电力系统中基于动态相量法的频率估计算法

Cheol-Hun Kim, Sang-Hee Kang
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引用次数: 3

摘要

本文提出了一种新的基于动态相量法的频率估计算法,以提高变包络信号的估计精度。该算法包括相量估计和频率估计两个阶段。首先,采用动态相量法将输入信号分解为两个分量。然后,将这两个分量组合起来估计频率。为了评估该算法的性能,在生成测试信号时考虑了幅度变化和频率变化。在单机电力系统的动态条件下,对算法的性能进行了评价。电磁瞬变程序用于产生负载增加和单相接地故障的电压信号。性能评估表明,该算法能准确地估计出存在调幅和频率变化的电力系统信号的基频。仿真结果表明,该算法具有较低的频率估计误差。改进后的算法有望提高故障条件下测量的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency estimation algorithm based on dynamic phasor method in a power system
In this paper, a new frequency estimation algorithm based on the dynamic phasor method is proposed to increase the estimation accuracy for a signal having a varying envelope. The proposed algorithm consists of two stages: phasor estimation and frequency estimation. First, the input signal is decomposed into two components using the dynamic phasor method. Then, the two components are combined to estimate the frequency. To evaluate the performance of the proposed algorithm, amplitude change and frequency change are considered for generating test signals. The performance of the algorithm is also assessed for dynamic conditions in a single machine power system. The Electromagnetic Transients Program was used to generate voltage signals for a load increase and single phase-to-ground faults. The performance evaluation showed that the proposed algorithm accurately estimated the fundamental frequency of power system signals in the presence of amplitude modulation and frequency change. When compared with other algorithms, simulation results show that the proposed algorithm has lower frequency estimation error. Improved algorithm is expected to increase the reliability of the measurement under fault conditions.
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