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On the optimization of actuator saturation limits for LTI systems: an LMI-based invariant ellipsoid approach

机译:关于LTI系统的执行器饱和度限制的优化:基于LMI的不变椭圆方法

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This paper considers the problem of optimal actuator dimensioning for LTI systems, in the sense of choosing appropriate saturation limits for a given set of admissible initial conditions and for a predefined integral state-feedback control law. By using an invariant ellipsoid argument, it is shown that this problem can be described as a linear matrix inequality (LMI)-based optimization that can be solved efficiently. Moreover, the paper shows that the optimal actuator dimensioning is connected to the choice of the initial conditions of the integral states of the controller, which can be included in the overall optimization to improve further the results. Two different methods are described and analyzed by means of numerical simulation.
机译:本文考虑了LTI系统的最佳致动器尺寸尺寸的问题,从而在给定的一组可允许的初始条件和预定义的整体状态反馈控制法选择适当的饱和度限制的意义上。通过使用不变的椭球参数,示出了该问题可以描述为基于线性矩阵不等式(LMI),这些优化可以有效地解决。此外,本文示出了最佳致动器尺寸尺寸连接到控制器的整体状态的初始条件的选择,这可以包括在整体优化中以进一步改善结果。通过数值模拟描述和分析两种不同的方法。

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