Wireless Vehicle Charging System

Kuchekar Tejsas SampatUG Student, Electronics & Telecommunication Engineering Department, Fabtech Technical Campus Sangola, Maharashtra, IndiaShinde Ashwini VasantUG Student, Electronics & Telecommunication Engineering Department, Fabtech Technical Campus Sangola, Maharashtra, IndiaKuchekar Snehal SampatUG Student, Electronics & Telecommunication Engineering Department, Fabtech Technical Campus Sangola, Maharashtra, IndiaSalave Vaibhavi LakshmanUG Student, Electronics & Telecommunication Engineering Department, Fabtech Technical Campus Sangola, Maharashtra, IndiaAsst. Prof. Deshmukh Rushikesh NandkumarProfessor, Electronic & Telecommunication Engineering Department, Fabtech Technical Campus, College of Engineering and Research Sangola, Dr. Babasaheb Ambedkar Technological University, Lonere, Maharashtra, India

Vol 8 No 4 (2024): Volume 8, Issue 4, April 2024 | Pages: 343-346

International Research Journal of Innovations in Engineering and Technology

OPEN ACCESS | Research Article | Published Date: 27-05-2024

doi Logo doi.org/10.47001/IRJIET/2024.804054

Abstract

Wireless vehicle charging technology has emerged as a transformative solution, reshaping the landscape of electric mobility. This paper explores the advancements, applications, and future prospects of wireless vehicle charging systems. The technology's core advantage lies in its convenience, eliminating the need for physical cables and offering an efficient, user-friendly charging experience. The installation and working procedures for wireless vehicle charging are detailed, encompassing aspects from technology selection to safety considerations. Notably, the technology's applications span various sectors, including urban mobility, public transportation, residential charging, and smart city initiatives. The paper emphasizes the technology's potential to seamlessly integrate into diverse environments, optimizing the use of urban spaces and contributing to sustainable transportation. Examining the future prospects reveals a landscape of innovation and growth. Anticipated developments include increased charging power and efficiency, standardization efforts for interoperability, integration with smart grids, and the potential for dynamic charging on roads. The rise of autonomous and shared mobility further underscores the pivotal role of wireless charging in shaping the future of transportation. As the global momentum toward electric mobility intensifies, wireless vehicle charging stands as a cornerstone technology, offering a cleaner, more accessible, and sustainable path forward. The synthesis of technological advancements, strategic infrastructure development, and collaborative efforts positions wireless charging as a key enabler for the future of efficient and environmentally conscious transportation systems.

Keywords

LM555 Timer IC, IRFZ44N MOSFET, Step Down Transformer , Copper Coil , LCD Display, Arduino Nano


Citation of this Article

          

Kuchekar Tejsas Sampat, Shinde Ashwini Vasant, Kuchekar Snehal Sampat, Salave Vaibhavi Lakshman, Asst. Prof. Deshmukh Rushikesh Nandkumar, “Wireless Vehicle Charging System”, Published in International Research Journal of Innovations in Engineering and Technology - IRJIET, Volume 8, Issue 4, pp 343-346, April 2024. Article DOI https://doi.org/10.47001/IRJIET/2024.804054

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