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Robust stabilisation for a class of stochastic two-dimensional non-linear systems with time-varying delays

机译:一类具有时变时滞的随机二维非线性系统的鲁棒镇定

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摘要

This study addresses the robust stabilisation problem for the two-dimensional (2D) discrete non-linear stochastic systems with time-varying delays in states. Based on the well-known Fornasini??Marchesini local state-space model, a more general 2D discrete non-linear system is considered with both stochastic disturbances and time-varying delays. Our attention is focused on the design of a delay-dependent state-feedback controller so that the 2D stochastic non-linear system is guaranteed to be globally asymptotically stabilisable in the mean square. By using the stochastic analysis and some inequality techniques, sufficient criteria ensuring the existence of such controllers are derived in terms of matrix inequalities, which can be effectively solved by resorting to some standard convex optimisation algorithms. Furthermore, such stabilisation results are extended to more general cases where the system matrices contain either polytopic or norm-bounded parameter uncertainties. Finally, a numerical example is provided to demonstrate the applicability of the proposed controller design approach.
机译:这项研究解决了状态时变时滞的二维(2D)离散非线性随机系统的鲁棒镇定问题。基于著名的Fornasini ?? Marchesini局部状态空间模型,考虑了具有随机干扰和时变时延的更通用的2D离散非线性系统。我们的注意力集中在依赖于延迟的状态反馈控制器的设计上,以确保2D随机非线性系统在均方上全局渐近稳定。通过使用随机分析和一些不等式技术,就可以根据矩阵不等式推导出确保此类控制器存在的充分标准,可以通过采用一些标准的凸优化算法来有效地解决这些问题。此外,这种稳定化结果扩展到系统矩阵包含多主题或范数约束参数不确定性的更一般情况。最后,提供了一个数值示例来证明所提出的控制器设计方法的适用性。

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