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A Real Time Analysis Of Wireless Power Transfer Coil Design For Electric Vehicle

Manoj D, Mohanbabu G, Ram Kumar.P, Thanuj K, Vigneshwaran K, Viswakshenan J

Abstract


Wireless Power  Transmission is a process that uses a vacuum or an atmosphere to transmit electrical energy. It is commonly used in the medical, industrial, and transportation sectors. However, its reliability and quality are often affected by the range and  efficiency  of the  transmission.  Electric Vehicles (EVs) have the potential to achieve better efficiency and lower emissions than internal combustion engines. However, their limited range makes them a major barrier to widespread  adoption. The capacity of  an  EV's battery is needed  to increase its range. Coil  design  simulation  that verifies the coil design and inductance calculation has been carried out by using MATLAB and RED expert software. Waveforms of temperature rise,Q-factor are obtained. Loss components are identified and interpreted.  Solar  powered Dynamic Wireless power transfer is explored in this research work   which  enhances  charging performance,  but it also reduces energy waste by activating only the coils with the best transfer efficiencies on its own. The outcomes illustrate that the proposed system can detect the coil with the greatest accuracy.   maximizing   transmission   efficiency   without relying on real power transmission. This paper also demonstrates that the proposed charger-set-up can detect the position of the receiver coil practically quickly, saving energy and speeding up charging time.

Keywords


Coil design, Coil materials, Compensation networks, Power electronic converter, Wireless power transfer Introduction

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References


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