电化学现场可训练模式识别系统

R. M. Stewart
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引用次数: 8

摘要

系统性能测试最近在一个实验电化学活性/塑料系统上进行,旨在证明并开始探索我们称之为暂时关联的“现场可训练性”的理论预测现象,这一过程如果得到完善和扩展,可能会导致制造超高密度和高度通用的模式识别机器的革命性进步。第一个完整的实验系统,称为线性场可训练(LIFT),由两个匹配但相反(兴奋/抑制)的活性/塑性偶极子(铁/金)在硝酸中的平行阵列组成,它们以各种活动模式受到(电)刺激。并通过周围流体和钢制容器壁的简单平行耦合响应低阻抗低通阈值检测器。或者,当需要时,将腔室连接到电源上,其效果是立即向整个阵列提供巨大的电击。由此产生的强化场与样本输入模式刺激(与未强化的响应测试刺激交替进行)同步应用,试图在一系列小步骤中随意诱导精细细胞结构的同时变化,这些变化将在线性决策函数类中产生相应的特定系统功能突变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrochemically Active Field-Trainable Pattern Recognition Systems
System performance tests have recently been carried out on an experimental electrochemically active/plastic system designed to demonstrate and begin to explore the theoretically predicted phenomenon we call temporally associative "field-trainability," a process which, when perfected and extended, may lead to revolutionary advances in manufacturing ultrahigh-density and highly versatile pattern recognition machines. The first complete experimental system, called-linear field-trainable, (LIFT) consists of two matching but opposing (excitatory/inhibitory) parallel arrays of active/plastic dipoles (iron/gold) in nitric acid, which are stimulated (electrically) in various patterns of activity. and respond by simple parallel coupling through the surrounding fluids and steel container walls to a low-impedance low-pass threshold detector. Alternatively, when desired, the chambers are connected to a power supply, the effect of which is to deliver massive electrical shocks to the entire array at once. The resulting reinforcement field is applied in synchronism with sample input pattern stimulations (which alternate with unreinforced response test stimulations) in attempts to induce at will, in a sequence of small steps, simultaneous changes of fine cellular structure which will produce corresponding specific systemic functional mutations as desired from among the class of linear decision functions.
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