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Optimal Control of Maximum Output Deviations of a Linear Time-Varying System on a Finite Horizon

机译:线性时变系统在有限范围内的最大输出偏差的最佳控制

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摘要

The maximum output deviation of a linear time-varying system is defined as the worst-case measure of the maximum value of the output Euclidean norm over a finite horizon provided that the sum of the squared energy of an external disturbance and a quadratic form of the initial state is 1. Maximum deviation is characterized in terms of solutions to differential matrix equations or inequalities. A modified concept of the boundedness of the system on a finite horizon under an external and initial disturbances is introduced and its connection with the concept of maximum deviation is established. Necessary and sufficient conditions for the boundedness of the system on a finite horizon are obtained. It is demonstrated that optimal controllers (including the multiobjective ones that minimize the maximum deviations of several outputs) as well as controllers ensuring the boundedness of the system can be designed using linear matrix inequalities.
机译:线性时变系统的最大输出偏差被定义为有限范围内输出欧几里德标准的最大值的最大案例测量,条件是外部干扰的平方能量和二次形式的总和 初始状态为1.最大偏差以差分矩阵方程或不等式的解决方案为特征。 介绍了在外部和初始干扰下有限地平线上系统的改进的概念,并建立了与最大偏差概念的连接。 获得了在有限范围内系统的有必要和充分条件。 据证明,最佳控制器(包括最小化若干输出的最大偏差的多目标)以及确保系统的界限的控制器可以使用线性矩阵不等式设计。

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