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Allocation and design of power system stabilizers for mitigating low-frequency oscillations in the eastern interconnected power system in Japan

机译:减轻日本东部互连电力系统中低频振荡的电力系统稳定器的分配和设计

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摘要

Low-frequency oscillations have been observed on trunk transmission systems in Japan, and have been the subject for studies in fields of operation, control, and devices by the many power system utilities. 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 in an interconnected power system with inter area modes 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. This test system is created as a standard model based on the trunk transmission systems in the eastern area of Japan, and reflects characteristic features of the real power systems; therefore, realistic allocation and design for enhancement of the stability of low-frequency oscillations have been verified.
机译:在日本的干线传输系统中已经观察到低频振荡,并且它已成为许多电力系统公用事业公司在操作,控制和设备领域进行研究的主题。电力系统稳定器(PSS)是增强低频振荡阻尼的非常有效的控制器,因为该控制器可以通过将附加信号引入已经配备发电机的励磁控制器来提高区域间模式的阻尼转矩。在本文中,通过特征值分析确定了具有区域间模式的互连电力系统中PSS的分配,并通过频率响应方法设计了用于分配发电机的PSS。设计的PSS已通过日本电力系统标准模型验证。该测试系统是基于日本东部地区的干线传输系统创建的标准模型,反映了实际电力系统的特征;因此,已经验证了用于增强低频振荡稳定性的实际分配和设计。

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