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Discrete-time H-infinity and H-2 control with structured disturbances and probability-relaxed requirements

机译:具有结构性扰动和概率宽松要求的离散H-infinity和H-2控制

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This paper presents a method that reduces the conservatism inherent in the disturbance representation in standard H. theory. It addresses several discrete-time control synthesis problems where the disturbances acting on the system are structured by a convex family of linear filters ('signal polytope') and where the system disturbance attenuation level attained over the signal polytope is ensured to (just) a prescribed probability. This setup enables realistic multi-feature disturbance delimiting while accounting for uncertainty in the disturbance model itself by allowing probability waivers. The core of the probability aspects of the proposed solutions is the search for a truncated signal polytope which provides both the required probability and the best robust disturbance attenuation level. Many examples are given, including one of an aircraft output-feedback control with a polytope of low-pass filters representing different wind phenomena. The examples demonstrate that addressing realistic disturbances results in better control designs (hence better performance) and that a small certainty waiver can yield a large performance gain.
机译:本文提出了一种减少标准H.理论中扰动表示固有的保守性的方法。它解决了几个离散时间控制综合问题,其中作用在系统上的干扰是由一个凸形线性滤波器族构成的(“信号多面体”),并且确保了在信号多面体上达到的系统干扰衰减水平达到(仅)一个规定的概率。此设置允许现实的多特征干扰定界,同时通过允许概率放弃来考虑干扰模型本身的不确定性。提出的解决方案的概率方面的核心是寻找一种截短的信号多态性,该信号多态性提供所需的概率和最佳的鲁棒干扰衰减水平。给出了许多示例,包括飞机输出反馈控制之一,该控制输出具有代表不同风现象的低通滤波器的多面体。这些示例表明,解决现实的干扰会导致更好的控制设计(从而提高性能),而小的确定性放弃会带来较大的性能提升。

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