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Synchrophasor measurements based power system distributed dynamic state estimation

机译:基于同步相量测量的电力系统分布式动态状态估计

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With emerging synchronized phasor measurement technology, estimating dynamic state in real time (post fault) for the grid operation become feasible. However, PMU measurements undergo random errors and bad data unavoidably caused by the sensor errors, disturbances, etc. The traditional centralized state estimation methods for power system static state are not applicable for the electro-mechanical transient process. In this paper, a framework of power system dynamic state estimation (DSE) based on synchrophasor measurements is proposed, involving a separate DSE undertaken at each generator and substation level. Also, an approach of DSE for synchronous machines considering the governor regulation is proposed. The simulation result shows the increased accuracy of the dynamic generator state estimation considering speed governors and a better performance of the applied method for the overall system distributed state estimator.
机译:随着新兴的同步相量测量技术的出现,为电网运行实时估计动态状态(故障后)变得可行。但是,PMU测量不可避免地会受到传感器误差,干扰等因素的干扰而导致随机误差和不良数据。电力系统静态的传统集中状态估计方法不适用于机电瞬态过程。本文提出了一种基于同步相量测量的电力系统动态状态估计(DSE)框架,其中涉及在每个发电机和变电站级进行的单独DSE。此外,提出了一种考虑调速器调节的同步电机DSE方法。仿真结果表明,在考虑了速度调节器的情况下,动态发电机状态估计的精度提高了,并且所采用的方法对于整个系统的分布式状态估计器具有更好的性能。

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