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Generalized self-driven AC-DC synchronous rectification techniques for single- and multiphase systems

机译:用于单相和多相系统的通用自驱动aC-DC同步整流技术

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摘要

This paper extends the single-phase self-driven synchronous rectification (SDSR) technique to multiphase ac-dc systems. Power MOSFETs with either voltage- or current-sensing self-driven gate drives are used to replace the diodes in the rectifier circuits. The generalized methodology allows multiphase SDSRs to be designed to replace the multiphase diode rectifiers. Unlike the traditional SR that is designed for high-frequency power converters, the SDSR proposed here can be a direct replacement of the power diode bridges for both low- and high-frequency operations. The SDSR utilizes its output dc voltage to supply power to its control circuit. No start-up control is needed because the body diodes of the power MOSFETs provide the diode rectifier for the initial start-up stage. The generalized method is demonstrated in 2-kW one-phase and three-phase SDSRs for inductive, capacitive, and resistive loads. Power loss reduction in the range of 50%-69% has been achieved for the resistive load. © 2009 IEEE.
机译:本文将单相自驱动同步整流(SDSR)技术扩展到多相AC-DC系统。具有电压或电流感应自驱动栅极驱动器的功率MOSFET用于替换整流器电路中的二极管。通用方法允许设计多相SDSR来代替多相二极管整流器。与为高频功率转换器设计的传统SR不同,这里提出的SDSR可以直接替代功率二极管电桥,以用于低频和高频操作。 SDSR利用其输出直流电压为控制电路供电。不需要启动控制,因为功率MOSFET的体二极管为初始启动阶段提供了二极管整流器。在用于感性,电容性和电阻性负载的2 kW单相和三相SDSR中演示了通用方法。对于阻性负载,功率损耗降低了50%-69%。 ©2009 IEEE。

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