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Plasticity-induced self organizing nanotechnology for the extraction of independent components from a data stream

机译:可塑性诱导的自组织纳米技术,用于从数据流中提取独立成分

摘要

A system for independent component analysis includes a feedback mechanism based on a plasticity rule, and an electro-kinetic induced particle chain, wherein the feedback mechanism and the electro-kinetic induced particle chain is utilized to extract independent components from a data set or data stream. The electro-kinetic induced particle chain is generally composed of a plurality of interconnected nanoconnections (e.g., nanoparticles) disposed between at least two electrodes in a solution, including for example one or more pre-synaptic electrodes and one or more post-synaptic electrodes. The feedback mechanism generally provides feedback to one or more particles within the electro-kinetic induced particle chain, while the plasticity rule can be non-linear in nature. The feedback mechanism also provides for one or more evaluate phases and one or more feedback phases.
机译:用于独立成分分析的系统包括基于可塑性规则的反馈机制和电动诱发的粒子链,其中,该反馈机制和电动诱发的粒子链用于从数据集或数据流中提取独立成分。电动诱导的粒子链通常由设置在溶液中至少两个电极之间的多个互连的纳米连接(例如,纳米颗粒)组成,所述电极包括例如一个或多个突触前电极和一个或多个突触后电极。反馈机制通常向电动感应的颗粒链中的一个或多个颗粒提供反馈,而可塑性规则本质上可以是非线性的。反馈机制还提供一个或多个评估阶段以及一个或多个反馈阶段。

著录项

  • 公开/公告号US7409375B2

    专利类型

  • 公开/公告日2008-08-05

    原文格式PDF

  • 申请/专利权人 ALEX NUGENT;

    申请/专利号US20050147081

  • 发明设计人 ALEX NUGENT;

    申请日2005-06-06

  • 分类号G06E1/00;G06E3/00;G06F15/18;G06G7/00;

  • 国家 US

  • 入库时间 2022-08-21 20:09:41

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