相空间重建:迈向下一代非线性微分方程模型的路径及其对非均匀采样理论的影响

C. Tolle, Mark Pengitore
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引用次数: 1

摘要

本文探讨了控制社区在系统识别(SysID)方面的工作与物理、数学、混沌和复杂性社区在通过时延嵌入进行相空间重建方面的工作之间的重叠。每个社区的目标之间有许多重叠之处。然而,控制社区可以从物理、数学、混沌和复杂性社区的最新发展中获得新的见解以及一些新的非常强大的SysID工具。这些见解是通过非线性动力学的相空间重建工作获得的。从嵌入操作演化而来的非线性微分方程的发现新方法可以为混合系统理论、Nyquest-Shannon理论和基于网络的控制理论提供新的思路。本文努力引导控制社区对物理、数学、混沌和复杂性社区中正在开发的工具和其他见解进行更仔细的检查,以发现系统动力学,这是控制系统开发的第一步。本文介绍了通过时滞嵌入(因whitney、Takens和Sauer的Thoreoms而出名)重建相空间、积分-火焰嵌入和基于Perona方法的非线性微分方程发现的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase-space reconstruction: a path towards the next generation of nonlinear differential equation based models and its implications towards non-uniform sampling theory
This paper explores the overlaps between the Control community's work on System Identification (SysID) and the Physics, Mathematics, Chaos, and Complexity communities' work on phase-space reconstruction via time-delay embedding. There are numerous overlaps between the goals of each community. Nevertheless, the Controls community can gain new insight as well as some new very powerful tools for SysID from the latest developments within the Physics, Mathematics, Chaos, and Complexity communities. These insights are gained via the work on phase-space reconstruction of non-linear dynamics. New methods for discovering non-linear differential based equations that evolved from embedding operations can shed new light on hybrid-systems theory, Nyquest-Shannon's Theories, and network based control theory. This paper strives to guide the Controls community towards a closer inspection of the tools and additional insights being developed within the Physics, Mathematics, Chaos, and Complexity communities for discovery of system dynamics, the first step in control system development. The paper introduces the concepts of phase-space reconstruction via time-delay embedding (made famous byWhitney, Takens, and Sauer's Thoreoms), intergrate-and-fire embedding, and non-linear differential equation discovery based on Perona's method.
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