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非线性系统的并行级联辨识与核估计

Parallel cascade identification and kernel estimation for nonlinear systems.

作者信息

Korenberg M J

机构信息

Department of Electrical Engineering, Queen's University, Kingston, Ontario, Canada.

出版信息

Ann Biomed Eng. 1991;19(4):429-55. doi: 10.1007/BF02584319.

Abstract

We consider the representation and identification of nonlinear systems through the use of parallel cascades of alternating dynamic linear and static nonlinear elements. Building on the work of Palm and others, we show that any discrete-time finite-memory nonlinear system having a finite-order Volterra series representation can be exactly represented by a finite number of parallel LN cascade paths. Each LN path consists of a dynamic linear system followed by a static nonlinearity (which can be a polynomial). In particular, we provide an upper bound for the number of parallel LN paths required to represent exactly a discrete-time finite-memory Volterra functional of a given order. Next, we show how to obtain a parallel cascade representation of a nonlinear system from a single input-output record. The input is not required to be Gaussian or white, nor to have special autocorrelation properties. Next, our parallel cascade identification is applied to measure accurately the kernels of nonlinear systems (even those with lengthy memory), and to discover the significant terms to include in a nonlinear difference equation model for a system. In addition, the kernel estimation is used as a means of studying individual signals to distinguish deterministic from random behaviour, in an alternative to the use of chaotic dynamics. Finally, an alternate kernel estimation scheme is presented.

摘要

我们考虑通过使用交替的动态线性和静态非线性元件的并行级联来表示和识别非线性系统。基于帕尔姆等人的工作,我们表明,任何具有有限阶沃尔泰拉级数表示的离散时间有限记忆非线性系统都可以由有限数量的并行LN级联路径精确表示。每个LN路径由一个动态线性系统后跟一个静态非线性(可以是多项式)组成。特别地,我们为精确表示给定阶的离散时间有限记忆沃尔泰拉泛函所需的并行LN路径数量提供了一个上限。接下来,我们展示如何从单个输入-输出记录获得非线性系统的并行级联表示。输入不需要是高斯的或白色的,也不需要具有特殊的自相关特性。接下来,我们的并行级联识别用于精确测量非线性系统的核(即使是那些具有长记忆的系统),并发现要包含在系统的非线性差分方程模型中的重要项。此外,核估计被用作研究单个信号以区分确定性行为和随机行为的一种手段,作为使用混沌动力学的替代方法。最后,提出了一种替代的核估计方案。

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