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首页> 外文期刊>Power Electronics, IET >Long-distance wireless power transfer system powering multiple loads with constant voltage outputs using S-SP compensation
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Long-distance wireless power transfer system powering multiple loads with constant voltage outputs using S-SP compensation

机译:长途无线电力传输系统使用S-SP补偿为多个负载供电,恒定电压输出

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摘要

This paper proposes a long-distance multi-load wireless power transfer (WPT) system with a constant voltage (CV) output for each load. A repeater unit consisting of two bipolar repeater coils is designed to power the load. Multiple repeater units are placed in a line and the power can be transferred from one unit to the next. Each repeater unit corresponds to one load and multiple loads can be powered simultaneously. The two repeater coils in the same repeater unit are placed perpendicularly to eliminate the magnetic coupling between them. In each repeater unit, a compensation capacitor is placed in series with the transmitting coil while two extra compensation capacitors form a series-parallel (SP) structure for the receiving coil. When neglecting the coil's parasitic resistance, the CV characteristics can be obtained, which enables the independent and flexible power control of each load. Moreover, the influence of the parasitic resistances on the system performance is analysed. Such a system is especially suitable for powering the gate drivers in a high-voltage converter where multiple insulated gate bipolar transistors (IGBTs) are connected in series. An experimental setup with six loads is constructed to validate the proposed system. The maximum system efficiency can reach 88.1%.
机译:本文提出了一种长距离多负载无线电力传输(WPT)系统,具有每个负载的恒压(CV)输出。由两个双极转发器线圈组成的转发器单元旨在为负载供电。多个中继器单元放置在一条线中,电源可以从一个单元传输到下一个单元。每个转发器单元对应于一个负载,并且可以同时供电。在相同的转发器单元中的两个转发器线圈垂直放置以消除它们之间的磁耦合。在每个转发器单元中,补偿电容器与发射线圈串联放置,而两个额外的补偿电容器形成用于接收线圈的串联(SP)结构。当忽略线圈的寄生电阻时,可以获得CV特性,这使得能够实现每个负载的独立和灵活的功率控制。此外,分析了寄生电阻对系统性能的影响。这种系统特别适用于在高压转换器中为多个绝缘栅双极晶体管(IGBT)串联连接的高压转换器供电。构造具有六个负载的实验设置以验证所提出的系统。最大系统效率可达到88.1%。

著录项

  • 来源
    《Power Electronics, IET》 |2020年第9期|1729-1734|共6页
  • 作者单位

    San Diego State University Department of Electrical and Computer Engineering 5500 Campanile Drive San Diego CA USA;

    State Key Laboratory of Advanced Power Transmission Technology (Global Energy Interconnection Research Institute) Changping District Beijing 102211 People's Republic of China;

    State Key Laboratory of Advanced Power Transmission Technology (Global Energy Interconnection Research Institute) Changping District Beijing 102211 People's Republic of China;

    San Diego State University Department of Electrical and Computer Engineering 5500 Campanile Drive San Diego CA USA;

    State Key Laboratory of Advanced Power Transmission Technology (Global Energy Interconnection Research Institute) Changping District Beijing 102211 People's Republic of China;

    San Diego State University Department of Electrical and Computer Engineering 5500 Campanile Drive San Diego CA USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    insulated gate bipolar transistors; inductive power transmission; electric potential; power control; coils;

    机译:绝缘栅双极晶体管;电感电势;电势;电源控制;线圈;

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