基于LMI表征的多目标状态反馈综合中H/sub / 2/和H/sub /spl / in//的权衡

J. Akhtar, V. Uddin
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引用次数: 0

摘要

控制问题的混合性能和鲁棒性一直是人们关注的对象。这些不同的客观问题很少包含在单一的综合标准中。虽然一些跟踪和鲁棒性最好由H/sub /spl infin//准则捕获,但噪声不灵敏度更自然地表达为H/sub /项,并且瞬态行为很容易根据L/sub /范数或闭环阻尼进行调整。提出了一种利用线性矩阵不等式(LMI)技术设计MIMO系统混合L/sub 1//H/sub 2//H/sub /spl infin//控制器的方法。这些控制器允许最小化由干扰和噪声引起的最坏情况峰值输出,并通过满足多目标标准获得鲁棒极点配置。给出了一个物理激励的例子,证明了混合控制器在混合性能和鲁棒性方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trade-off between the H/sub 2/ and H/sub /spl infin// in the multi-objective state feedback synthesis through LMI characterizations
The mixed performance and robustness of control problems have been the object of much attention. These various objective problems are rarely encompassed by a single synthesis criterion. While some tracking and robustness are best captured by the H/sub /spl infin// criterion noise insensitivity is more naturally expressed in H/sub 2/ terms, and transient behaviors are easily tuned in terms of L/sub 1/ norms or closed loop damping. We present a methodology for designing mixed L/sub 1//H/sub 2//H/sub /spl infin// controllers for MIMO systems through linear matrix inequalities (LMI) techniques. These controllers allow for minimizing the worst case peak output due to disturbances and noise, and acquire robust pole placement by satisfying multi-objective criteria. A physically motivated example is given to demonstrate the effectiveness of the mix-controller for mix performance and robustness.
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