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Pointwise-in-Time Analysis and Non-Quadratic Lyapunov Functions for Linear Time-Varying Systems

机译:线性时变系统的点立时间分析和非二次Lyapunov函数

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Performance analysis for linear time-invariant (LTI) systems has been closely tied to quadratic Lyapunov functions ever since it was shown that LTI system stability is equivalent to the existence of such a Lyapunov function. Some metrics for LTI systems, however, have resisted treatment via means of quadratic Lyapunov functions. Among these, point-wise-in-time metrics, such as peak norms, are not captured accurately using these techniques, and this shortcoming has prevented the development of tools to analyze system behavior by means other than e.g. time-domain simulations. This work demonstrates how the more general class of homogeneous polynomial Lyapunov functions can be used to approximate point-wise-in-time behavior for LTI systems with reduced conservatism, and we extend this to the case of linear time-varying (LTV) systems as well. Our findings rely on the recent observation that the search for homogeneous polynomial Lyapunov functions for LTV systems can be recast as a search for quadratic Lyapunov functions for a related hierarchy of time-varying Lyapunov differential equations; thus, performance guarantees for LTV systems are attainable without heavy computation or additional algebraic developments. Numerous examples are provided to illustrate the findings of this work.
机译:线性时间不变(LTI)系统的性能分析已与二次Lyapunov功能密切相关,因为它表明LTI系统稳定性相当于这种Lyapunov功能的存在。然而,LTI系统的一些指标通过二次Lyapunov函数的方法来抵抗处理。其中,不准确地使用这些技术捕获诸如峰值规律的点明显的度量标准,并且这种缺点阻止了通过例如以外的方式开发工具来分析系统行为。时域模拟。这项工作展示了如何使用更普通的均匀多项式Lyapunov函数来实现LTI系统的近似时间行为,并将其扩展到线性时变(LTV)系统的情况下好。我们的调查结果依赖于最近观察到的,即寻找LTV系统的同质多项式Lyapunov函数,可以重新循环,作为对时变Lyapunov微分方程的相关层级的二次Lyapunov函数的研究;因此,可实现LTV系统的性能保证,而无需计算或额外的代数发展。提供了许多例子以说明这项工作的结果。

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