集成固态断路器的降压-升压变换器

Yuyang Liu, Yuqing Fei, Zhongzheng Zhou, Zizhong Zhou, Weilin Li
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引用次数: 0

摘要

直流-直流变换器和直流固态断路器对直流微电网的可靠性至关重要。但它们在级联时会相互影响,导致断路器失效,或放大输入电压纹波。为了解决上述问题,本文提出了一种集成固态断路器的直流变换器拓扑结构。将Buck-Boost变换器的电感器与互感器相结合,实现故障隔离功能。电感的重复使用既保证了功率转换的性能,又减小了系统的体积,保持了低通滤波器的特性。首先,利用状态空间平均模型分析了该拓扑在稳态和故障暂态下的工作原理。然后在Simulink上建立仿真模型,验证理论推导。最后,实验样机验证了所提拓扑的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Buck-Boost Converter with Integrated Solid-State Circuit Breaker
Both DC-DC converter and DC solid-state circuit breaker are very important to the reliability of DC microgrid. However, they will affect each other when cascading, resulting in the failure of circuit breaker, or magnifying voltage ripple of the input. In this paper, a proposed topology of DC converter with integrated solid-stat breaker is introduced to solve the problems above. It combines the inductor of Buck-Boost converter with mutual inductor to realize the function of fault isolation. Reuse of inductor not only ensures the performance of power conversion, but also reduces the volume of the system and retains low-pass filter characteristic. At first, the working principle of the proposed topology in steady-state and fault transient states is analyzed by using the state-space averaging modeling. Then the simulation model is built on Simulink, and verifies the theoretical derivation. Finally, the experimental prototype proves the proposed topology performance.
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