基于鲁棒控制技术的电力系统稳定器设计

N. Gupta, S. Narayan
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引用次数: 4

摘要

电力系统是一个动态系统,它不断地受到各种干扰。重要的是,这些干扰不会使系统达到不稳定的状态。由于某些干扰,产生小频率的机电振荡。由振荡引起的稳定性属于小信号稳定性。研究表明,PSS能有效地抑制这种振荡,保证电力系统的小信号稳定性。本文设计了鲁棒PSS来抑制SMIB电力系统的转子转速和转子角随时间的偏差。PSS采用基于H∞的鲁棒控制技术进行设计。在这里,主要的焦点是最小化线性分数传递函数(LFT)的H∞范数,LFT是指令输出的期望向量与外源信号向量之间的传递函数矩阵。在基于遗传算法和粒子群算法的H∞范数最小化的设计中,采用了PID形式的结构指定PSS。线性矩阵不等式(LMI)技术也被用于解决H∞控制问题,以获得PSS。研究表明,采用粒子群算法和遗传算法的PSS设计优于传统的超前滞后和PID结构,也优于采用LMI技术设计的PSS。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of power system stabilizer using robust control techniques
The power system is a dynamic system and it is constantly being subjected to disturbances. It is important that these disturbances do not drive the system to unstable conditions. Due to certain disturbances, electromechanical oscillations of small frequency set up. The kind of stability involved due to oscillations falls under small signal stability. The PSS has been found effective in damping such oscillations and ensure small signal stability of the power system. In this paper, the robust PSS have been designed to damp the rotor speed and rotor angle deviations with respect to time for SMIB power system. The PSS have been designed using H∞ based robust control techniques. Here, the main focus has been to minimize the H∞ norm of the linear fractional transfer function (LFT) which the transfer function matrix between the desired vector of commanded outputs to the vector of exogenous signals. The structure specified PSS in the form of PID has also been taken in the design based on H∞ norm minimization using GA and PSO. The linear matrix inequality (LMI) technique has also been used to solve the H∞ control problem to get PSS. Investigations have shown that PSS design using PSO and GA are superior to classical lead-lag and PID structures, and also to PSS designed using LMI technique.
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