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Research Article

Wireless Charging of Moving Electric Vehicle with Hybrid Charger and Advanced Road Signal Indicator

Jasmine J1 Alex Pandian S2 M. Velmurugan3 Bijo Johnson4 Jacob Thampi Vaidyan5

1 2 3 4 5 Department of Electrical and Electronics Engineering, Stella Mary’s College of Engineering, Nagercoil, Kanyakumari, Tamilnadu, India.

Published Online: January-April 2024

Pages: 20-23

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Abstract

The integration of wireless charging technology with renewable energy sources like solar and wind power has sparked a revolution in the realm of electric vehicle(EV) structure. This paper delves into the generality of wireless charging for moving EVs through a crossbred coliseum system that harnesses solar and windmill energy, reshaping the terrain of sustainable transportation. Traditional EV charging styles constantly bear vehicles to be stationary at charging stations, limiting their usability and convenience, especially for long expeditions or marketable lines. The crossbred coliseum system breaks this barricade by enabling continuous charging while EVs are in stir, thanks to renewable energy sources. At the heart of this system are solar panels and windmill generators strategically placed along roadways or integrated into charging stations. These factors internee sun and harness wind energy, singly, converting them into electrical power. The crossbred coliseum also utilizes wireless charging technology, analogous as inductive power transfer(IPT) or glamorous resonance coupling, to transfer this energy to EVs equipped with entering coils. Road signal information directly into vehicles through radio signal transmitters, enhancing the automobilist's situational awareness and promoting safer driving practices. Unlike traditional road signal pointers that calculate on visual cues, this approach leverages technology to transmit real- time road signal data directly to in- bus displays, revolutionizing the driving experience.

References

  • 1. Zhang, L., & Cao, J. (2017). Wireless Charging Technologies for Electric Vehicles: A Review of State-of-the-Art Technologies and

  • Challenges. IEEE Access, 5, 23765-23784.

  • 2. Lim, C., Kim, J., & Cho, S. (2018). Integration of Solar and Wind Energy into Wireless Power Transfer for Electric Vehicles. Sensors,

  • 18(12), 4398.

  • 3. Huang, Y., & Zhang, H. (2019). Design and Optimization of a Hybrid Energy Harvesting System for Wireless Charging of Electric Vehicles.

  • IEEE Transactions on Industrial Electronic, 66(12), 9522-9532

Citations

Jasmine J, Alex Pandian S, M. Velmurugan, Bijo Johnson, Jacob Thampi Vaidyan, “Wireless Charging of Moving Electric Vehicle with Hybrid Charger and Advanced Road Signal Indicator”, Indian Journal of Electrical and Electronics Engineering, Volume 1, Issue 1 (January - April 2024), PP 20-23

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Licensing

© 2026 The Author(s). Published by Fifth Dimension Research Publication.

This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0/ ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The terms on which this article has been published allow the posting of the Accepted Manuscript in a repository by the author(s) or with their consent.