Modal-based voltage stability analysis of low frequency AC transmission systems

T. Ngo, S. Santoso
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引用次数: 5

Abstract

The low frequency AC (LFAC) transmission, in which a power system is operated at a low frequency, i.e., below 50/60 Hz, is superior to the conventional 60 Hz system in terms of power transfer capability. In addition, due to low operating frequency, the line reactance is reduced and thus voltage drops along the line are decreased. The low frequency transmission thus offers a higher voltage profile for a power system. In other words, an LFAC system can be more voltage stable in comparison to the conventional 60-Hz system. This paper intends to focus on the voltage stability of an LFAC system. The theoretical foundations of a two-bus system are first discussed based on eigenvalue. A modified stability index calculation is also introduced for low frequency transmission to estimate the system stability accurately. The simulation results from a practical system verify that the LFAC transmission has great benefits over the 60 Hz system in terms of power transfer capability and voltage stability.
基于模态的低频交流输电系统电压稳定性分析
低频交流(LFAC)传输是指电力系统以低于50/ 60hz的低频运行,其功率传输能力优于传统的60hz系统。此外,由于工作频率低,降低了线路电抗,从而降低了沿线路的电压降。因此,低频传输为电力系统提供了更高的电压分布。换句话说,与传统的60赫兹系统相比,LFAC系统可以具有更高的电压稳定性。本文主要研究LFAC系统的电压稳定性问题。首先讨论了基于特征值的双母线系统的理论基础。为了准确估计系统的稳定性,文中还引入了一种改进的低频传输稳定指数计算方法。实际系统的仿真结果验证了LFAC传输在功率传输能力和电压稳定性方面比60hz系统有很大的优势。
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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