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Stability analysis by dynamic dissipation inequalities: On merging frequency-domain techniques with time-domain conditions

机译:动态耗散不等式的稳定性分析:关于利用时域条件合并频域技术

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This paper provides a complete link between dissipative systems theory and a celebrated result on stability analysis with integral quadratic constraints (IQCs). This is achieved with a new stability characterization for feedback interconnections based on the notion of finite-horizon integral quadratic constraints with a terminal cost. As the main benefit, this opens up opportunities for guaranteeing constraints on the transient responses of trajectories in feedback loops within absolute stability theory. For systems affected by parametric uncertainties, we show how to generate tight robustly invariant ellipsoids on the basis of a classical frequency-domain stability test, with illustrations by a numerical example. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提供了耗散系统理论与稳定性分析的稳定性分析的完整联系,具有积分二次约束(IQC)。 这是通过基于具有终端成本的有限范围积分二次约束的概念的反馈互连的新稳定性表征来实现这一点。 作为主要福利,这使得能够在绝对稳定理论中保证对反馈回路轨迹瞬态响应的限制的机会。 对于受参数不确定性影响的系统,我们展示了如何在经典频域稳定性测试的基础上产生紧密强大的不变椭圆体,通过数值示例。 (c)2018 Elsevier B.v.保留所有权利。

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