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A Unified AC-MTDC Power-Flow Algorithm with IDCPFC

机译:具有IDCPFC的统一AC-MTDC潮流算法

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摘要

A unified power-flow algorithm of AC power systems integrated with multi-terminal high-voltage direct current (MTDC) grids incorporating the interline DC power-flow controller (IDCPFC) is presented in this paper. The MTDC grids are based on voltage-sourced converter (VSC) technology. Pulse-width modulation control is employed for the VSCs. As against most of the research works published in this area, in this algorithm, the VSC modulation indices are considered as unknowns. The IDCPFC considered for the power-flow management of the DC grid is a generalized one, with an arbitrary number of DC voltage sources. In the proposed model converter losses are also included. All case studies are carried out in MTDC grids embedded in the IEEE-300 bus test system. For all the case studies, the power-flow algorithms were implemented with MATLAB. In all occurrences, a mismatch error tolerance of 10(-10) p.u. was selected. Results obtained with case studies on AC-MTDC systems validate the proposed work.
机译:本文提出了一种交流电源系统的统一潮流算法,该算法集成了带有线间直流潮流控制器(IDCPFC)的多端子高压直流(MTDC)电网。 MTDC网格基于电压源转换器(VSC)技术。 VSC采用脉宽调制控制。与该领域发表的大多数研究工作相反,在该算法中,VSC调制指数被视为未知数。考虑用于DC电网功率流管理的IDCPFC是通用的IDCPFC,具有任意数量的DC电压源。在建议的模型中,转换器损耗也包括在内。所有案例研究都是在嵌入IEEE-300总线测试系统的MTDC网格中进行的。对于所有案例研究,均使用MATLAB实现了潮流算法。在所有情况下,失配误差容限均为10(-10)p.u。被选中。通过AC-MTDC系统的案例研究获得的结果验证了所建议的工作。

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