神经形态记忆电阻电路中的复杂动力学

F. Corinto, M. Gilli, A. Ascoli, R. Tetzlaff
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引用次数: 5

摘要

利用忆阻器对非线性电路的非线性动力学进行深入研究,是开发基于忆阻器的生物启发应用系统和密集非易失性存储器的重要一步。即使在一个简单的忆阻振荡器中,也可以观察到各种复杂的动态行为,包括混沌。本文是根据ECCTD 2013年特别会议的规定编写的。本文对忆阻器的理论、模型和应用进行了综述。此外,我们还简要介绍了基于非线性电路理论的霍奇金-赫胥黎神经模型与忆阻器电路实现的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Complex dynamics in neuromorphic memristor circuits
A deep study of the nonlinear dynamics of nonlinear circuits with memristors represents a fundamental step towards the development of memristor-based systems for bio-inspired applications and dense nonvolatile memories. A rich variety of complex dynamic behaviors, including chaos, may be observed even in a simple memristor oscillator. This article is organized according to the regulations of the ECCTD 2013 Special Sessions. We present a short summary of the state-of-the-art of memristor theory, model and applications. In addition, we briefly introduce a comprehensive Nonlinear Circuit Theory-based foundation for circuit implementation of the Hodgkin-Huxley neural model with memristors.
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