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Interactions between, and effectiveness of, power system stabilizers and FACTS device stabilizers in multimachine systems

机译:多机系统中的电源系统稳定器和FACTS设备稳定器之间的相互作用和有效性

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摘要

In this paper it is shown that interactions occur between stabilizers in multimachine power systems, the stabilizers being power system stabilizers (PSSs), FACTS device stabilizers (FDSs) or both. The interactions, which are identified and quantified, may enhance or degrade the damping of certain modes of rotor oscillation. In particular, interactions between PSSs are found to adversely affect the damping of inter-area modes. The analysis of interactions also provides a practical means for quantifying and assessing simultaneously the relative effectiveness of both PSSs and FDS in damping the rotor modes of oscillation. This is achieved using a stabilizer damping contribution diagram. A theoretical basis is given for the analysis of interactions and the effectiveness of stabilizers; the practical significance and applications are illustrated using a case study on a 3-area, 400 state system having 28 generator groups and a number of FDSs. For systems of more than 600-700 states the modified Arnoldi method is used for eigenanalysis-based calculations.
机译:本文表明,多机电力系统中的稳定器之间会发生相互作用,这些稳定器是电力系统稳定器(PSS),FACTS设备稳定器(FDS)或两者。识别和量化的相互作用可能会增强或降低某些形式的转子振荡的阻尼。特别地,发现PSS之间的相互作用不利地影响区域间模式的阻尼。相互作用的分析还提供了一种实用的方法,可以同时量化和评估PSS和FDS在阻尼转子振荡模式方面的相对有效性。这可以通过使用稳定器阻尼贡献图来实现。为分析相互作用和稳定剂的有效性提供了理论基础;通过对一个具有28个发电机组和多个FDS的3区域400状态系统的案例研究,说明了实际意义和应用。对于超过600-700个州的系统,改进的Arnoldi方法用于基于特征分析的计算。

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