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Incremental Stability and Performance Analysis of Discrete-Time Nonlinear Systems using the LPV Framework ?

机译:使用LPV框架的离散时间非线性系统的增量稳定性和性能分析

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The dissipativity framework is widely used to analyze stability and performance of nonlinear systems. By embedding nonlinear systems in an LPV representation, the convex tools of the LPV framework can be applied to nonlinear systems for convex dissipativity based analysis and controller synthesis. However, as has been shown recently in literature, naive application of these tools to nonlinear systems for analysis and controller synthesis can fail to provide the desired guarantees. Namely, only performance and stability with respect to the origin is guaranteed. In this paper, inspired by the results for continuous-time nonlinear systems, the notion of incremental dissipativity for discrete-time nonlinear systems is proposed, whereby stability and performance analysis is done between trajectories. Furthermore, it is shown how, through the use of the LPV framework, convex conditions can be obtained for incremental dissipativity analysis of discrete-time nonlinear systems. The developed concepts and tools are demonstrated by analyzing incremental dissipativity of a controlled unbalanced disk system.
机译:耗散框架广泛用于分析非线性系统的稳定性和性能。通过在LPV表示中嵌入非线性系统,LPV框架的凸起工具可以应用于基于非线性系统的非线性系统,用于基于凸起的基于分析和控制器合成。然而,正如最近在文献中所示的那样,对于用于分析和控制器合成的非线性系统来说,这些工具的天真地应用可能无法提供所需的保证。即,保证了对原点的性能和稳定性。在本文中,提出了通过对连续非线性系统的结果的启发,提出了离散时间非线性系统的增量耗散性的概念,从而在轨迹之间进行稳定性和性能分析。此外,示出了如何通过使用LPV框架,可以获得离散时间非线性系统的增量耗散分析来获得凸条件。通过分析受控不平衡磁盘系统的增量耗散来证明开发的概念和工具。

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