Finite time stability with guaranteed cost control for linear systems

A. Qayyum, A. Pironti
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引用次数: 3

Abstract

This paper defines an optimal quadratic cost bound as a performance index for linear time varying systems subject to a finite time stability constraint. In particular, a sufficient condition for achieving such a guaranteed cost bound satisfying simultaneously the finite time stable constraint is given in terms of differential linear matrix inequalities. This condition is then exploited for the design of a state feedback control which make the closed loop system finite time stable with a guaranteed cost bound as the performance index. This leads to the design of an optimal controller under finite time stability constraint in the realm of convex optimization by the solution of a suitable feasibility problem. The applicability of the proposed approach is illustrated by means of an example showing the control of an inverted pendulum.
线性系统具有保成本控制的有限时间稳定性
本文定义了具有有限时间稳定性约束的线性时变系统的最优二次代价界作为性能指标。特别地,用微分线性矩阵不等式给出了保证代价界同时满足有限时间稳定约束的充分条件。然后利用这一条件设计状态反馈控制,使闭环系统以保证的代价界为性能指标,保持有限时间稳定。在凸优化领域,通过求解合适的可行性问题来设计有限时间稳定性约束下的最优控制器。通过一个倒立摆的控制实例说明了所提方法的适用性。
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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