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High Performance Flexible Structure Three-Level DC-DC Converter: A Candidate DC Interface for Microgrids With Distributed Energy Resources

机译:高性能柔性结构三级DC-DC转换器:具有分布式能源的微电网的候选DC接口

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High-performance DC interfaces play a pivotal role in microgrids with distributed energy resources (DERs), which would significantly improve the utilization of DERs and the flexibility of the prosumers. For a candidate DC interface converter, how to maintain the performance over a wide operation range becomes the biggest challenge. This paper proposes a flexible structure soft-switching three-level (TL) dc-dc converter, which adds four high-speed MOSFETs and one low-speed electronic relay to achieve overall optimum performance over a wide range. Under high output or low input voltage conditions, the relay and the extra MOSFETs on the primary side are ON permanently. The proposed converter is a zero-voltage switching (ZVS) converter, which guarantees ZVS for all primary switches even under 0 load currents. Under low output or high input voltage conditions, the relay and the extra MOSFETs in the secondary side are OFF permanently. The proposed converter is a zero-voltage and zero-current switching (ZVZCS) converter, and two added MOSFETs provide ZVZCS operation not only for the main primary switches but also themselves over a wide range. Other advantages of the presented converter include reduced filter size, no primary side circulating currents, and reduced current stress of the clamping capacitor. Besides, the switching loss caused by the added power devices is low because of the full range of soft-switching operation and low on-state resistance of these devices. This paper discusses the circuit configuration, operation principle, soft switching characteristics, technical comparison, and experimental results from a 1-kW prototype prove the rightness of the presented converter.
机译:高性能直流界面在微电网中发挥关键作用,具有分布式能源资源(DERS),这将显着提高小孩的利用以及制度的灵活性。对于候选DC接口转换器,如何在宽阔的操作范围内保持性能成为最大的挑战。本文提出了一种灵活的结构软开关三级(TL)DC-DC转换器,它增加了四个高速MOSFET和一个低速电子继电器,以实现宽范围内的全面最佳性能。在高输出或低输入电压条件下,继电器和初级侧的额外MOSFET永久性。所提出的转换器是一个零电压开关(ZVS)转换器,它即使在0负载电流下也可以保证所有主要开关的ZV。在低输出或高输入电压条件下,继电器和次级侧的额外MOSFET永久性。所提出的转换器是零电压和零电流切换(ZVZCS)转换器,两个添加的MOSFET不仅为主初级开关提供ZVZCS操作,而且还提供了宽范围内的自身。所示转换器的其他优点包括减小的滤波器尺寸,没有初级侧循环电流,以及夹紧电容器的降低的电流应力。此外,由于这些器件的全范围的软切换操作和低导通电阻,所添加的功率器件引起的开关损耗很低。本文讨论了1 kW原型的电路配置,操作原理,软切换特性,技术比较和实验结果证明了所提出的转换器的正确性。

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