Damping subsynchronous resonance using a novel excitation controller

A. Ghorbani, M. Hasanzadeh, S. Pourmohammad, M. Ahadi
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引用次数: 2

Abstract

A novel supplementary subsynchronous damping controller (SSDC) is proposed for the generator excitation system which is capable of damping out subsynchronous oscillations in power systems with series compensated transmission lines. The offered SSDC uses a filtered feedback from generator acceleration power signal and after passing through a proportional gain it is added to automatic voltage regulator (AVR) output. Two filters are used and the cut off frequencies are specified intelligently in order to affect only the modes that are critical to damping capability of the system. The IEEE Second Benchmark problem is considered as the studying system. The simulation results proved that the designed controller can be successfully used in damping the oscillations for the all series compensation ratios even when small and large disturbances influence the system. Simplicity, practicality and high performance of the offered controller are other advantages of the proposed controller.
用一种新型励磁控制器抑制次同步谐振
提出了一种新的辅助次同步阻尼控制器(SSDC),用于发电机励磁系统中串联补偿输电线路的次同步振荡。所提供的SSDC使用来自发电机加速功率信号的滤波反馈,并在通过比例增益后添加到自动电压调节器(AVR)输出。采用两个滤波器,并智能地指定截止频率,以便只影响对系统阻尼能力至关重要的模态。以IEEE第二基准问题为研究对象。仿真结果表明,所设计的控制器能够有效地抑制各补偿比的振荡,即使系统受到大小扰动的影响。该控制器的其他优点是简单、实用和高性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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