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Repeater coil-based wireless power transfer system powering multiple gate drivers of series-connected IGBTs

机译:基于转发器线圈的无线电力传输系统供电串联IGBT的多个栅极驱动器

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摘要

It is challenging to power a large number of gate drivers of the series-connected insulated gate bipolar transistors (IGBTs) in a high-voltage application because multiple isolated power supplies are needed. In this study, a novel wireless power transfer (WPT) system using repeater coils is designed to solve this problem. Every two repeater coils form a repeater unit, which transfers power to one load. With multiple repeater units in the system, multiple loads can obtain power simultaneously. To eliminate undesirable magnetic couplings between these coils, bipolar coils are used and the two bipolar coils in the same repeater unit are placed perpendicularly. It is derived that constant voltage can be obtained for all the loads, which is especially suitable for powering the IGBT's gate driver. Moreover, the variation of one load power will not affect others. The receiving circuit is designed to transform the received power to the DC voltage compatible with the driving circuits. An experimental setup with six loads has been constructed to validate the proposed WPT system.
机译:在高压施加中为串联连接绝缘栅双极晶体管(IGBT)的大量栅极驱动器提供电动大量栅极驱动器是挑战,因为需要多个隔离电源。在本研究中,使用中继线线圈的新型无线电力传输(WPT)系统旨在解决这个问题。每两个转发器线圈都形成了一种转发器单元,可将电源传输到一个负载。在系统中使用多个转发器单元,多个负载可以同时获得电力。为了消除这些线圈之间的不希望的磁耦合,使用双极线圈,并且在相同的转发器单元中的两个双极线圈垂直放置。导出,可以获得所有负载可以获得恒定电压,这尤其适用于供电IGBT的栅极驱动器。此外,一个负载功率的变化不会影响他人。接收电路被设计成将接收的电源转换为与驱动电路兼容的DC电压。已经构建了具有六个负载的实验设置以验证所提出的WPT系统。

著录项

  • 来源
    《Power Electronics, IET》 |2020年第9期|1722-1728|共7页
  • 作者单位

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

    Tsinghua University Tsinghua University Department of Electrical Engineering West Main Building 2-302 Haidian District Beijing 100084 People's Republic of China;

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

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

    Global Energy Interconnection Research Institute State Key Laboratory of Advanced Power Transmission Technology 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;

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

    insulated gate bipolar transistors; inductive power transmission; driver circuits; coils; integrated circuit design; repeaters;

    机译:绝缘门双极晶体管;电感电力传输;驱动电路;线圈;集成电路设计;中继器;
  • 入库时间 2022-08-18 20:57:43

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