The Inclusion of HVDC Control Modes in a Three-Phase Newton-Raphson Power Flow Algorithm

F. Coffele, R. Garcia-Valle, E. Acha
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引用次数: 8

Abstract

A three-phase Newton-Raphson power flow algorithm with conventional HVDC power plant modelling is presented in this paper. Emphasis is placed on the representation of converter control modes. The solution approach takes advantage of the strong numerical convergence afforded by the Newton-Raphson method in polar coordinates to yield reliable numerical solutions for combined HVAC-HVDC systems, where power plant and operational imbalances are explicitly taken into account. Although well-developed algorithms exist for solving fundamental frequency, three-phase power flows or combined power flows/harmonic currents, no HVDC converter control mode representation appears to have been addressed in the numerically reliable three-phase Newton-Raphson method. Two test cases are solved, one corresponding to a small system to enable reproduction of results by interested readers and the other is a large system containing several HVDC links and operational control modes.
在三相牛顿-拉夫逊潮流算法中包含高压直流控制模式
本文提出了一种基于传统直流电厂模型的三相牛顿-拉夫逊潮流算法。重点放在转换器控制模式的表示上。求解方法利用牛顿-拉夫森方法在极坐标下提供的强数值收敛性,为HVAC-HVDC组合系统提供可靠的数值解,其中发电厂和运行不平衡被明确考虑在内。尽管存在求解基频、三相潮流或组合潮流/谐波电流的成熟算法,但在数值可靠的三相牛顿-拉夫森方法中似乎没有解决HVDC转换器控制模式的表示。解决了两个测试用例,一个对应于一个小系统,使感兴趣的读者能够复制结果,另一个是一个包含几个HVDC链路和操作控制模式的大系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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