微分拓扑和非线性电路

L. Chua
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引用次数: 0

摘要

60年代提出的非线性电路理论中的几个基本问题和猜想直到最近才得到满意的解决。在这期间,几乎每一种电路和系统理论技术都被尝试过,但收效甚微。这一突破是在微分拓扑和代数几何的现代工具变得可用并以非平凡的方式应用之后才出现的。本讲座的目的是从最近的几篇论文[1-6]中选取其中的一些结果,并特别强调一些微分几何概念和工具所起的作用,如可微流形、横向性、度理论、霍奇分解等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential topology and nonlinear circuits
Several fundamental problems and conjectures in nonlinear circuit theory posed in the sixtiés have been satisfactorily resolved only recently. Virtually every circuit-and system-theoretic technique have been tried during the intervening years with little success. The breakthrough came only after modern tools from differential topology and algebraic geometry have become available and applied in a non-trivial way. The purpose of this lecture is to sample some of these results from several recent papers [1-6], with special emphasis on the roles played by several differential-geometric concepts and tools, such as differentiable manifolds, transversality, degree theory, Hodge decomposition, etc.
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