Design And Implementation of Ev-Battery Management System

  • Unique Paper ID: 201878
  • Volume: 12
  • Issue: 12
  • PageNo: 5615-5618
  • Abstract:
  • Wireless Power Transfer (WPT) using magnetic resonance is an emerging technology that eliminates the need for physical wiring in power transmission. Based on inductive power transfer principles, WPT has rapidly advanced, achieving kilowatt-level power transfer over distances ranging from a few millimeters to several hundred millimeters with efficiencies exceeding 90%. These improvements make WPT highly suitable for Electric Vehicle (EV) charging in both stationary and dynamic applications. This paper reviews key WPT technologies for EV charging and highlights their potential to reduce charging time, extend driving range, and lower operational costs. The continued development of WPT is expected to accelerate the adoption and growth of EVs.

Copyright & License

Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{201878,
        author = {Sowmiya S and Gunasekaran R},
        title = {Design And Implementation of Ev-Battery Management System},
        journal = {International Journal of Innovative Research in Technology},
        year = {2026},
        volume = {12},
        number = {12},
        pages = {5615-5618},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=201878},
        abstract = {Wireless Power Transfer (WPT) using magnetic resonance is an emerging technology that eliminates the need for physical wiring in power transmission. Based on inductive power transfer principles, WPT has rapidly advanced, achieving kilowatt-level power transfer over distances ranging from a few millimeters to several hundred millimeters with efficiencies exceeding 90%. These improvements make WPT highly suitable for Electric Vehicle (EV) charging in both stationary and dynamic applications. This paper reviews key WPT technologies for EV charging and highlights their potential to reduce charging time, extend driving range, and lower operational costs. The continued development of WPT is expected to accelerate the adoption and growth of EVs.},
        keywords = {Hardware Components: Arduino Uno, Arduino Nano, Node MCU ESP8266, RFID Module EM-18, Relay Module, Voltage Sensor, Current Sensor (ACS712), ADC (HX711), LCD with I2C Module, Buck Converter, IC 7805 Voltage Regulator. Software Requirements: Arduino IDE, Embedded C / Programming logic, IoT platform.},
        month = {May},
        }

Cite This Article

S, S., & R, G. (2026). Design And Implementation of Ev-Battery Management System. International Journal of Innovative Research in Technology (IJIRT), 12(12), 5615–5618.

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