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An algorithm for robust performance tests based on frequency-dependent LMIs

机译:基于频率相关LMI的鲁棒性能测试算法

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In this paper, an algorithm is introduced for feasibility problems associated with frequency-dependent, linear matrix inequalities-these problems correspond to H-2 or H-infinity robust performance tests for a given controller, in the face of feedback perturbations. To this effect, an auxiliary H-2 cost-functional is introduced and a sequence of H-2 problems with a single linear constraint is considered in which the H-2 cost-functional is kept unchanged while the linear constraints are iteratively modified. It is shown that, in each step, the auxiliary optimal solution moves closer (in the sense of a weighted quadratic norm) to the target feasible set. Conditions are also established under which the sequence of solutions to the auxiliary problems yields a solution to the original feasibility problem. The method is illustrated by a numerical example corresponding to a H-infinity robust performance test for a multivariable system.
机译:在本文中,针对与频率相关的线性矩阵不等式相关的可行性问题,介绍了一种算法,这些问题对应于给定控制器面对反馈扰动时的H-2或H无限鲁棒性能测试。为此,引入了辅助H-2成本函数,并考虑了一系列具有单个线性约束的H-2问题,其中在迭代修改线性约束的同时,保持H-2成本函数不变。结果表明,在每个步骤中,辅助最优解都向目标可行集靠拢(在加权二次范数的意义上)。还建立了条件,在该条件下,针对辅助问题的解决方案序列可以解决原始的可行性问题。通过对应于多变量系统的H无限鲁棒性能测试的数值示例来说明该方法。

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