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Weighted H∞ mixed-sensitivity minimization for stable MIMO distributed-parameter plants

机译:稳定MIMO分布参数设备的加权H∞混合灵敏度最小化

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摘要

This paper considers the problem of designing near-optimal finite-dimensional compensators for stable multiple-input multiple-output (MIMO) distributed-parameter plants. A weighted H30 mixed-sensitivity measure which penalizes thecontrol is used to define the notion of optimality. Controllers are generated by solving a 'natural' finite-dimensional optimization. Apriori computable conditionsare given on the approximants such that the resulting finite-dimensional controllers stabilize the distributed-parameter plant and are near-optimal. The proof relies on the fact that the control input is appropriately penalized in the optimization. Although the proofs assume and exploit the fact that the plant can be approximated uniformly by finite-dimensional systems, it is indicated how compact approximants could be used. Moreover, it is shown how the optimal performance may be estimated to any desired degree of accuracy by solving a single finite-dimensional problem using a suitable finite-dimensional approximant. The proofs and constructions given are simple. Finally, it should be noted that no infinite-dimensional spectral factorizations are required. In short, the paper provides a straightforward control design approach for a large class of MIMO distributed-parameter systems.
机译:本文考虑了为稳定的多输入多输出(MIMO)分布参数工厂设计接近最佳的有限维补偿器的问题。加权的H30混合敏感度度量(对控件不利)用于定义最佳概念。通过解决“自然的”有限维优化来生成控制器。在近似值上给出先验可计算条件,以使所得的有限维控制器稳定分布参数的设备,并且接近最优。证明依赖于这样的事实,即控制输入在优化中受到了适当的惩罚。尽管证明假设并利用了有限维系统可以均匀逼近植物的事实,但它表明了如何使用紧凑的近似值。而且,示出了如何通过使用合适的有限维近似值解决单个有限维问题来将最佳性能估计到任何期望的准确度。给出的证明和构造很简单。最后,应该注意的是,不需要无限维频谱分解。简而言之,本文为大型MIMO分布式参数系统提供了一种直接的控制设计方法。

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