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A self core reset and zero voltage switching forward converter topology

机译:自核复位和零电压开关正激转换器拓扑

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摘要

A self core reset and zero voltage switching (ZVS) forward converter topology is presented in this paper. By employing a simple auxiliary circuit, the proposed topology is able to achieve self reset of the power transformer without the use of the conventional tertiary reset winding, and its main switch can be turned on and turned off under ZVS independent of line and load conditions. This simplifies the power transformer, and the switching losses are substantially removed to improve the overall efficiency. Steady state analysis of the circuit is performed. Based on the analysis, a design procedure is presented, and the effects of the circuit parameters on the flux excursion of the power transformer are investigated to make sure self reset can be achieved without increasing the core losses. Simulation and experiment on a 5 V, 100 W prototype circuit operated at 200 kHz are carried out to verify the design, about 5% higher overall efficiency is obtained in the prototype converter than in its conventional counterpart.
机译:本文提出了一种自核复位和零电压开关(ZVS)正向转换器拓扑。通过采用简单的辅助电路,所提出的拓扑结构无需使用常规的三次复位绕组即可实现电力变压器的自复位,并且其主开关可以在ZVS下独立于线路和负载条件而接通和断开。这简化了电源变压器,并且开关损耗已基本消除,从而提高了整体效率。进行电路的稳态分析。在此基础上,提出了一种设计程序,并研究了电路参数对电力变压器磁链偏移的影响,以确保在不增加铁芯损耗的情况下实现自复位。在工作于200 kHz的5 V,100 W原型电路上进行了仿真和实验,以验证设计,原型转换器的总效率比传统转换器高约5%。

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