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https://github.com/michivonah/bbzw-horizon.git
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Update firmware.ino
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parent
504235bbaf
commit
fb6d9440fe
1 changed files with 58 additions and 48 deletions
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@ -6,15 +6,15 @@
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#include <NTPClient.h>
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// WLAN-Zugangsdaten
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#define SSID ""
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#define PASSWORT ""
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#define SSID "INF-LAB"
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#define PASSWORT "INF-LAB@BBZW-2024"
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// API-Konfiguration
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#define API_HOST ""
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#define API_HOST "172.18.14.32"
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#define API_PORT 8080
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#define API_ENDPOINT "/sensors/push-data"
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#define CLIENT_ID ""
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#define API_TOKEN ""
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#define CLIENT_ID "1.54"
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#define API_TOKEN "test2"
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// Sensor & Netzwerk
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Bsec iaqSensor;
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@ -29,7 +29,20 @@ NTPClient timeClient(ntpUDP, "pool.ntp.org", utcOffsetInSeconds);
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// Sendeintervall
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unsigned long sendInterval = 30000;
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// Werte begrenzen (nur für sensible Werte wie Temp, Feuchte, VOC, Gas)
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// Fehlercode per LED ausgeben (Morse-artig)
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void errorBlink(int code) {
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while (true) {
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for (int i = 0; i < code; i++) {
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digitalWrite(LED_BUILTIN, HIGH);
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delay(150);
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digitalWrite(LED_BUILTIN, LOW);
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delay(150);
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}
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delay(1000); // Pause zwischen Zyklen
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}
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}
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// Werte begrenzen
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float clampValue(float val) {
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if (val >= 1000.0) return 999.999;
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if (val <= -1000.0) return -999.999;
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@ -81,24 +94,40 @@ String getTimestamp() {
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return String(buf);
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}
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void setup() {
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Serial.begin(115200);
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while (!Serial);
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// API-Health-Check
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bool checkApiHealth() {
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HttpClient healthClient = HttpClient(wifi, API_HOST, API_PORT);
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healthClient.get("/health");
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int statusCode = healthClient.responseStatusCode();
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healthClient.stop();
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return statusCode == 200;
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}
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void setup() {
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pinMode(LED_BUILTIN, OUTPUT);
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digitalWrite(LED_BUILTIN, LOW);
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// WLAN verbinden mit Timeout
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WiFi.begin(SSID, PASSWORT);
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Serial.print("Verbinde mit WLAN...");
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while (WiFi.status() != WL_CONNECTED) {
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unsigned long startAttemptTime = millis();
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while (WiFi.status() != WL_CONNECTED && millis() - startAttemptTime < 20000) {
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delay(500);
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Serial.print(".");
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}
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Serial.println("\nWLAN verbunden!");
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if (WiFi.status() != WL_CONNECTED) {
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errorBlink(1); // Fehlercode 1: WLAN-Fehler
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}
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// API-Healthcheck
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if (!checkApiHealth()) {
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errorBlink(4); // Fehlercode 4: API nicht erreichbar
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}
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Wire.begin();
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// Automatische Adresserkennung
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bool sensorFound = false;
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byte sensorAddress;
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// Automatische Sensor-Erkennung
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byte sensorAddress = 0;
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byte possibleAddresses[] = {0x76, 0x77};
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bool sensorFound = false;
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for (int i = 0; i < 2; i++) {
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byte addr = possibleAddresses[i];
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Wire.beginTransmission(addr);
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@ -110,18 +139,12 @@ void setup() {
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}
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if (!sensorFound) {
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Serial.println("Kein BME680 gefunden!");
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while (1);
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errorBlink(2); // Fehlercode 2: Sensor nicht gefunden
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}
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Serial.print("BME680 gefunden bei I2C-Adresse 0x");
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Serial.println(sensorAddress, HEX);
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iaqSensor.begin(sensorAddress, Wire);
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if (iaqSensor.bsecStatus != BSEC_OK) {
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Serial.print("BSEC Status Fehler: ");
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Serial.println(iaqSensor.bsecStatus);
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while (1);
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errorBlink(3); // Fehlercode 3: Sensor-Init fehlgeschlagen
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}
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bsec_virtual_sensor_t sensorList[] = {
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@ -137,42 +160,36 @@ void setup() {
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while (!timeClient.update()) {
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timeClient.forceUpdate();
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}
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digitalWrite(LED_BUILTIN, HIGH); // Alles bereit – LED dauerhaft an
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}
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void loop() {
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if (iaqSensor.run()) {
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// Kurzes LED-Blink zur Messanzeige
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digitalWrite(LED_BUILTIN, LOW);
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delay(100);
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digitalWrite(LED_BUILTIN, HIGH);
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float temperature = clampValue(iaqSensor.temperature);
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float humidity = clampValue(iaqSensor.humidity);
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float voc = clampValue(iaqSensor.iaq);
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float gas = clampValue(iaqSensor.gasResistance / 1000.0);
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float pressure = iaqSensor.pressure / 100.0; // <-- Kein Clamping hier!
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float pressure = iaqSensor.pressure / 100.0;
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String timestamp = getTimestamp();
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// Debug-Ausgabe
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Serial.println("Messwerte:");
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Serial.println("Temp: " + String(temperature));
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Serial.println("Feuchte: " + String(humidity));
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Serial.println("Druck: " + String(pressure));
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Serial.println("VOC/IAQ: " + String(voc));
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Serial.println("Gas: " + String(gas));
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Serial.println("Zeit: " + timestamp);
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// JSON erstellen
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String payload = "{";
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payload += "\"timestamp\": \"" + timestamp + "\",";
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payload += "\"temperature\": " + String(temperature, 3) + ",";
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payload += "\"humidity\": " + String(humidity, 3) + ",";
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payload += "\"pressure\": " + String(pressure, 3) + ","; // unverfälscht
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payload += "\"pressure\": " + String(pressure, 3) + ",";
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payload += "\"voc\": " + String(voc, 3) + ",";
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payload += "\"gas\": " + String(gas, 3);
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payload += "}";
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String fullPath = String(API_ENDPOINT) + "?client=" + CLIENT_ID;
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Serial.println("Sende an API:");
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Serial.println(payload);
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client.beginRequest();
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client.post(fullPath);
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client.sendHeader("Content-Type", "application/json");
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@ -182,15 +199,8 @@ void loop() {
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client.print(payload);
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client.endRequest();
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int statusCode = client.responseStatusCode();
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String response = client.responseBody();
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Serial.print("Status: ");
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Serial.println(statusCode);
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Serial.print("Antwort: ");
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Serial.println(response);
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} else {
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Serial.println("Noch keine gültigen Daten von BSEC.");
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client.responseStatusCode();
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client.responseBody();
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}
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delay(sendInterval);
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