用傅立叶全息技术模拟决策者的心理特征

IF 1.1 Q4 OPTICS Computer Optics Pub Date : 2023-06-01 DOI:10.18287/2412-6179-co-1189
A. Pavlov, A.O. Gaugel
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引用次数: 0

摘要

研究了利用傅立叶全息技术对决策者的个体心理特征进行建模的问题。该问题考虑了当前决策条件与先前学习的非合作博弈“囚徒困境”建模的决策逻辑规则相矛盾的情况。解决这个问题的方法是基于一个假设,即心理特征和神经网络作为智能的物质载体的特性之间存在相关性。共振结构的6f傅立叶全息方案被认为是一个三层神经网络,实现了A.M.提出的神经生理驱动的“激励环”概念Ivanitsky。我们分析地评估了经典的不相容事件分离的总概率公式的有效性极限与全息图中低频滤波器的特性和基本决策规则训练图像的相关半径的依赖关系。数值模拟结果证实了分析结果。
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Modeling mental peculiarities of a decision maker by a Fourier-holography technique
A task of modeling individual mental features of a decision-maker using a Fourier holography setup is considered. The problem is considered for a situation when current conditions of decision-making contradict to the previously learned rule of decision-making logic modeled by the non-cooperative game "Prisoner's Dilemma". The approach to the problem is based on a hypothesis of the correlation between mental features and the properties of the neural network as a material carrier of intelligence. The 6f Fourier holography scheme of the resonant architecture is considered as a three-layer neural network implementing a neuro-physiologically motivated concept of the "excitation ring" proposed by A.M. Ivanitsky. We analytically assess the dependence of the validity limits of the classical total probability formula for a disjunction of incompatible events on the characteristics of low-frequency filters in holograms and the correlation radii of the training image of the basic decision rule. Analytical results are confirmed by results of the numerical simulation.
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来源期刊
Computer Optics
Computer Optics OPTICS-
CiteScore
4.20
自引率
10.00%
发文量
73
审稿时长
9 weeks
期刊介绍: The journal is intended for researchers and specialists active in the following research areas: Diffractive Optics; Information Optical Technology; Nanophotonics and Optics of Nanostructures; Image Analysis & Understanding; Information Coding & Security; Earth Remote Sensing Technologies; Hyperspectral Data Analysis; Numerical Methods for Optics and Image Processing; Intelligent Video Analysis. The journal "Computer Optics" has been published since 1987. Published 6 issues per year.
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