Voltage_Resolution, ADC_Bit_Resolution, pin, type);
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void setup() {
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//Init the serial port communication - to debug the library
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Serial.begin(9600); //Init serial port
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//init the sensor
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/***************************** MQInicializar****************************************
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Input: pin, type
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Output:
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Remarks: This function create the sensor object.
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************************************************************************************/
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MQ4.inicializar();
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//pinMode(calibration_button, INPUT);
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//Set math model to calculate the PPM concentration and the value of constants
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MQ4.setRegressionMethod("Exponential"); //_PPM = a*ratio^b
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MQ4.setA(4.8387); MQ4.setB(-2.68); // Configurate the ecuation values to get Benzene concentration
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/*
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Exponential regression:
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Gas | a | b
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LPG | 3811.9 | -3.113
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CH4 | 1012.7 | -2.786
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CO | 200000000000000 | -19.05
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Alcohol| 60000000000 | -14.01
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smoke | 30000000 | -8.308
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*/
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// Calibration setup
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MQ4.setR0(3.86018237);
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/*
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//If the RL value is different from 10K please assign your RL value with the following method:
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MQ4.setRL(10);
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*/
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/***************************** MQ Init ********************************************/
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//Remarks: Configure the pin of arduino as input.
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/************************************************************************************/
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MQ4.init();
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/***************************** MQ Init ********************************************/
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//Input: setup flag, if this function are on setup will print the headers (Optional - Default value: False)
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//Output: print on serial port the information about sensor and sensor readings
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//Remarks: Configure the pin of arduino as input.
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/************************************************************************************/
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MQ4.serialDebug(true);
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}
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void loop() {
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MQ4.update(); // Update data, the arduino will be read the voltaje in the analog pin
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/*
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//Si el valor de RL es diferente a 10K por favor asigna tu valor de RL con el siguiente metodo:
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MQ4.setRL(10);
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*/
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/*
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//Rutina de calibracion - Uncomment if you need (setup too and header)
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if(calibration_button)
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{
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float R0 = MQ4.calibrate();
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MQ4.setR0(R0);
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}
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*/
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/***************************** MQReadSensor ****************************************
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Input: Gas - Serial print flag
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Output: Value in PPM
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Remarks: This function use readPPM to read the value in PPM the gas in the air.
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************************************************************************************/
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//Read the sensor and print in serial port
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//Lecture will be saved in lecture variable
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//float lecture = MQ4.readSensor("", true); // Return CH4 concentration
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// Options, uncomment where you need
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CH4 = MQ4.readSensor("CH4"); // Return CH4 concentration
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LPG = MQ4.readSensor("LPG"); // Return LPG concentration
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CO = MQ4.readSensor("CO"); // Return CO concentration
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Alcohol = MQ4.readSensor("Alcohol"); // Return Alcohol concentration
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smoke = MQ4.readSensor("smoke"); // Return smoke concentration
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Serial.println("***************************");
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Serial.println("Lectures for MQ-4");
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Serial.print("Volt: ");Serial.print(MQ4.getVoltage(false));Serial.println(" V");
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Serial.print("R0: ");Serial.print(MQ4.getR0());Serial.println(" Ohm");
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Serial.print("CH4: ");Serial.print(CH4,2);Serial.println(" ppm");
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Serial.print("LPG: ");Serial.print(LPG,2);Serial.println(" ppm");
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Serial.print("CO: ");Serial.print(CO,2);Serial.println(" ppm");
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Serial.print("Alcohol: ");Serial.print(Alcohol,2);Serial.println(" ppm");
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Serial.print("smoke: ");Serial.print(smoke,2);Serial.println(" ppm");
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Serial.println("***************************");
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MQ4.update(); // Update data, the arduino will be read the voltage on the analog pin
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MQ4.readSensor(); // Sensor will read PPM concentration using the model and a and b values setted before or in the setup
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MQ4.serialDebug(); // Will print the table on the serial port
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delay(500); //Sampling frequency
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}
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