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Using self-driven AC-DC synchronous rectifier as a direct replacement for traditional power diode rectifier

机译:采用自驱动aC-DC同步整流器作为传统功率二极管整流器的直接替代品

摘要

Synchronous rectification has previously been adopted in switched-mode circuits for reducing the conduction losses particularly in high-frequency, low-voltage, and high-current applications. This paper presents a generalized self-driven ac-dc synchronous rectification technique that can be used even at mains frequency to develop an ac-dc synchronous rectifier that behaves like a diode bridge but with much reduced conduction losses and without control integrated circuits. This generalized concept can be extended from single-phase to multiphase systems. Experiments based on 1- and 2-kW single-phase systems have been successfully conducted for capacitive, inductive, and resistive loads. Very significant power loss reduction (over 50%) has been achieved in the rectification stage at both 110- and 220-V ac mains operations. This patent-pending circuit can be regarded as a direct replacement of a general-purpose diode rectifier. Due to the reduction of power loss, further reduction in the size and cost of the heat sink or thermal management for the power circuit becomes possible. © 2011 IEEE.
机译:以前,在开关模式电路中已经采用了同步整流来降低传导损耗,特别是在高频,低压和大电流应用中。本文提出了一种通用的自驱动式ac-dc同步整流技术,该技术甚至可以在市电频率下用于开发性能类似于二极管电桥但具有大大降低的传导损耗且无需控制集成电路的ac-dc同步整流器。这种广义的概念可以从单相系统扩展到多相系统。已经成功地针对电容,电感和电阻负载进行了基于1和2 kW单相系统的实验。在110V和220V交流电源操作下的整流阶段,已经实现了非常显着的功耗降低(超过50%)。该正在申请专利的电路可以视为直接替代通用二极管整流器。由于减小了功率损耗,因此可以进一步减小散热器的尺寸和成本,或者减小功率电路的热管理。 ©2011 IEEE。

著录项

  • 作者

    Zhong WX; Liu X; Ho WC; Hui SY;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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