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Decentralized DC Voltage and Power Sharing Control of the Parallel Grid Converters in Multi-Terminal DC Power Integration System

机译:多端子直流电源集成系统中并行电网转换器的分散式直流电压和功率共享控制

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摘要

A decentralized control scheme based on backstepping design is proposed in this paper for the grid converters of a multi-terminal dc power integration system. With the proposed method, dc bus voltage can be accurately maintained together by several converters through appropriately adjusting their transmitted power according to the power sharing ratio. The system structure is presented and its dynamic model is formulated. The decentralized control laws of the grid converters are developed step by step by designing appropriate Lyapunov functions. The dc bus voltage control and the power sharing performance of the proposed controlmethod are evaluated both under the system normal condition and converter fault condition. Finally, the effectiveness of the proposed scheme is validated through the real-time simulations on NI-PXI platform.
机译:针对多端子直流电源集成系统的电网变换器,提出了一种基于反推设计的分散控制方案。利用所提出的方法,通过根据功率共享比适当地调节其传输功率,可以由多个转换器将直流总线电压精确地保持在一起。给出了系统结构并建立了动态​​模型。通过设计适当的李雅普诺夫(Lyapunov)功能,逐步开发了电网转换器的分散控制律。在系统正常状态和变流器故障条件下,对所提出的控制方法的直流母线电压控制和功率共享性能进行了评估。最后,通过NI-PXI平台上的实时仿真验证了所提方案的有效性。

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