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Right-Sized Power System Dynamic Equivalents for Power System Operation

机译:正确尺寸的电力系统动态等效值,用于电力系统运行

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In developing dynamic equivalents, the boundary between the study area and the external area is often demarcated on the basis of ownership considerations or geographic location. In an operations setting, when system conditions change, it might be necessary to adjust the existing boundary to accurately capture the dynamic characteristics of the system. This paper presents a systematic approach to predicting the changing patterns of generator slow coherency for different operating conditions and forming an appropriate study area boundary by including the critical generators in the external area that become strongly coherent with the study area. This approach is tested on a 5186-bus representation of a portion of the WECC system, and it has been shown that system topology changes have more influences on generator slow coherency behavior than load or generation changes. Test results also validate the efficacy of the developed procedure in determining the improved dynamic equivalents.
机译:在开发动态等效项时,通常根据所有权考虑因素或地理位置来划分研究区域和外部区域之间的边界。在操作设置中,当系统条件发生变化时,可能有必要调整现有边界以准确捕获系统的动态特性。本文提出了一种系统的方法,用于预测不同工况下发电机慢相干性的变化模式,并通过在外部区域包括与研究区域变得高度相干的关键发电机来形成适当的研究区域边界。该方法在WECC系统一部分的5186总线表示中进行了测试,结果表明,与负载或发电变化相比,系统拓扑变化对发电机慢相干性的影响更大。测试结果还证实了开发的程序在确定改进的动态等效值方面的功效。

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