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A Systematic Review On Grided Wireless Charging Station for Electric Vehicle
Author Name

P.Vinoth kumar , V.Nandhini , P.Vaishnavi , S.Y. Yuvan Kumar and V.Karthikeyan

Abstract

As an alternate form in the road transportation system, electric vehicle (EV) can help reduce the fossil-fuel consumption. However, the usage of EVs is constrained by the limited capacity of battery. Wireless Power Transfer (WPT) can increase the driving range of EVs by charging EVs in malls, parking lots etc., when they stand over a wireless charging lane embedded in a platform. The amount of power that can be supplied by a charging lane at a time is limited. Wireless Power Transfer (WPT) systems transfer electric energy from a source to a load without any wired connection. WPTs are attractive for many industrial applications because of their advantages compared to the wired counterpart, such as no exposed wires, ease of charging, and fearless transmission of power in adverse environmental conditions. Adoption of WPTs to charge the on-board batteries of an electric vehicle (EV) has got attention from some companies, and efforts are being made for development and improvement of the various associated topologies.

 

WPT is achieved through the affordable inductive coupling between two coils termed as transmitter and receiver coil. In EV charging applications, transmitter coils are buried in the road and receiver coils are placed in the vehicle. Inductive WPT of resonant type is commonly used for medium-high power transfer applications like EV charging because it exhibits a greater efficiency.



Published On :
2023-05-08

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