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Analysis and Control of a Four-Port Megawatt-Level High-Frequency-Bus-Based Power Electronic Transformer

机译:四端口兆瓦级高频总线电力电子变压器的分析与控制

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摘要

Aiming for mutual isolation between ports, this article proposes a four-port high-frequency-bus-based power electronic transformer (HFB-PET), the core of which is the modular multiactive bridge (MMAB). In addition to port isolation, it also has the advantages of modularity, scalability, and reduced power conversion stages. First, the configuration of the proposed PET is introduced and compared with the existing solutions. Then, based on the mathematical model, a power coordinated control scheme is presented, including the power decoupling control for the cascaded H-bridge converter of the medium-voltage ac port to handle unbalanced grid voltages and active loads, the cell-power balance control for the medium-voltage dc port to achieve dc-link voltage equalization, and the power cross-coupling suppression control employed to improve the dynamic performance of the MMAB. On top of that, a hierarchical control framework with the global synchronous clock is constructed. Besides, a soft startup scheme considering the power balance between cells is introduced. Finally, the effectiveness of the proposed control scheme under the bidirectional power flow for the dc ports and the four-quadrant power flow for the ac ports is verified by experiments conducted on the laboratory scale-down prototype and the 10 kV/2 MVA industrial prototype.
机译:旨在在港口之间的相互隔离,本文提出了一种基于四端口的高频总线的电力电子变压器(HFB-PET),其核心是模块化多功能桥(MMAB)。除了端口隔离之外,它还具有模块化,可伸缩性和降低功率转换阶段的优点。首先,引入所提出的PET的配置并与现有解决方案进行比较。然后,基于数学模型,提出了一种功率协调控制方案,包括用于处理不平衡的电流电压和有源负载的级联H桥转换器的功率解耦控制,该电池平衡控制对于实现DC-LINK电压均衡的中电压DC端口,以及用于改善MMAB的动态性能的功率交叉耦合抑制控制。首先,构造了具有全局同步时钟的分层控制框架。此外,介绍了考虑电池之间的功率平衡的软启动方案。最后,通过在实验室缩放原型和10kV / 2 MVA工业原型上进行的实验,通过实验和10kV / 2 MVA工业原型进行了对AC端口的双向电流和AC端口的四象限电流的所提出控制方案的有效性。

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