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99% Efficient Isolated Three-Phase Matrix-Type DAB Buck-Boost PFC Rectifier

机译:99%高效隔离三相矩阵型DAB降压-BOOST PFC整流器

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摘要

Three-phase power factor correction rectifiers are an essential area of power electronics, supplying a direct current load with tens of kilowatts, or more, from the public three-phase mains and achieving sinusoidal input currents. In many applications, isolation is required between the mains and the load, for example, due to safety reasons or different grounding schemes. This paper describes the modulation, design, and realization of a buck-boost-type, unity-power-factor, isolated matrix-type, dual-active-bridge, three-phase rectifier. It uses a circuit similar to a conventional dual-active-bridge converter, but employs a direct matrix converter to connect the high-frequency transformer's primary winding to the mains. A soft-switching modulation scheme is proposed and comprehensively analyzed, deriving closed-form solutions and numerical optimization problems to calculate switching times that achieve minimal conduction losses. Based on this analysis, the design of an 8-kW 400-V rms three-phase ac to 400-V dc prototype is discussed, striving for the highest possible efficiency. Using 900-V SiC MOSFETs and a transformer with an integrated inductor, a power density of 4 kW . dm(-3) (66 W . in(-3)) is achieved. Measurement results confirm an ultrahigh full-power efficiency of 99.0% at nominal operating conditions and 98.7% at 10% lower input voltage.
机译:三相功率因数校正整流器是电力电子设备的必备领域,从公共三相电源和实现正弦输入电流,提供带数十只千瓦或更多的直流负荷。在许多应用中,由于安全原因或不同的接地方案,主电源和负载之间需要隔离。本文介绍了降压 - 升压型,单位 - 功率因数,隔离矩阵型,双主动桥,三相整流器的调制,设计和实现。它使用类似于传统的双主动桥转换器的电路,但采用直接矩阵转换器将高频变压器的主要绕组连接到电源。提出了一种软切换调制方案,综合分析,导出闭合液解决方案和数值优化问题,以计算实现最小传导损耗的切换时间。基于该分析,讨论了8千瓦400V RMS三相AC至400V DC原型的设计,争取了最高效率。使用900-V SiC MOSFET和具有集成电感器的变压器,功率密度为4 kW。 DM(-3)(66 W.(-3))是实现的。测量结果在标称操作条件下确认超高的全功率效率为99.0%,输入电压降低98.7%。

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