双有源桥隔离DC - DC变换器双移相和三移相控制技术的比较分析

Anupam Kumar, A. H. Bhat, P. Agarwal
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引用次数: 13

摘要

双向能量传递能力是许多现代电力转换系统的核心部分。优选地,为了减小尺寸、重量和成本,这些系统使用单个高效电力电子转换系统。双有源桥式变换器具有两个DC-AC变换器通过交流电感/变压器背靠背连接,是用于获得高效率双向功率转换的常见拓扑结构。DAB变换器拓扑结构具有双向潮流能力、固有软开关、高功率密度、高效率、电流隔离和无源器件数量少等特点。本文讨论了负载阶跃变化时的电路运行、设计、效率、开关应力和闭环运行的比较。比较了两种先进的控制策略,即双相移和三相移,并给出了各自的波形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative analysis of dual active bridge isolated DC to DC converter with double phase shift and triple phase shift control techniques
Bidirectional energy transfer capability is the central part of a lot of modern power conversion systems. Preferably, for reduction of size, weight and cost these systems use a single high efficiency power electronic conversion system. A dual active bridge converter having two DC-AC converters connected back to back through an AC inductor/transformer is a common topology used for obtaining high efficiency bidirectional power conversion. Some characteristic features of the DAB converter topology are bidirectional power flow capability, inherent soft switching, high power density, high efficiency, galvanic isolation and low number of passive components. In this paper, circuit operation, design, and comparison of efficiency, switch stress, and closed loop operation for step load variation are discussed. Two advanced control strategies namely double phase shift, and triple phase shift are compared and respective waveforms are shown.
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