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Active Power Imbalance Detection, Size and Location Estimation Using Limited PMU Measurements

机译:使用有限的PMU测量来进行有功功率不平衡检测,尺寸和位置估计

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Reduced system inertia decreases the time available for control actions to prevent the system frequency from violating security limits after a disturbance. Therefore, as system inertia is reduced by the shift toward renewable generation that provides little or no inertia, system operators must deploy faster frequency control actions if they are to preserve security and quality of supply. Realising methods for the fast and accurate detection, localization and sizing of an active power disturbance (e.g., the loss/connection of a large generator or load) will be a crucial enabler for the successful implementation of these faster actions. This paper presents a novel method that can simultaneously estimate the time, size, and location of a disturbance using PMU measurements of the active power output of a limited number of generators and the impedance matrix of the system. The immediate power change at the remote generator terminals is combined with the synchronizing power coefficient matrix in a two-stage process. Stage one uses a decision tree to determine that a disturbance has occurred, which then initiates stage two that estimates the size and location of the disturbance. This is based on the level of agreement between the monitored generators. Case studies and sensitivity analysis for the IEEE 39 bus test network are presented to verify the accuracy of the proposed method for varied levels of measurement noise, impedance matrix errors, and topology errors for various disturbance sizes and locations.
机译:减小的系统惯性可减少控制动作的时间,以防止系统频率在受到干扰后违反安全限制。因此,由于通过向提供很少或根本没有惯性的可再生发电的转变减少了系统惯性,因此,为了维护安全性和供电质量,系统运营商必须采取更快的频率控制措施。快速有效地检测,定位和确定有功功率干扰(例如,大型发电机或负载的损失/连接)的实现方法将是成功实施这些更快的措施的关键推动力。本文提出了一种新颖的方法,该方法可以使用有限数量的发电机的有功功率输出的PMU测量值和系统的阻抗矩阵,同时估算干扰的时间,大小和位置。在两阶段过程中,远程发电机终端处的即时功率变化与同步功率系数矩阵组合在一起。第一阶段使用决策树确定是否发生了干扰,然后启动第二阶段来估计干扰的大小和位置。这基于受监视的生成器之间的协议级别。提出了针对IEEE 39总线测试网络的案例研究和灵敏度分析,以验证所提出方法在各种级别的干扰和大小的测量噪声,阻抗矩阵误差和拓扑误差中的准确性。

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