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Study of fault location effect on the inter-area oscillations in stressed power systems using modal series method

机译:应用模数级数方法研究故障定位对应力电力系统区域间振荡的影响

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摘要

Heavily loaded, stressed power systems exhibit complex dynamic behavior such as auto and hetero parametric resonances and inter-area oscillations when subjected to a disturbance. These behaviors cannot be analyzed by conventional linearization-based methods. Nonlinear tools, such as normal form and modal series methods can be utilized for studying and understanding these complex behaviors. In this paper, using modal series technique, the effect of fault location and duration on the dynamic performance of stressed power systems is investigated. Three indices are defined and used to explain the effect of different fault scenarios on the transient behaviors of the system. Also, a qualitative analysis of plant mode and inter-area mode type behaviors are presented and typical differences are highlighted. The numerical simulations on the IEEE 50-Generator test system demonstrate validity of the study carried out by modal series analysis.
机译:重载,压力大的电力系统在受到干扰时会表现出复杂的动态行为,例如自动和异质参数共振以及区域间振荡。这些行为无法通过常规的基于线性化的方法进行分析。非线性工具(例如标准形式和模态级数方法)可用于研究和理解这些复杂行为。本文采用模态串联技术,研究了故障位置和持续时间对应力电力系统动态性能的影响。定义了三个索引,并使用它们来解释不同故障场景对系统瞬态行为的影响。此外,提出了植物模式和区域间模式类型行为的定性分析,并突出了典型差异。 IEEE 50生成器测试系统上的数值模拟通过模态级数分析证明了该研究的有效性。

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