A Comprehensive Review of Electric Vehicle Lithium-Ion Battery Monitoring Using IoT Technologies
DOI: 10.56815/IJEMS.V3.I1.2023/31-39
Keywords:
Electric Vehicles, LithiumIon Batteries, IoT Integration, Battery Monitoring Systems, Sustainable Transportation, Performance Optimization, Real-time Monitoring, Data Analytics, Remote Accessibility, Battery Health Management, Predictive Maintenance, Anomaly Detection, Case Studies, Industry Applications, Safety Enhancement, EV SustainabilityAbstract
This review provides a comprehensive exploration of Electric Vehicle (EV) Lithium-Ion (Li-ion) battery monitoring, with a specific focus on the integration of Internet of Things (IoT) technologies. As EVs emerge as a cornerstone of sustainable transportation, effective management of Li-ion batteries becomes paramount. IoT integration facilitates real-time monitoring through sensors, communication protocols, and cloud-based platforms, transforming the landscape of battery health management. The abstract begins by contextualizing the role of Li-ion batteries in the context of EVs and highlights the transformative impact of IoT integration. Key parameters crucial for effective battery monitoring, including voltage, temperature, state of charge (SoC), state of health (SoH), current, and internal resistance, are scrutinized. Advancements in battery health management, leveraging IoT for predictive maintenance and anomaly detection, are explored. Real-world case studies exemplify successful implementations and challenges faced in IoT-enabled Li-ion battery monitoring across manufacturers. The abstract concludes by addressing challenges and envisioning future prospects, emphasizing the significance of continuous research for the sustainable evolution of EVs through IoT-driven battery monitoring.