Impact Factor
Call For Paper
Volume 12 Issue 07
July 2026
Author(s)
Abstract
Electric Vehicles Require Intelligent Monitoring To Ensure Safety, Efficiency, And Longevity. This Study Proposes An IoT-enabled Battery Monitoring And Fault Detection System Targeting Risks Like Overheating, Voltage Imbalance, And Fire Hazards. The Framework Integrates Voltage, Temperature, And Flame Sensors To Capture Real-time Battery Data. An ATmega328P Microcontroller Processes Inputs Against Predefined Thresholds To Detect Anomalies. NodeMCU Enables Wireless Transmission To An IoT Cloud For Remote Visualization And Diagnostics. Upon Fault Detection, The System Triggers LCD Alerts And Relay Isolation To Safeguard The Battery Circuit. This Proactive Design Facilitates Early Intervention, Minimizes Downtime, And Boosts Reliability. Remote Access Empowers Users And Technicians For Informed Maintenance Decisions. Cost-effective And Scalable, The Solution Adapts To Diverse EV Applications. By Merging Embedded Systems With IoT, It Advances Battery Management, Extends Lifespan, And Reduces Fire Risks. Future Enhancements Include Predictive Analytics, Mobile Integration, And Data Logging For Sustainable Energy Utilization.
Keywords
Paper ID
IJSARTV12I4104945
Publication Date
April 9, 2026
Research Area
Electronics And Communication Engineering