一种新的电力系统动态频率估计算法

R. Mai, Z.Y. He, B. Kirby
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引用次数: 3

摘要

电力系统中电压信号的频率是反映整个系统运行状态的关键参数。因此,需要一种新的算法在稳态和动态条件下获得更准确的频率估计,以便于广域控制等高层次应用,使电力系统健康运行。通过泰勒展开提出了一种动态调制信号模型来近似动态电压信号。由连续相量表示的泰勒扩张导数用来描述动态行为,然后用来修正调制信号的相量估计。基于相量的测频技术可以利用修正相量来计算信号的频率。最后利用频率导数对频率进行修正,得到报告时的准确频率估计。理论分析和仿真结果表明,该算法在动态条件下的性能明显优于传统的基于相量的频率测量技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel dynamic frequency estimation algorithm in power system
Frequency of voltage signals in power system is a key parameter to reflect the operational state of the whole system. Therefore, a new algorithm is needed to attain a more accurate frequency estimation in both steady state and dynamic conditions, for high level application such as wide area control that let the power system operate in a healthy manner. A dynamic modulation signal model is proposed via Taylor expansion to approximate dynamic voltage signals. The Taylor expansionpsilas derivatives, expressed by consecutive phasors, are to characterize the dynamic behaviour and then be used to revise the phasorspsila estimations of the modulation signal. Revised phasors can be employed to calculate the frequency of the signal based on phasor based frequency measurement technique. Finally the frequency estimation at the report time can be acquired accurately by modifying the frequency using the frequency derivative. Theoretic analysis and simulation allow us to conclude that performance of the algorithm proposed in this paper is much better than traditional phasor-based frequency measurement techniques in dynamic conditions.
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