An Optimized Proportional Integral Derivative (PID) based Power System Stabilizer (PSS) for Damping of Active Power Oscillations

V. Bhan, A. Hashmani, A. H. Memon
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Abstract

Rising load demand and possibilities of short interruptions either due to temporary faults or equipment switching may lead to a transient instability in terms of growing oscillations and eventually result into cascaded outages if not being damped properly and timely. To damp out such oscillations, the power system stabilizers (PSS) are invariably being installed to regulate the excitation of synchronous generators. In this research, a comparative analysis among the two design variants of PSS i.e., Lead Lag and PID  is performed by comparing the overshoot and settling time of generator active power after distrubance, to observe the effect of each on the system characteristics and nominal conditions. The results obtained show a better performance of PID based PSS having better overshoot response and reduced settling time for symmetrical as well as unsymmetrical faults.
一种基于优化比例积分导数(PID)的有功电力系统稳定器(PSS)
由于临时故障或设备切换,负载需求的增加和短暂中断的可能性可能导致振荡增加的瞬态不稳定,如果不及时适当地阻尼,最终导致级联停电。为了抑制这种振荡,必须安装电力系统稳定器(PSS)来调节同步发电机的励磁。在本研究中,通过比较干扰后发电机有功功率的超调量和稳定时间,对PSS的两种设计变体Lead Lag和PID进行对比分析,观察它们对系统特性和标称条件的影响。结果表明,基于PID的PSS对对称和非对称故障均具有较好的超调响应和较短的沉降时间。
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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