added temperature and altitude estimation from atmospheric pressure
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fd1143d732
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532cca230b
@ -51,7 +51,7 @@ void DataLogger::open()
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file = SPIFFS.open(fileName, FILE_WRITE);
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if(!isOpen()) Serial.println("DataLogger: failed to open file");
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if(!file.print("time,speed,battery voltage,battery output current\n")) Serial.println("DataLogger: failed to write to file");
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if(!file.print("time,speed,battery voltage,battery output current,temperature,altitude\n")) Serial.println("DataLogger: failed to write to file");
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}
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void DataLogger::close()
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@ -69,7 +69,7 @@ void DataLogger::log(unsigned long timeMilliseconds, const Entry& entry)
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if((lastEntry.isDifferent(entry) || currentTime >= lastLogTime + 20.0f) && currentTime >= lastLogTime + 0.2f)
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{
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char line[128];
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sprintf(line, "%.3f,%.3f,%.3f,%.3f\n", currentTime, entry.speed, entry.batteryVoltage, entry.batteryOutputCurrent);
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sprintf(line, "%.3f,%.3f,%.3f,%.3f,%.1f,%.1f\n", currentTime, entry.speed, entry.batteryVoltage, entry.batteryOutputCurrent, entry.temperature, entry.altitude);
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file.print(line);
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lastEntry = entry;
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@ -9,6 +9,8 @@ public:
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float batteryVoltage = 0.0f; // V
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float batteryOutputCurrent = 0.0f; // A
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float speed = 0.0f; // m/s
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float temperature = 0.0f; // in °C
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float altitude = 0.0f; // in m
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bool isDifferent(const Entry& other)
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{
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@ -16,7 +18,9 @@ public:
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return
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std::abs(batteryVoltage - other.batteryVoltage) > 0.1f * scale
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|| std::abs(batteryOutputCurrent - other.batteryOutputCurrent) > 0.1f * scale
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|| std::abs(speed - other.speed) > 0.1f;
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|| std::abs(speed - other.speed) > 0.1f
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|| std::abs(temperature - other.temperature) > 0.5f * scale
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|| std::abs(altitude - other.altitude) > 0.5f * scale;
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}
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};
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@ -6,6 +6,8 @@
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#include <SPIFFS.h>
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#include <ESPAsyncWebServer.h>
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#include <Dps310.h>
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#include "ADC.h"
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#include "OTA.h"
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#include "DataLogger.h"
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@ -13,14 +15,19 @@
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#include "wifi-credentials.h"
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#include <limits>
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#define DUMMY_DATA 0
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AsyncWebServer server(80);
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ADC currentSensor(36);
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ADC batterySensor(39);
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Dps310 pressureSensor = Dps310();
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const int8_t speedSensorPin = 13;
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const int8_t debugLedPin = 2;
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const int8_t I2C_SDA = 12;
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const int8_t I2C_SCL = 15;
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const float wheelDiameterInches = 20;
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const int numImpulsesPerTurn = 2;
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@ -28,6 +35,8 @@ const float wheelCircumferenceMeters = wheelDiameterInches * 0.0254f * 3.1415f /
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uint16_t batteryVoltage = 0; // in mV
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uint16_t batteryOutputCurrent = 0; // in mV
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int16_t temperature = 0; // in tenth of °C
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int32_t altitude = 0; // in mm above sea level (can be negative if below sea level, or depending on atmospheric conditions)
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WiFiMulti wifiMulti;
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wl_status_t wifi_STA_status = WL_NO_SHIELD;
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@ -163,10 +172,16 @@ void setup()
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OTA.begin();
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Wire.begin(I2C_SDA, I2C_SCL);
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pressureSensor.begin(Wire);
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server.on("/api/status", HTTP_GET, [](AsyncWebServerRequest *request){
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int v = batteryVoltage;
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int c = batteryOutputCurrent;
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int s = (int)(getSpeed() * 1000.0f + 0.5f);
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int t = temperature;
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int alt = altitude;
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const char* logFileName = DataLogger::get().currentLogFileName();
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if(String(logFileName).startsWith("/log/")) logFileName += 5;
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@ -175,7 +190,7 @@ void setup()
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int usedSize = (int)(SPIFFS.usedBytes() / 1000);
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char json[128];
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sprintf(json, "{\"v\":%d,\"c\":%d,\"s\":%d,\"log\":\"%s\",\"tot\":%d,\"used\":%d}", v, c, s, logFileName, totalSize, usedSize);
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sprintf(json, "{\"v\":%d,\"c\":%d,\"s\":%d,\"t\":%d,\"alt\":%d,\"log\":\"%s\",\"tot\":%d,\"used\":%d}", v, c, s, t, alt, logFileName, totalSize, usedSize);
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request->send(200, "text/json", json);
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});
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@ -295,11 +310,73 @@ void handle_ADC_measures()
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#endif
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}
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void handle_pressure_measure()
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{
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const uint8_t oversampling = 7;
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int16_t ret;
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float temp; // in Celcius degrees
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ret = pressureSensor.measureTempOnce(temp, oversampling);
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if(ret != 0)
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{
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Serial.print("Failed to measure temperature: "); Serial.println(ret);
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return;
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}
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temperature = (int16_t)(temp * 10.0f + 0.5f);
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float pressure; // in Pa
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pressureSensor.measurePressureOnce(pressure, oversampling);
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if(ret != 0)
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{
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Serial.print("Failed to measure pressure: "); Serial.println(ret);
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return;
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}
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struct PressureToAltitude
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{
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float pressure; // in Pa
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float altitude; // in meters above sea level
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};
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const PressureToAltitude altitudeTable[] =
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{
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{ 101325.0f, 0.0f },
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{ 100000.0f, 111.0f },
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{ 95000.0f, 540.0f },
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{ 90000.0f, 989.0f },
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{ 85000.0f, 1457.0f },
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{ 80000.0f, 1949.0f },
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{ 75000.0f, 2466.0f },
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{ 70000.0f, 3012.0f },
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{ 65000.0f, 3591.0f },
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{ 60000.0f, 4206.0f },
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{ 55000.0f, 4865.0f },
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};
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const int8_t altitudeTableNumValues = sizeof(altitudeTable)/sizeof(altitudeTable[0]);
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float alt = -std::numeric_limits<float>::max();
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for(int8_t i = 0; i < altitudeTableNumValues - 1; ++i)
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{
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if(i == altitudeTableNumValues - 2 || pressure >= altitudeTable[i+1].pressure)
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{
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const auto& p = altitudeTable[i];
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const auto& n = altitudeTable[i+1];
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alt = (pressure - p.pressure) / (n.pressure - p.pressure) * (n.altitude - p.altitude) + p.altitude;
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break;
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}
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}
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altitude = (int32_t)(alt * 1000.0f + 0.5f);
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/*Serial.print("temperature="); Serial.print(temp); Serial.print("°C");
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Serial.print(" pressure="); Serial.print(pressure); Serial.print("Pa");
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Serial.print(" altitude="); Serial.print(altitude); Serial.println("mm");*/
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}
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void loop()
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{
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OTA.handle();
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handle_wifi_connection();
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handle_ADC_measures();
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handle_pressure_measure(); // also measures temperature
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unsigned long now = millis();
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static DataLogger::Entry entry;
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@ -333,5 +410,5 @@ void loop()
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}
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DataLogger::get().log(now, entry);
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delay(10);
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delay(DataLogger::get().isOpen() ? 10 : 1000);
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}
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