Intrinsic Lexical Intentionality and the Mathematics of Homomorphism

H. Moisl
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Abstract

Moisl [1, 2] proposed a model of how the brain implements intrinsic intentionality with respect to lexical and sentence meaning, where 'intrinsic' is understood as 'independent of interpretation by observers external to the cognitive agent'. The discussion in both was mainly philosophical and qualitative; the present paper gives a mathematical account of the distance structure preservation that underlies the proposed mechanism of intrinsic intentionality. The three-layer autoassociative multilayer perceptron (aMLP) architecture with nonlinear hidden and linear output layers is the component in the model which generates representations homomorphic with the environment. The discussion first cites existing work which identifies the aMLP as an implementation architecture for principal component analysis (PCA), and then goes on to argue that the homomorphism characteristic of linear functions like PCA extends to aMLPs with nonlinear activation functions in the hidden layer. The discussion is in two main parts: the first part outlines the model, and the second presents the mathematical account.
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词汇内在意向性与同态数学
Moisl[1,2]提出了一个关于大脑如何在词汇和句子意义方面实现内在意向性的模型,其中“内在”被理解为“独立于认知主体外部观察者的解释”。两者的讨论主要是哲学的和定性的;本文给出了距离结构保存的数学解释,这是提出的内在意向性机制的基础。该模型采用具有非线性隐含层和线性输出层的三层自关联多层感知器(aMLP)结构,生成与环境同态的表示。讨论首先引用了现有的将aMLP识别为主成分分析(PCA)的实现体系结构的工作,然后进一步论证了线性函数(如PCA)的同态特性扩展到隐含层具有非线性激活函数的aMLP。讨论主要分为两个部分:第一部分概述模型,第二部分给出数学解释。
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