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Almost disturbance decoupling problem with internal stability via state or measurement feedback-singular perturbation approach

机译:几乎扰动解耦问题通过状态或测量反馈 - 奇异扰动方法具有内部稳定性

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An almost disturbance decoupling technique guaranteeing internal stability of a linear system while using either state feedback or only measurement feedback is considered. Under a set of necessary and sufficient conditions, a state feedback controller is explicitly constructed. Similarly, a full or reduced-order observer-based measurement feedback controller is explicitly constructed under a set of necessary and sufficient conditions. Both the developed controllers guarantee the asymptotic stability of the closed-loop system in the absence of disturbances. Furthermore, they can reduce, for example, the H/sub infinity / norm of the transfer function from the external disturbance to the controlled output to any arbitrarily specified value. Unlike other methods which merely give the solvability conditions, this method explicitly constructs them. This is a 'one shot' design and it does not encounter arbitrarily small or large numbers; hence, it is not plagued by 'stiffness' or any other numerical stability problems. The algorithm has been implemented in a 'Matlab' software package.
机译:考虑使用状态反馈或仅考虑测量反馈的同时保证线性系统的内部稳定性的几乎干扰去耦技术。在一组必要和充足的条件下,明确构建了状态反馈控制器。类似地,在一组必要的和充分条件下明确地构建完整或减少的基于观察者的测量反馈控制器。在没有干扰的情况下,开发控制器都保证了闭环系统的渐近稳定性。此外,它们可以从外部干扰到受控输出到任何任意指定的值的传递函数的H / sub Infinity / norm。与仅仅给出可解性条件的其他方法不同,该方法明确构建它们。这是一个“一拍”设计,它不会遇到任意小或大数字;因此,它不会被“刚度”或任何其他数值稳定性问题困扰。该算法已在“MATLAB”软件包中实现。

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