基于SMIB模型和相位补偿技术的东印度径向连接水电站PSS调谐

Saibal Ghosh
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摘要

电力系统经常受到较大的干扰,如负荷损失、输电线路损失和大型发电机组损失。目前,大型电力系统运行面临的主要挑战是在这些扰动发生后,使所有发电机同步运行。通常在较大的扰动后,不同的发电机对扰动的响应不同,出现了发电机之间的低频振荡。水力发电厂通常位于非常偏远的丘陵地区,并通过长径向输电线路与电网相连。小的信号稳定性问题有时会在一些干扰或系统大范围的区域间振荡中被触发。本文对装机容量为3X170 MW的锡金“a”电站进行了研究。发电站通过两条400千伏的双驼鹿线连接到一个汇集站的电网。机器目前配备静态励磁和一个简单的电力系统稳定器模型在现场。而励磁系统也有激活复合稳定器模型的规定。通过对印度电网过去各种干扰和低频事件的分析,发现上述发电机对局部和区域间振荡的阻尼性能较差,对所有模态的阻尼都在0 ~ 7%之间。本文旨在将振荡阻尼提高到15-25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PSS Tuning of a Radially Connected Hydro Power Plant of Eastern India Using SMIB Model and Phase Compensation Technique
Power systems are very often exposed to large disturbances such as loss of load, loss of transmission lines, and loss of large generating units. Now the main challenge in operating large power system is that running all the generators synchronously even after these disturbances. Generally following a large disturbance different generators respond differently to the disturbance and low frequency oscillation among the generators comes into the picture. Hydro power plants are generally located to very remote hilly area and connected to the electrical grid via long radial transmission lines. Small signal stability issue is sometimes get triggered following some disturbance or during system wide inter-area oscillation. In this paper a radially connected hydro generating station “A” of Sikkim having 3X170 MW installed capacity is studied. Generating station is connected to the grid at a pooling station via two 400 kV twin moose lines. Machine is currently equipped with static excitation and one simple Power system stabilizer model at the site. However excitation system has the provision of activating complex stabilizer model also. Analyzing various past disturbances and low frequency events in the Indian power grid it is found that the performance of the above mentioned generators in damping the local and inter-area oscillation is poor and ranges between 0 to 7 % damping for all the modes. This paper aims at improving the damping of oscillation to 15-25%.
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