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PWM Plus Secondary-Side Phase-Shift Controlled Soft-Switching Full-Bridge Three-Port Converter for Renewable Power Systems

机译:用于可再生电源系统的PWM Plus次级侧相移控制软开关全桥三端口转换器

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摘要

In this paper, a pulsewidth modulation (PWM) plus secondary-side phase-shift (SSPS) controlled full-bridge three-port converter (FB-TPC) is proposed for a renewable power system, which is derived by integrating two interleaved buck/boost circuits (IBBC) and a SSPS full-bridge converter (FBC), to interface the energy source, energy storage element, and output load simultaneously. The two switching legs are shared by the IBBC and FBC, which improves the active devices sharing ratio and power density. With PWM plus SSPS control scheme, decoupled power control can be realized and the converter can achieve wide input voltage range power conversion. In addition, zero-voltage switching (ZVS) of both the primary and secondary switches are achieved in a wide range. Furthermore, the circulating current can be greatly eliminated, which helps to reduce conduction losses. Moreover, the voltage stresses on the secondary rectifier are effectively suppressed since the power switches and diodes are clamped to output voltage. The operation principles, output characteristics, ZVS performances, and control strategy are analyzed in detail. Experimental results of a 600-W prototype are provided to verify the effectiveness and the advantages of the proposed converter.
机译:本文提出了一种脉冲宽度调制(PWM)加上次级侧相移(SSPS)控制的全桥三端口转换器(FB-TPC),该方法是通过将两个交错的buck /升压电路(IBBC)和SSPS全桥转换器(FBC),以同时连接能源,储能元件和输出负载。 IBBC和FBC共享两个开关支路,从而提高了有源设备的共享率和功率密度。通过PWM加SSPS控制方案,可以实现去耦功率控制,并且转换器可以实现宽输入电压范围的功率转换。另外,一次和二次开关的零电压开关(ZVS)都可以在很宽的范围内实现。此外,可以大大消除循环电流,这有助于减少传导损耗。此外,由于功率开关和二极管被钳位到输出电压,因此有效抑制了次级整流器上的电压应力。详细分析了工作原理,输出特性,ZVS性能和控制策略。提供了600 W原型的实验结果,以验证所提出转换器的有效性和优势。

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