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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >A Cascaded Converter Interfacing Long-Distance HVdc and Back-to-Back HVdc Systems
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A Cascaded Converter Interfacing Long-Distance HVdc and Back-to-Back HVdc Systems

机译:级联转换器接口长距离HVDC和背靠背HVDC系统

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摘要

This paper proposes a cascaded converter dedicated to a long-distance high-voltage direct current (HVdc) infeed and asynchronous back-to-back interconnection of receiving grids. The cascaded converter consisted of modular multilevel converters (MMCs) in series and parallel connection, meeting the high dc voltage and power demand of the HVdc system. It realizes the hierarchical feeding and asynchronous interconnection of receiving grids, optimizing the multi-infeed short-circuit ratio (MISCR) and improving the flexibility of the receiving grids. The topology and operating characteristics of the cascaded converter are introduced in detail. The MISCR and the maximum power infeed of the cascaded converter-based HVdc systems are analyzed. Various feasible operating modes with online switching strategies of the cascaded converter are studied to improve the operational flexibility of the system. The simulation results verify the effectiveness of the control strategy of the HVdc system embedding the cascaded converter. The dc faults clearing strategy and operating modes switching strategies are also validated.
机译:本文提出了一种专用于远程高压直流(HVDC)的级联转换器进给和接收网格的异步背对背互连。级联转换器由模块化多级转换器(MMC)组成,串联和并联连接,满足HVDC系统的高直流电压和电源需求。它实现了接收网格的分层馈电和异步互连,优化多送滤网的短路比(MISCR)并提高接收网格的灵活性。级联转换器的拓扑和操作特性详细介绍。分析了杂波和基于级联转换器的HVDC系统的最大功率进给。研究了具有级联转换器的在线交换策略的各种可行的操作模式,以提高系统的操作灵活性。仿真结果验证了嵌入级联转换器的HVDC系统控制策略的有效性。还验证了DC故障清算策略和操作模式切换策略。

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