走向细胞系统理论

G. Wunsch, W. Mathis
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引用次数: 1

摘要

线性系统的理论是一个黑箱概念,黑箱是用传递函数来描述的。通过使用状态空间概念,系统理论方法也适用于非线性输入输出系统。神经网络是一个高度结构化的系统,它是由一种非常简单的、相互连接的、相同的非线性组件组成的。VLSI技术的可用性对这些电子细胞结构的发展产生了很大的影响。经典的时间系统理论不能很好地适应于分析这种在空间和时间上变化的“细胞系统”。作者提出了一个由Wunsch(1977,1977)提出的时空系统的概念,并表明这个概念非常适合于对L.O. Chua和L. Yang(1988)发现的细胞神经网络类的系统理论描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward a theory of cellular systems
The theory of linear systems is a black box concept where the boxes are described by means of transfer functions. By use of the state-space concept the system theoretical approach is applicable to nonlinear input-output systems, too. Neural networks, which are highly structured systems, are built up of interconnected identical nonlinear components of a very simple type. The availability of VLSI technology has had a great impact on the development of these electronic cellular structures. The classical theory of time systems is not well-adapted for analysing such 'cellular systems' varying in space and time. The authors present a conception of space-time systems developed by Wunsch (1975, 1977), and show that this concept is very suitable for a system-theoretical description of the class of cellular neural networks discovered by L.O. Chua and L. Yang (1988).<>
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