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Logic Gate and Circuit Training on Randomly Dispersed Carbon Nanotubes

机译:随机分散的碳纳米管的逻辑门和电路训练

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摘要

This paper presents results of computations based on threshold logic performed by a thin solid film, following the general principle of evolution in materio. The electrical conductivity is used as the physical property manipulated for evolving Boolean functions. The material used consists of a composite of single-wall carbon nanotubes (SWCNTs) and the polymer poly(methyl methacrylate). The SWCNTs are randomly dispersed in the polymer forming a complex conductive network at the nano-scale. The training is formulated as an optimisation problem with continuous and binary constraints and is subsequently solved by two derivative-free algorithms, the Nelder-Mead (NM) and the Differential Evolution (DE) algorithms. This approach has been used to evolve gates and circuits. The NM fails to converge for all computational tasks, whereas the DE is always successful. The computation tasks considered are simple threshold logic gates and more complicated circuits. The thin film composite is very stable and its behavior remains the same after the optimal solution has been achieved.
机译:本文介绍了基于薄膜的阈值逻辑的计算结果,遵循了材料演化的一般原理。电导率用作为发展布尔函数而操纵的物理属性。所使用的材料由单壁碳纳米管(SWCNT)和聚合物聚甲基丙烯酸甲酯的复合材料组成。 SWCNTs随机分散在聚合物中,形成纳米级的复杂导电网络。训练被公式化为具有连续和二进制约束的优化问题,随后通过两种无导数算法(Nelder-Mead(NM)和差分演化(DE)算法)解决。该方法已用于发展门电路。 NM无法为所有计算任务收敛,而DE总是成功的。考虑的计算任务是简单的阈值逻辑门和更复杂的电路。薄膜复合材料非常稳定,并且在获得最佳解决方案后其行为保持不变。

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  • 作者单位

    School of Engineering and Computing Sciences, Durham University, UK;

    School of Engineering and Computing Sciences, Durham University, UK,Centre for Molecular and Nanoscale Electronics, Durham University, UK;

    School of Engineering and Computing Sciences, Durham University, UK;

    School of Engineering and Computing Sciences, Durham University, UK,Centre for Molecular and Nanoscale Electronics, Durham University, UK;

    School of Engineering and Computing Sciences, Durham University, UK,Centre for Molecular and Nanoscale Electronics, Durham University, UK;

    School of Engineering and Computing Sciences, Durham University, UK,Centre for Molecular and Nanoscale Electronics, Durham University, UK;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Evolution in materio; randomly dispersed carbon nanotubes; threshold logic circuits; optimisation;

    机译:物质进化;随机分散的碳纳米管;阈值逻辑电路;优化;

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