Multivariable control design for damping interarea oscillations of bulk power systems using a modal reduction technique

Y. Tada, H. Ohkubo, A. Kurita
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引用次数: 13

Abstract

A new technique for power system multivariable control design in order to raise precision and facilitate design procedures is described. The multivariable control scheme for damping improvement of power swings is based on the optimal feedback control theory, and in the design process, eigenvalues of a 2n/spl times/2n matrix for an n-th dimension state equation must be calculated in order to solve the Riccati equation. Hence, in order to apply this method to a bulk power system, the matrix size must be reduced. By using the modal reduction technique which is proposed in this paper, the matrix size can be reduced by about 75%. The multivariable control scheme is applied to a 164-machine power system. The result shows that the proposed technique enables multivariable control design for a bulk power system with simple procedures.
基于模态缩减技术的大容量电力系统区域间振荡多变量控制设计
介绍了一种新的电力系统多变量控制设计方法,以提高设计精度和简化设计过程。功率摆振阻尼改善的多变量控制方案基于最优反馈控制理论,在设计过程中,为了求解Riccati方程,必须计算n维状态方程的2n/spl乘/2n矩阵的特征值。因此,为了将该方法应用于大容量电力系统,必须减小矩阵的尺寸。采用本文提出的模态缩减技术,可使矩阵尺寸减小约75%。将多变量控制方案应用于164机电力系统。结果表明,该方法能够以简单的程序实现大容量电力系统的多变量控制设计。
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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