基于单相矩阵变换器(SPMC)的车网无线电力传输

R. Baharom, Mohammad Faris Bin Muhili, K. S. Muhammad
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引用次数: 2

摘要

本文提出了一种基于单相矩阵变换器(SPMC)电路拓扑结构的增强型栅格车载(G2V)无线电池充电器的设计方案。所提出的电路拓扑结构采用单个变换器在发射线圈上执行直接交流到交流的变换器,从而降低了电路的复杂性和功率半导体损耗。在本文中,SPMC作为直接的交流到交流转换器,将50hz的输入电源电压转换为20khz,以满足无线电力传输(WPT)功能的开关频率操作。在WPT电路的输出端的高频电压然后被整流成直流形式使用交直流变换器。WPT技术被用于去除传统电动汽车(ev)充电系统中恼人的电线,从而通过防止驾驶员与车辆充电系统之间的任何接触来提高车辆充电过程的安全性。所提出的系统采用最小电路拓扑,其中单个SPMC电路用于取代传统的两级AC-DC-AC转换器。利用MATLAB/Simulink建立了该系统的计算机仿真模型并进行了建模。所选结果验证了所提出的电路。
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Grid to Vehicle Wireless Power Transfer using Single Phase Matrix Converter (SPMC)
This paper proposes to design an enhanced grid to the vehicle (G2V) wireless battery charger using Single-Phase Matrix Converter (SPMC) circuit topology. The proposed circuit topology employed a single converter to perform direct AC to AC converter at the transmitting coil, thus reducing circuit complexity and power semiconductor losses. In this paper, the SPMC act as a direct AC to AC converter to convert the input supply voltage at 50 Hz into 20 kHz to meet the switching frequency operation of the Wireless Power Transfer (WPT) function. The high-frequency voltage at the output of the WPT circuit is then being rectified into DC form by using AC to DC converter. WPT technology is being used to remove the annoying wires of the conventional Electric Vehicles (EVs) charging system, thus improve the safety of the vehicle charging process by preventing any contact between the driver and the vehicle charging system. The proposed system uses the minimal circuit topology where the single SPMC circuit is used to replace the conventional two stages of AC-DC-AC converters. A computer simulation model of the proposed system using MATLAB/Simulink has been designed and modeled. The selected results are presented to verify the proposed circuit.
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