基于可调忆阻器的蔡氏电路的物理实现

M. Escudero, S. Spiga, M. D. Marco, M. Forti, G. Innocenti, A. Tesi, F. Corinto, S. Brivio
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引用次数: 0

摘要

非线性是处理优化或分类等任务的高要求计算应用的中心特征。此外,人们的共识是,非线性不仅应该在算法层面上得到利用,而且应该在物理层上通过寻找包含所需非线性特征的设备来物理地实现能量、面积和/或时间效率的计算应用。混沌振荡器是一类由非线性驱动的系统,可用于计算目的。在这项工作中,我们提出了一个可调谐蔡氏电路的物理实现,其中非线性部分基于非易失性记忆器件。器件特性和电路分析是设计电路的指导原则,结果证明了通过对器件进行电气编程来调整电路振荡响应的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical Implementation of a Tunable Memristor-based Chua's Circuit
Nonlinearity is a central feature in demanding computing applications that aim to deal with tasks such as optimization or classification. Furthermore, the consensus is that nonlinearity should not be only exploited at the algorithm level, but also at the physical level by finding devices that incorporate desired nonlinear features to physically implement energy, area and/or time efficient computing applications. Chaotic oscillators are one type of system powered by nonlinearity, which can be used for computing purposes. In this work we present a physical implementation of a tunable Chua's circuit in which the nonlinear part is based on a nonvolatile memristive device. Device characterization and circuit analysis serve as guidelines to design the circuit and results prove the possibility to tune the circuit oscillatory response by electrically programming the device.
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