Design of PSSs for distributed synchronous generators using a system representation based on norm-bounded linear differential inclusions

R. Kuiava, R. Ramos, N. Bretas
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引用次数: 1

Abstract

This paper proposes a systematic method based on linear matrix inequalities for the design of power system stabilizers for synchronous generators connected to distribution grids. The system to be controlled is originally described by a nonlinear dynamical model in state-space form. However, for synthesis purposes we represent it as a norm-bounded linear differential inclusion model. Using an approach based on the mean-value theorem, this linear representation considers the nonlinear terms in the Taylor series expansion of the nonlinear equations as uncertainties in the model. Constraints are included to the control problem formulation in order to guarantee a satisfactory performance of the controlled system. The main objectives, from the application viewpoint, are the enhancement in the damping of electromechanical oscillations, as well as the minimization of the peaks reached by the terminal and field voltages during the transients of interest. The proposed algorithm is a straightforward design procedure and can be easily handled by using LMI solvers. A cogeneration plant of 10 MW added to a distribution network constituted by a feeder and six buses is adopted as test system, and the results show that the two designed objectives are quite satisfactorily achieved.
基于范数有界线性微分包含的系统表示的分布式同步发电机pss设计
本文提出了一种基于线性矩阵不等式的同步发电机并网电力系统稳定器设计方法。被控系统最初是用状态空间形式的非线性动力学模型来描述的。然而,为了综合的目的,我们将其表示为一个范数有界线性微分包含模型。采用基于中值定理的方法,将非线性方程的泰勒级数展开式中的非线性项视为模型中的不确定性。为了保证被控系统具有满意的性能,在控制问题的表述中加入了约束条件。从应用的角度来看,主要目标是增强机电振荡的阻尼,以及在感兴趣的瞬态期间终端电压和场电压达到的峰值最小化。所提出的算法设计过程简单,可以很容易地使用LMI求解器进行处理。采用一个10 MW的热电联产电厂加入到由1条馈线和6条母线组成的配电网中作为测试系统,结果表明两个设计目标都得到了满意的实现。
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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