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首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >Dynamical disorder and self-correlation in the characterization of nonlinear systems: Application to deterministic chaos
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Dynamical disorder and self-correlation in the characterization of nonlinear systems: Application to deterministic chaos

机译:非线性系统表征中的动力学无序和自相关:在确定性混沌中的应用

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摘要

A new methodology to characterize nonlinear systems is described. It is based on the measurement over the time series of two quantities: the "Dynamical order" and the "Self-correlation". The averaged "Scalar" and "Perpendicular" products are introduced to measure these quantities. While this approach can be applied to general nonlinear systems, the aim of this work is to focus on the characterization and modeling of chaotic systems. In order to illustrate the method, applications to a two-dimensional chaotic system and the modeling of real telephony traffic series are presented. Three important aspects are discussed: the use of the averaged "Scalar" product as supplement of the "Lyapunov exponent", the use of the averaged "Perpendicular" product as a refinement of the "Mutual information" and the reduction of m-dimensional systems to the study of only one dimension. This new conceptual framework introduces a perspective to characterize real and theoretical processes with a unifying method, irrespective of the system classification.
机译:描述了表征非线性系统的新方法。它基于对两个量的时间序列的测量:“动态阶数”和“自相关”。引入平均的“标量”和“垂直”乘积以测量这些数量。尽管这种方法可以应用于一般的非线性系统,但这项工作的目的是着重于混沌系统的表征和建模。为了说明该方法,提出了在二维混沌系统中的应用以及真实电话业务序列的建模。讨论了三个重要方面:使用平均的“标量”乘积作为“ Lyapunov指数”的补充;使用平均的“垂直”乘积作为“互信息”的细化以及减少m维系统只能进行一维研究。这个新的概念框架引入了一种观点,以统一的方法来表征真实和理论过程,而与系统分类无关。

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