一种测量电力系统稳定器区域间阻尼贡献的技术

K. Bollinger
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引用次数: 1

摘要

概述了由蒸汽和水力机组组成的电力池之间区域间振荡的一些潜在原因,并描述了有助于设计控制器以改善该问题的测量技术。电力系统的轻阻尼振荡问题是加拿大和美国公用事业公司感兴趣的问题,因为一些地区的区域间振荡意味着大型互连输电线路的电力传输降率。仿真研究、特征值分析和状态空间技术、现场传递函数测量和控制器设计以及其他分析和设计方法已应用于设计电力系统稳定器(pss)以抑制这些振荡的各种方法。设计和测试阻尼区间振荡控制策略的困难之一是测量在特定发电机上被测试的控制策略的相对区间阻尼贡献。综述了产生负阻尼的因素,以及电力系统稳定器的调谐策略。概述了在现场测试中评估pss阻尼贡献的一种方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A technique for measuring inter-area damping contributions from power system stabilizers
Some underlying causes of interarea oscillations between power pools consisting of steam and hydro units are outlined, and measurement techniques that facilitate the design of controllers to ameliorate the problem are described. The problem of lightly dampled oscillations on power systems is of interest to utilities in Canada and the US since interarea oscillations in some regions have meant derated power transfer on large interconnecting transmission lines. Simulation studies, eigenvalue analysis and state-space techniques, on-site transfer function measurement and controller design, and other analysis and design approaches have been applied in various approaches to designing power system stabilizers (PSSs) to damp these oscillations. One of the difficulties in designing and testing control strategies for damping interarea oscillations is measuring the relative interarea damping contribution from the control strategy being tested at a particular generator. Factors contributing to negative damping are reviewed, along with power system stabilizer tuning strategies. One approach to assessing damping contributions from PSSs during on-site testing is outlined.<>
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