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Area-Based COI-Referred Rotor Angle Index for Transient Stability Assessment and Control of Power Systems

机译:电力系统暂态稳定评估和控制的基于区域的COI基准转子角索引

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This paper describes an index for judging the severity of transient events of power systems in simulation. The proposed transient stability index, known as the area-based COI-referred rotor angle index, is developed by considering the fact that a large-sized power system is divided into several areas according to the coherency of generators in a particular area. It can be assumed that an equivalent single large machine can represent all the generators in that area. Thus, the assessment of rotor angles for all generators can be simplified by only assessing the index of areas in a power system. The effectiveness of the proposed index in assessing the stability of power systems and its ability in pinpointing the weakest area in the power system is analyzed. Furthermore, this paper developed an emergency control scheme known as the combined UFLS and generator tripping in order to stabilize the system when unstable faults occurred in a power system. The proposed index is used to identify the generator to be tripped when the developed emergency control scheme operates. The performance of the proposed index and the combined UFLS and generator tripping scheme are evaluated on the IEEE 39-bus test system.
机译:本文介绍了一种用于评估仿真中电力系统暂态事件严重性的指标。考虑到大型电力系统会根据特定区域内发电机的相干性分为几个区域,因此提出了拟议的暂态稳定度指数,即基于区域COI的转子角指数。可以假设等效的单个大型机器可以代表该区域中的所有发电机。因此,仅通过评估电力系统中的面积指数就可以简化对所有发电机的转子角的评估。分析了所提出的指标在评估电力系统稳定性方面的有效性及其确定电力系统中最薄弱区域的能力。此外,本文还开发了一种紧急控制方案,称为UFLS和发电机跳闸相结合,以在电力系统发生不稳定故障时稳定系统。当开发的应急控制方案运行时,建议的索引用于识别要跳闸的发电机。在IEEE 39总线测试系统上评估了拟议指标的性能以及UFLS和发电机跳闸方案的组合。

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