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Power system inertia estimation: Utilization of frequency and voltage response after a disturbance

机译:电力系统惯性估计:扰动后利用频率和电压响应

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Power system inertia is gradually being reduced due to the ongoing replacement of conventional synchronous power plants by intermittent generation. This affects the frequency response of the system and necessitates the estimation of power system inertia, so that sufficient power reserves are retained. This paper contributes with a novel disturbance-based inertia estimation method, that simultaneously estimates the power change after a disturbance. The proposed method accommodates the frequency and voltage dynamics, which significantly affect the system's power change, and hence the inertia estimation. Two separate approaches - that are also capable of standing alone - are combined, in order to accommodate the dynamics. An extended version of the Nordic32 test system is used for the application of the method, where several case studies and a comparison are investigated, so as to examine the method's accuracy and robustness. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于通过间歇性发电不断替换传统的同步发电厂,电力系统的惯性正在逐渐降低。这会影响系统的频率响应,并有必要估算电力系统的惯性,以便保留足够的电力储备。本文提出了一种新颖的基于扰动的惯性估计方法,该方法可以同时估计扰动后的功率变化。所提出的方法适应了频率和电压动态变化,这会严重影响系统的功率变化,从而影响惯性估计。为了适应动态变化,将两种独立的方法(也可以单独站立)组合在一起。该方法的应用程序使用了扩展版本的Nordic32测试系统,其中对几个案例研究和比较进行了研究,以检验该方法的准确性和鲁棒性。 (C)2018 Elsevier B.V.保留所有权利。

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