考虑不同负荷模式的长海缆大电网岛网电压稳定性研究

Chih-Ju Chou, Chia-Yu Han, Yuan-Kang Wu, Ching-Yin Lee
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引用次数: 3

摘要

研究了不同负载模式下的电压响应特性。分析了有载分接开关(OLTC)、过励磁限制器(OLE)和高压直流(HVDC)链路对电压稳定性的影响。其中,将高压直流链路的变换器末端视为稳态下的恒实负荷和无功负荷,研究了高压直流控制方式对电压稳定性的影响。本文研究了一个实际的大电网(台湾电网)与小岛屿电网(澎湖电网)通过两个长海底电缆回路连接的系统。提出了无功支持和欠压减载(UVLS)等提高电压稳定性的策略。仿真结果表明,不同负载模式对电压响应特性有显著影响。OLTC在负载电压恢复过程中起着重要的作用。无功支撑装置和UVLS可以提高短期电压稳定性,使电力系统实现电压稳定运行。然而,在高压直流并网运行下,OLTC与OEL之间的相互作用会导致电力系统电压不稳定。高压直流线路恒流控制方式对电压稳定效果较好。所有这些研究都是通过软件包进行的,即电力系统工程仿真(PSS/E)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on voltage stability of island grid supplied by large grid with long submarine cables considering different load patterns
The voltage response characteristics considered different load patterns are studied in the paper. The effects of on-load tap changer (OLTC), over-excitation limiter (OLE), and high voltage direct current (HVDC) link on voltage stability are also analyzed. In which, the converter terminals of HVDC link are considered as a constant real and reactive power load under steady state and the effects of HVDC control modes on voltage stability are also studied. A practical system of larger grid (Taiwan grid) connecting to a smaller island grid (Peng-Hu grid) via two circuits of long submarine cables is used to study. The strategies for improving voltage stability include reactive power support and under-voltage load shedding (UVLS) are proposed. Based on the simulation results, it shows that the voltage response characteristics are affected significantly by different load patterns. The OLTC plays an important role during the load voltage restoration. The reactive power support devices and UVLS can improve the short-term voltage stability, which makes the power system achieve voltage stability operation. However, the interactions between OLTC and OEL under HVDC link connected operation would lead the power system to voltage instability. The constant current control mode of HVDC link has better effect on voltage stability. All of these studies are performed by software package, namely power system simulation for engineering (PSS/E) in this paper.
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