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Analysis and Design of Multiphase Receiver With Reduction of Output Fluctuation for EV Dynamic Wireless Charging System

机译:减少电动汽车动态无线充电系统输出波动的多相接收器的分析与设计

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The multiphase receiver for more steady output is proposed in this paper. The conventional power supply rail with multipole such as I-type, S-type, and n-type for dynamic wireless charging (DWC) system has a main drawback: the induced voltage of the double-D coil of receiver has a sinusoidal fluctuation along the driving direction and the fluctuation factor is 1.0. Therefore, the multiphase receivers including two-phase, three-phase, and four-phase receiver are proposed to solve the problem. The fluctuation factor, effective value (rms) of induced voltage and mutual inductance, cost, and loss of different numbers of phase in different connection modes are analyzed and compared. The applicable conditions of different types are given. The structure size of single-phase coil is optimized to achieve larger coupling coefficient. The influence of distance between phases on fluctuation factor and induced voltage (rms) are calculated and the design principle of the distance between phases is determined. Based on above research, design guideline for the multiphase receiver is proposed including the constraints of installation environment and the distribution of different phases. The structure size of single-phase coil and the distance between phases are optimized to improve the coupling coefficient and reduce cost, loss, and voltage level of resonator. Considering the practical application environment, a four-phase receiver of 10-kW DWC system is designed. A prototype system is also established and the analysis and simulation are verified. In the dynamic 10-kW experiment, the fluctuation factor is reduced to 0.146 from 0.3 of two-phase receiver and 1.0 of single-phase receiver.
机译:本文提出了一种多相接收器,以实现更稳定的输出。用于动态无线充电(DWC)系统的具有I型,S型和n型等多极点的常规电源轨具有一个主要缺点:接收器的双D线圈的感应电压沿其正弦波动行驶方向和波动系数为1.0。因此,提出了包括两相,三相和四相接收器的多相接收器以解决该问题。分析并比较了不同连接方式下的波动因子,感应电压和互感的有效值(rms),成本以及不同相数的损耗。给出了不同类型的适用条件。优化了单相线圈的结构尺寸以实现更大的耦合系数。计算了相间距离对波动因子和感应电压(rms)的影响,并确定了相间距离的设计原理。在以上研究的基础上,提出了多相接收机的设计指南,其中包括安装环境的约束和不同相的分布。优化了单相线圈的结构尺寸和相之间的距离,以提高耦合系数并降低谐振器的成本,损耗和电压水平。考虑实际应用环境,设计了10kW DWC系统的四相接收器。建立了原型系统,并进行了分析和仿真验证。在10 kW的动态实验中,波动系数从两相接收器的0.3和单相接收器的1.0降低到0.146。

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