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Energy efficient and adaptive design for wireless power transfer in electric vehicles.

机译:电动汽车无线功率传输的节能高效自适应设计。

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摘要

Wireless power transfer (WPT) could revolutionize global transportation and accelerate growth in the Electric Vehicle (EV) market, offering an attractive alternative to cabled charging. Coil misalignment is inevitable due to driver parking behaviour and has a detrimental effect on power transfer efficiency (PTE). This paper proposes a novel coil design and adaptive hardware to improve PTE in magnetic resonant coupling WPT and mitigate coil misalignment, a crucial roadblock in its acceptance. The new design was verified using ADS, providing a good match to theoretical analysis. Custom designed receiver and transmitter circuitry was used to simulate vehicle and parking bay conditions and obtain PTE data in a small-scale setup. Experimental results showed that PTE can be improved by 30% at the array's centre, and an impressive 90% when misaligned by 3/4 of the arrays radius. The proposed novel coil array achieves overall higher PTE compared to the benchmark single coil design.
机译:无线电源传输(WPT)可能会改变全球交通方式,并加速电动汽车(EV)市场的增长,为有线充电提供有吸引力的替代方案。由于驾驶员的停车行为,线圈未对准是不可避免的,并且会对动力传输效率(PTE)产生不利影响。本文提出了一种新颖的线圈设计和自适应硬件,以改善磁谐振耦合WPT中的PTE并减轻线圈失准,这是其接受的关键障碍。新设计已使用ADS进行了验证,与理论分析非常吻合。使用定制设计的接收器和发射器电路来模拟车辆和停车位情况,并以小规模设置获得PTE数据。实验结果表明,在阵列中心,PTE可以提高30%,而在未对准阵列半径3/4的情况下,则可以提高90%。与基准单线圈设计相比,提出的新型线圈阵列可实现更高的总体PTE。

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