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Suboptimal Anisotropy-based Control for Linear Discrete Time Varying Systems with Noncentered Disturbances

机译:基于次优势的基于各向异性的线性离散时间变化系统,具有非中心干扰

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This paper is concerned with a γ-optimal control for linear discrete time varying systems on bounded time intervals driven by statistically uncertain random disturbances with nonzero mean values. The uncertainty is described in information theoretic terms using a previously introduced anisotropy functional. It is shown that, under additional constraints on the mean value and the covariance matrix of the input disturbance, the γ-optimal anisotropy-based controller design problem can be reduced to a multiobjective control problem. In comparison with the original anisotropy-based control setting, which uses the anisotropic norm of a system as a performance criterion, the suboptimal control approach, considered in the present paper, employs a modified version of the norm. The modified anisotropic norm is related to the original norm at a reduced anisotropy level and the H_∞-norm of the system. Using this connection, we obtain sufficient conditions for γ-optimal anisotropy-based control. The resulting controller involves the solution of a certain convex optimization problem. A numerical example is presented in order to demonstrate the method proposed.
机译:本文涉及一种γ-最佳控制,用于线性离散时间变化系统,其由具有非零平均值的统计上不确定的随机干扰驱动的有界时间间隔的线性离散时间间隔。使用先前引入的各向异性功能,在信息理论术语中描述了不确定性。结果表明,在输入干扰的平均值和协方差矩阵上的额外约束下,可以减少到多目标控制问题的γ-最佳各向异性的控制器设计问题。与基于原始的基于各向异性的控制设置相比,它使用系统的各向异性标准作为性能标准,在本文中考虑的次优控制方法采用了常量的修改版本。修饰的各向异性范围与系统的降低的各向异性水平和系统的H_∞-QUI相关的原始标准有关。使用此连接,我们获得了足够的条件,用于γ-最佳的基于各向异性的控制。得到的控制器涉及确定某些凸优化问题的解决方案。提出了一个数值示例以证明所提出的方法。

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