Long-term voltage collapse analysis on a reduced order nordic system model

M. R. S. Tirtashi, O. Samuelsson, J. Svensson
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引用次数: 5

Abstract

This paper analyzes and explains the mechanism behind long-term voltage collapse in the NORDIC32 test system. For this purpose a simplified test system called N5area, reflecting the key voltage collapse characteristics of NORDIC32 is proposed. Applying control algorithms is much easier in N5area than in NORDIC32. Load recovery and generator excitation current limiter actions which are two important factors contributing to long-term voltage collapse are considered. Dynamic simulation results for a specified long-term voltage instability scenario are explained and discussed. The effect of generator current limiters is analyzed using PV curves. Furthermore, two different control strategies for controlling the shunt capacitors are applied as countermeasures to save the system. The two strategies are explained and compared and it is shown that control using the voltage at neighboring buses gives better performance.
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降阶北欧系统模型的长期电压崩溃分析
分析和解释了NORDIC32测试系统长期电压崩溃的机理。为此,提出了一个简化的N5area测试系统,反映了NORDIC32的关键电压崩溃特性。在n5区域应用控制算法要比在NORDIC32区域容易得多。考虑了负荷恢复和发电机励磁限流是导致电压长期崩溃的两个重要因素。对长期电压不稳定情况下的动态仿真结果进行了解释和讨论。利用PV曲线分析了发电机限流器的作用。此外,采用两种不同的控制策略对并联电容器进行控制,以保护系统。对这两种策略进行了解释和比较,结果表明,利用相邻母线的电压进行控制可以获得更好的性能。
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