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A Sequential AC/DC Power Flow Algorithm for Networks Containing Multi-terminal VSC HVDC Systems

机译:包含多端VSC HVDC系统的网络的顺序AC / DC潮流算法

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摘要

In this paper, a sequential AC/DC power flow algorithm is proposed to solve networks containing Multi-terminal Voltage Source Converter High Voltage Direct Current (VSC MTDC) systems. In VSC HVDC technology, the converter losses add up to a significant fraction of the overall system losses. However, they are often neglected or not taken into account in a proper manner in VSC HVDC power flows. The algorithm put forward in this paper takes the converter losses into account using a generalized converter loss model. The converter steady state equations are derived in their most general format, with the AC network power injections as controlled quantities. It is shown that correctly defining the power setpoints with respect to the system bus instead of the converter bus, as is often done to simplify calculations, requires additional iterative calculations. The DC system modelling method proposed in this paper does not impose any restriction on the HVDC grid topology. A VSC MTDC power flow solver is incorporated into MATPOWER to show the validity of the proposed algorithm.
机译:本文提出了一种顺序AC / DC潮流算法,以解决包含多端子电压源转换器高压直流(VSC MTDC)系统的网络。在VSC HVDC技术中,转换器损耗加起来占整个系统损耗的很大一部分。但是,在VSC HVDC功率流中,通常以适当的方式忽略或不考虑它们。本文提出的算法使用广义转换器损耗模型考虑了转换器损耗。转换器稳态方程式以其最通用的格式导出,交流网络功率注入为受控量。结果表明,正确定义相对于系统总线而不是转换器总线的功率设定点(通常是为了简化计算),需要进行附加的迭代计算。本文提出的直流系统建模方法对HVDC电网拓扑没有任何限制。将VSC MTDC潮流求解器合并到MATPOWER中,以证明所提出算法的有效性。

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