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Estimation of Power System Inertia From Ambient Wide Area Measurements

机译:从环境广域测量估算电力系统惯量

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摘要

This study presents a method of estimating the effective inertia of a power system from ambient frequency and active power signals measured by phasor measurement units. Most importantly, we demonstrate that inertia can be estimated from ambient measurement data, not only from disturbances. This leads to the possibility of monitoring inertia in a close to continuous manner in the time scale of minutes or tens of minutes. The method allows the system to be divided into a number of areas and the effective inertia of each area to be estimated as a separate quantity. In principle, inertia is estimated by observing the dynamics between changes in active power and resulting frequency deviations during normal operation of the system. The method is based on applying system identification on these measurements and extracting inertia values from identified models. Efficacy of the method is demonstrated on results of real measurements from the Icelandic power system.
机译:这项研究提出了一种根据环境频率和相量测量单元测得的有功功率信号估算电力系统有效惯量的方法。最重要的是,我们证明了可以从环境测量数据中估计惯性,而不仅仅是从干扰中进行估计。这导致可能在几分钟或几十分钟的时间范围内以接近连续的方式监视惯性。该方法允许将系统划分为多个区域,并将每个区域的有效惯性估计为单独的数量。原则上,通过观察系统正常运行期间有功功率变化与频率偏差之间的动态来估算惯性。该方法基于对这些测量值应用系统识别,并从识别的模型中提取惯性值。冰岛电力系统的实际测量结果证明了该方法的有效性。

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