新型双向单级隔离三相Buck-Boost PFC整流系统

D. Menzi, F. Krismer, T. Ohno, J. Huber, J. Kolar, J. Everts
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引用次数: 0

摘要

未来的三相交直流变换器系统理想地允许双向潮流,提供高频隔离,并具有降压升压能力。此外,高效率和高紧凑性以及标准半桥和/或三相全桥(B6)半导体布置的适用性是至关重要的方面。本文提出了一种新颖的变换器概念,在输入端和输出端采用b6型电路,采用低复杂度的断续传导模式(DCM)型或双有源桥(DAB)型调制策略,从而实现单级隔离三相交流-直流功率转换,具有正弦电网电流和可控直流输出电压。详细介绍了变换器在开关频率和电网频率时间尺度上的运行情况,并通过电路仿真进行了验证。讨论了变换器的控制特性和主要功率元件的应力,并给出了期望效率> 98%的6.6 kW原型系统的设计准则。最后,对该拓扑的实际实现和高级调制的未来研究进行了展望。
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Novel Bidirectional Single-Stage Isolated Three-Phase Buck-Boost PFC Rectifier System
Future three-phase ac-dc converter systems ideally allow for bidirectional power flow, provide high-frequency isolation, and feature buck-boost capability. Further, high efficiency and high compactness and the applicability of standard half-bridge and/or three-phase full-bridge (B6) semiconductor arrangements are crucial aspects. This Paper proposes a novel converter concept that employs B6-type circuits on the input and on the output side and a low-complexity Discontinuous Conduction Mode (DCM)-type or a Dual Active Bridge (DAB)-type modulation strategy, thereby enabling single-stage isolated three-phase ac-dc power conversion with sinusoidal grid currents and controlled dc output voltage. The converter operation is detailed on the switching-frequency and on the grid-frequency time scale and verified by means of circuit simulations. The converter control characteristic and the main power component stresses are discussed and design guidelines for a 6.6 kW prototype system with an expected efficiency $\eta > 98\%$ are presented. Finally, an outlook on future research related to the practical realization and advanced modulation of the topology is provided.
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