153 lines
4.7 KiB
C++
153 lines
4.7 KiB
C++
/**
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* The MySensors Arduino library handles the wireless radio link and protocol
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* between your home built sensors/actuators and HA controller of choice.
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* The sensors forms a self healing radio network with optional repeaters. Each
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* repeater and gateway builds a routing tables in EEPROM which keeps track of the
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* network topology allowing messages to be routed to nodes.
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*
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* Created by Henrik Ekblad <henrik.ekblad@mysensors.org>
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* Copyright (C) 2013-2015 Sensnology AB
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* Full contributor list: https://github.com/mysensors/Arduino/graphs/contributors
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*
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* Documentation: http://www.mysensors.org
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* Support Forum: http://forum.mysensors.org
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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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* version 2 as published by the Free Software Foundation.
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*
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*******************************
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*
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* REVISION HISTORY
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* Version 1.0: Henrik EKblad
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* Version 1.1 - 2016-07-20: Converted to MySensors v2.0 and added various improvements - Torben Woltjen (mozzbozz)
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*
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* DESCRIPTION
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* This sketch provides an example of how to implement a humidity/temperature
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* sensor using a DHT11/DHT-22.
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*
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* For more information, please visit:
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* http://www.mysensors.org/build/humidity
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*
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*/
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// Enable debug prints
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#define MY_DEBUG
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// Enable and select radio type attached
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#define MY_RADIO_NRF24
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//#define MY_RADIO_RFM69
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//#define MY_RS485
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#include <SPI.h>
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#include <MySensors.h>
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#include <DHT.h>
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// Set this to the pin you connected the DHT's data pin to
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#define DHT_DATA_PIN 3
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// Set this offset if the sensor has a permanent small offset to the real temperatures
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#define SENSOR_TEMP_OFFSET 0
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// Sleep time between sensor updates (in milliseconds)
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// Must be >1000ms for DHT22 and >2000ms for DHT11
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static const uint64_t UPDATE_INTERVAL = 60000;
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// Force sending an update of the temperature after n sensor reads, so a controller showing the
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// timestamp of the last update doesn't show something like 3 hours in the unlikely case, that
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// the value didn't change since;
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// i.e. the sensor would force sending an update every UPDATE_INTERVAL*FORCE_UPDATE_N_READS [ms]
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static const uint8_t FORCE_UPDATE_N_READS = 10;
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#define CHILD_ID_HUM 0
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#define CHILD_ID_TEMP 1
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float lastTemp;
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float lastHum;
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uint8_t nNoUpdatesTemp;
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uint8_t nNoUpdatesHum;
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bool metric = true;
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MyMessage msgHum(CHILD_ID_HUM, V_HUM);
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MyMessage msgTemp(CHILD_ID_TEMP, V_TEMP);
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DHT dht;
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void presentation()
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{
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// Send the sketch version information to the gateway
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sendSketchInfo("TemperatureAndHumidity", "1.1");
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// Register all sensors to gw (they will be created as child devices)
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present(CHILD_ID_HUM, S_HUM);
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present(CHILD_ID_TEMP, S_TEMP);
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metric = getConfig().isMetric;
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}
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void setup()
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{
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dht.setup(DHT_DATA_PIN); // set data pin of DHT sensor
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if (UPDATE_INTERVAL <= dht.getMinimumSamplingPeriod()) {
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Serial.println("Warning: UPDATE_INTERVAL is smaller than supported by the sensor!");
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}
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// Sleep for the time of the minimum sampling period to give the sensor time to power up
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// (otherwise, timeout errors might occure for the first reading)
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sleep(dht.getMinimumSamplingPeriod());
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}
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void loop()
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{
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// Force reading sensor, so it works also after sleep()
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dht.readSensor(true);
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// Get temperature from DHT library
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float temperature = dht.getTemperature();
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if (isnan(temperature)) {
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Serial.println("Failed reading temperature from DHT!");
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} else if (temperature != lastTemp || nNoUpdatesTemp == FORCE_UPDATE_N_READS) {
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// Only send temperature if it changed since the last measurement or if we didn't send an update for n times
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lastTemp = temperature;
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if (!metric) {
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temperature = dht.toFahrenheit(temperature);
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}
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// Reset no updates counter
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nNoUpdatesTemp = 0;
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temperature += SENSOR_TEMP_OFFSET;
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send(msgTemp.set(temperature, 1));
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#ifdef MY_DEBUG
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Serial.print("T: ");
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Serial.println(temperature);
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#endif
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} else {
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// Increase no update counter if the temperature stayed the same
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nNoUpdatesTemp++;
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}
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// Get humidity from DHT library
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float humidity = dht.getHumidity();
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if (isnan(humidity)) {
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Serial.println("Failed reading humidity from DHT");
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} else if (humidity != lastHum || nNoUpdatesHum == FORCE_UPDATE_N_READS) {
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// Only send humidity if it changed since the last measurement or if we didn't send an update for n times
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lastHum = humidity;
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// Reset no updates counter
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nNoUpdatesHum = 0;
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send(msgHum.set(humidity, 1));
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#ifdef MY_DEBUG
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Serial.print("H: ");
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Serial.println(humidity);
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#endif
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} else {
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// Increase no update counter if the humidity stayed the same
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nNoUpdatesHum++;
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}
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// Sleep for a while to save energy
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sleep(UPDATE_INTERVAL);
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}
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