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Electronic Implementation of Associative Memory Based on Neural Network Models

IEEE Transactions on Systems Man and CyberneticsPublished 1 January 1987
A. Moopenn, John Lambe, A. P. Thakoor
Citations34

TL;DR

The nature of false memory errors, their effect on the information storage capacity of binary connection matrix memories, and a novel technique to eliminate such errors with the help of asymmetrical extra connections are discussed.

Abstract

An electronic embodiment of a neural network based associative memory in the form of a binary connection matrix is described. The nature of false memory errors, their effect on the information storage capacity of binary connection matrix memories, and a novel technique to eliminate such errors with the help of asymmetrical extra connections are discussed. The stability of the matrix memory system incorporating a unique local inhibition scheme is analyzed in terms of local minimization of an energy function. The memory's stability, dynamic behavior, and recall capability are investigated using a 32-"neuron" electronic neural network memory with a 1024-programmable binary connection matrix.

Keywords

Computer ScienceEngineering