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A ZCT auxiliary commutation circuit for interleaved boost converters operating in critical conduction mode

机译:用于在临界传导模式下运行的交错升压转换器的ZCT辅助换向电路

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摘要

This paper investigates a power-factor-corrector (PFC) circuit based on interleaved boost converters in critical conduction mode (C-DCM) with a zero current transition (ZCT) circuit. By using the interleaved converters technique, the input current ripple is minimized, and due to the operation in C-DCM, the main switches turn-on occurs naturally under zero current and the reverse recovery losses of the diodes are minimized. The use of auxiliary commutation circuits provides ZCT at main switches turn-off, minimizing the related turn-off losses. The command circuit of the converters has been implemented by using a single erasable programmable logic device (EPLD) EPM7128SLC84-15. Operating principles, theoretical analysis, design guidelines and a design example are described and verified experimentally by a 1.2 kW prototype. Finally, the measured losses in the PFC interleaved boost converters with and without the proposed ZCT commutation cell, as well as a previously published ZCT cell are presented and discussed.
机译:本文研究了基于具有零电流转换(ZCT)电路的临界传导模式(C-DCM)中的交错升压转换器的功率因子校正器(PFC)电路。通过使用交织转换器技术,输入电流纹波被最小化,并且由于C-DCM中的操作,主开关在零电流下自然发生,并且二极管的反向恢复损耗最小化。辅助换向电路的使用在主开关关闭时提供ZCT,最大限度地减少相关的关闭损耗。通过使用单个可擦除的可编程逻辑设备(EPLD)EPM7128SLC84-15来实现转换器的命令电路。通过1.2 kW原型来描述和验证操作原理,理论分析,设计指导和设计示例。最后,提出并讨论了具有和不具有所提出的ZCT换向单元的PFC交织升压器中的测量损失,以及先前公布的ZCT小区。

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