首页> 外文会议>International Universities Power Engineering Conference >OPTIMAL ALLOCATION AND DESIGN OF POWER SYSTEM STABILIZERS FOR ENHANCING THE DAMPING OF INTER-AREA OSCILLATIONS IN JAPANESE EASTERN INTERCONNECTED POWER SYSTEM
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OPTIMAL ALLOCATION AND DESIGN OF POWER SYSTEM STABILIZERS FOR ENHANCING THE DAMPING OF INTER-AREA OSCILLATIONS IN JAPANESE EASTERN INTERCONNECTED POWER SYSTEM

机译:电力系统稳定器的最优分配与设计,用于增强日本东方互连电力系统区域区间振荡的阻尼

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摘要

Large extended power systems are often characterized by inter-area oscillations, usually spontaneous, which may be caused by small disturbances such as changes in load that take place continually. Inter-area oscillations have been the subject for studies in fields of operation, control, and devices by many power system utilities in Japan. Power system stabilizers (PSSs) are very effective controllers in enhancing the damping of low-frequency oscillations, since the controllers can increase damping torque for inter area modes by introducing additional signals into the excitation controllers already equipped with generators. In this paper, allocation of PSSs has been determined by an eigenvalue analysis, and PSSs for the allocated generators have been designed by a frequency response method. The designed PSSs have been verified in a Japanese power system standard model.
机译:大扩展电力系统通常是面积间振荡的特征,通常是自发的,这可能是由诸如连续发生的负荷变化的小扰动引起的。区域间振荡是在日本许多电力系统公用事业的运营,控制和设备领域研究的主题。电力系统稳定器(PSS)是非常有效的控制器,用于增强低频振荡的阻尼,因为控制器通过将额外的信号引入已经配备有发电机的激励控制器的额外信号来增加互地化模式的阻尼扭矩。在本文中,PSS的分配已经通过特征值分析确定,并且通过频率响应法设计了用于分配的发电机的PSS。设计的PSS已经在日本电力系统标准模型中验证。

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