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Secure Loss of Excitation Detection Method for Synchronous Generators During Power Swing Conditions

机译:功率摆幅条件下同步发电机励磁损失的安全检测方法

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摘要

Conventional loss of excitation (LOE) detection methods for synchronous generators may misoperate during power swings. In this paper, a novel method based on measured slip frequency at the terminal of synchronous generators is proposed to differentiate power swing conditions from LOE conditions. To enhance performance of the proposed method for noisy measured signals, a modified Prony method based on a combination of generalized total least-squares method and conventional Prony method is implemented to estimate slip frequency and an energy sorting technique is applied to distinguish the dominant frequency components of measured signals. Performance of the proposed method is evaluated under various operating conditions of a test system that is simulated in a co-simulation platform by linking CAPE and PSS/E software. Case study results illustrate that the proposed method can accurately differentiate power swing conditions from LOE conditions.
机译:同步发电机的常规励磁损失(LOE)检测方法在功率摆幅期间可能会失灵。本文提出了一种基于同步发电机终端测得的滑差频率的新方法,以区分功率摆幅条件和LOE条件。为了增强所提出的方法对噪声测量信号的性能,基于广义总最小二乘法和常规Prony方法的组合,采用改进的Prony方法来估计滑差频率,并应用能量分类技术来区分主导频率分量的测量信号。通过链接CAPE和PSS / E软件,在协同仿真平台中对测试系统进行仿真的各种测试条件下,对所提出方法的性能进行了评估。案例研究结果表明,该方法可以准确地区分功率摆幅条件和LOE条件。

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