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A Fixed Length Adaptive Moving Average Filter-Based Synchrophasor Measurement Algorithm for P Class PMUs

机译:一种固定长度自适应移动平均滤波器的P类PMU的同步性增量测量算法

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摘要

Accurate and fast synchrophasor measurement is the key to the wide applications of PMUs in the system-wide monitoring and reliable operation of smart grid. To address this issue, a fixed length moving average filter-based synchrophasor measurement algorithm for P class phasor measurement units (PMUs) (FA-PSMA) is proposed in this paper. Firstly, a novel fixed length adaptive moving average filter (FAMAF) is proposed. The FAMAF has an adaptive filter capability with a fixed data window length. Then, the FAMAF is applied after a phase-locked loop (PLL) for enhanced disturbance rejection capability under frequency drifts. Finally, a detailed performance assessment is presented to validate the performance of the proposed FA-PSMA. Theoretical analysis and simulation results validate that the proposed FA-PSMA can track the grid frequency and phasor accurately under distorted grid conditions. The response time and measurement accuracy satisfy the requirements specified in IEC/IEEE 60255-118-1.
机译:准确和快速的同步性测量是PMU在系统范围内的广泛应用的关键,智能电网的系统范围内和可靠运行。为了解决这个问题,本文提出了一种用于P类Phasor测量单元(PMU)(FA-PSMA)的固定长度移动平均滤波器的同步滤波器测量算法。首先,提出了一种新的固定长度自适应移动平均滤波器(FAMAF)。 FAMAF具有自适应滤波功能,具有固定的数据窗口长度。然后,在锁相环(PLL)之后施加FAMAF,用于增强频率漂移下的扰动抑制能力。最后,提出了详细的性能评估,以验证提出的FA-PSMA的表现。理论分析和仿真结果验证了所提出的FA-PSMA可以在扭曲的网格条件下准确地跟踪电网频率和量程。响应时间和测量精度满足IEC / IEEE 60255-118-1中规定的要求。

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