Ruswandi Djalal Muhammad, Faisal Faisal
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摘要

在标准操作系统中,需要考虑来自励磁器的涡轮机械转矩变化、放大器场电压变化等输入参数。一些可以做的研究包括使用特征值方法作为系统状态空间方程特征方程的根来研究同步发电机在处理微小变化时的动态稳定性。特征值可以显示系统稳定性的信息,并与时间对系统变化的响应有关。所使用的系统在Sulselrabar电气系统中。仿真结果显示了系统在频率响应和发电机转子角度方面的特性。区域间振荡模式下的特征值系统值为-0.33293 + 4.0844i,振荡模式下的特征值系统值为-0.9043 + 7.9670i。而发电机的频率响应,其中振荡在达到稳态条件之前发生。最大的超调响应发生在Old Tello工厂,最大超调为0.09124 pu,最小超调为-0.2227 pu。而巴卡鲁水电站的超调响应最小,最大pu值为0.004681,最小pu值为-0.02563。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studi Kestabilan Generator Sistem Sulselrabar
In the standard operating system, the input parameters such as changes in the mechanical torque of the turbine and changes in the field voltage of the amplifier from the exciter need to be considered. Some studies that can be done include the study of the dynamic stability of synchronous generators when dealing with small changes that occur using the eigenvalue approach which is the roots of the characteristic equations of the system state space equation. The eigenvalue can show information on system stability and is related to the response of time to changes in the system. The system used is in the Sulselrabar electrical system. From the simulation results show the characteristics of the system in terms of the frequency response and angle of the generator rotor. For the eigenvalue system value in the inter-area oscillation mode is -0.33293 + 4.0844i, for the oscillation mode it is -0.9043 + 7.9670i. While the generator frequency response, where oscillations occur before reaching steady state conditions. The biggest overshoot response occurs in Old Tello plants, with a maximum overshoot of 0.09124 pu and a minimum of -0.2227 pu. While the smallest overshoot response is found in the Bakaru hydroelectric power plant which is equal to 0.004681 maximum pu and -0.02563 minimum pu.
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