Fault Modeling and Simulation of Memristor based Gas Sensors

S. Khandelwal, Anu Bala, Vishal Gupta, V. Gupta, M. Ottavi, E. Martinelli, A. Jabir
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引用次数: 4

Abstract

Memristors are an attractive option for use in future architectures due to their non-volatility, high density and low power operation. Gas sensing is one of the proposed application of memristive devices. In spite of these advantages, memristors are susceptible to defect densities due to the nondeterministic nature of nano-scale fabrication. In this paper, a novel spice memristor model incorporating fault models that emulates the gas sensing behaviour with/without faults is developed for simulation and integration with design automation tools. Our simulation results show that the proposed non-linear model detects the presence of the oxidising/reducing gas and analyses the defects/faults affecting the functionality of the sensor.
基于忆阻器的气体传感器故障建模与仿真
忆阻器由于其非易失性、高密度和低功耗操作,在未来的架构中是一个有吸引力的选择。气体传感是忆阻器件的一个重要应用。尽管有这些优点,由于纳米级制造的不确定性,忆阻器容易受到缺陷密度的影响。本文开发了一种新型香料忆阻器模型,该模型包含故障模型,可模拟有/无故障时的气敏行为,用于仿真和集成设计自动化工具。仿真结果表明,所提出的非线性模型可以检测到氧化/还原气体的存在,并分析影响传感器功能的缺陷/故障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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