具有电可变突触的固态电子线性自适应神经元

C.-Y.M. Chen, M. White, M. French
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引用次数: 1

摘要

本文讨论了一种模拟生物突触互连的半导体器件的硬件实现,用于神经网络系统的硬件实现。具体来说,他们描述了电可编程(可更改)SONOS(硅阻断氧化氮隧道氧化硅)非挥发性突触和一个包含这些可更改突触的简单电子神经元的工作。电子突触互连强度或重量值可以在CMOS电压水平下电改变。作者将这些可修改的突触权重整合到固态电子线性自适应神经元中,并使用Widrow-Hoff's delta学习规则作为更新算法来检查这些可编程突触的电学性能。讨论了实验结果和这些电子突触的理想特性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A solid-state electronic linear adaptive neuron with electrically alterable synapses
The authors address the hardware implementation of a semiconductor device which emulates the biological synaptic interconnection for the hardware realization of neural network systems. Specifically, they describe work on the electrically reprogrammable (alterable) SONOS (silicon blocking oxide nitride tunneling oxide silicon) nonvolatile synapse and a simple electronic neuron which incorporates these alterable synapses. The electronic synaptic interconnection strength, or the weight value, can be electrically altered at CMOS voltage levels. The authors have incorporated these modifiable synaptic weights into a solid-state electronic linear adaptive neuron with a Widrow-Hoff's delta learning rule as the updating algorithm to examine the electrical performance of these programmable synapses. The experimental results and the desirable features of these electronic synapses are discussed.<>
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