#define BLYNK_TEMPLATE_ID "TMPL3iy8-F2kz"
#define BLYNK_TEMPLATE_NAME "ev vehicle"
#include <Wire.h>
#include <Adafruit_SSD1306.h>
#include <DHTesp.h>
#include <WiFi.h>
#include <BlynkSimpleEsp32.h>
char auth[] = "f7AveSqP9Kokcu_M5VX_BFLAiqZbvHfs";
char ssid[] = "Wokwi-GUEST";
char pass[] = "";
#define SCREEN_WIDTH 128
#define SCREEN_HEIGHT 64
#define OLED_RESET -1
Adafruit_SSD1306 display(SCREEN_WIDTH, SCREEN_HEIGHT, &Wire, OLED_RESET);
const int voltagePin = 34;
const int currentPin = 35;
const int warningLED = 16;
const int relayPin = 18;
const float voltageConversionFactor = 3.3 / 4095.0;
const float currentConversionFactor = 3.3 / 4095.0;
const int DHT_PIN = 15;
DHTesp dhtSensor;
void setup() {
Serial.begin(115200);
dhtSensor.setup(DHT_PIN, DHTesp::DHT22);
if (!display.begin(SSD1306_SWITCHCAPVCC, 0x3C)) {
Serial.println(F("SSD1306 allocation failed"));
while (1);
}
display.display();
delay(2000);
display.clearDisplay();
pinMode(warningLED, OUTPUT);
digitalWrite(warningLED, LOW);
pinMode(relayPin, OUTPUT);
digitalWrite(relayPin, LOW);
WiFi.begin(ssid, pass);
while (WiFi.status() != WL_CONNECTED) {
delay(500);
Serial.print(".");
}
Serial.println("Connected to WiFi");
Blynk.begin(auth, ssid, pass);
display.setTextSize(1);
display.setTextColor(SSD1306_WHITE);
display.setCursor(0, 0);
display.print("Battery Manager");
display.display();
delay(2000);
}
void loop() {
Blynk.run();
if (WiFi.status() != WL_CONNECTED) {
Serial.println("WiFi disconnected, trying to reconnect...");
WiFi.begin(ssid, pass);
while (WiFi.status() != WL_CONNECTED) {
delay(500);
Serial.print(".");
}
Serial.println("Reconnected to WiFi");
}
int voltageValue = analogRead(voltagePin);
float batteryVoltage = voltageValue * voltageConversionFactor * 4;
int currentValue = analogRead(currentPin);
float batteryCurrent = currentValue * currentConversionFactor;
TempAndHumidity data = dhtSensor.getTempAndHumidity();
// Check if the temperature reading is valid
// Apply the custom adjustment
display.clearDisplay();
display.setCursor(0, 0);
display.print("Voltage: ");
display.print(batteryVoltage);
display.print(" V");
display.setCursor(0, 10);
display.print("Current: ");
display.print(batteryCurrent);
display.print(" A");
display.setCursor(0, 20);
display.print("Temp: ");
display.print(data.temperature);
display.print(" C");
display.display();
Blynk.virtualWrite(V0, batteryVoltage);
Blynk.virtualWrite(V1, batteryCurrent);
Blynk.virtualWrite(V2, data.temperature);
if (batteryVoltage < 3.0 || batteryCurrent > 2.0 || data.temperature > 60.0) {
digitalWrite(warningLED, HIGH);
Blynk.virtualWrite(V3, 255);
Serial.println("Warning: Battery Alert!");
digitalWrite(relayPin, LOW);
}
else {
digitalWrite(warningLED, LOW);
Blynk.virtualWrite(V3, 0);
Serial.println("It's Working!");
digitalWrite(relayPin, HIGH);
}
delay(1000);
}