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NASA NTRS · 19910048095

An efficient optical architecture for sparsely connected neural networks

Abstract

An architecture for general-purpose optical neural network processor is presented in which the interconnections and weights are formed by directing coherent beams holographically, thereby making use of the space-bandwidth products of the recording medium for sparsely interconnected networks more efficiently that the commonly used vector-matrix multiplier, since all of the hologram area is in use. An investigation is made of the use of computer-generated holograms recorded on such updatable media as thermoplastic materials, in order to define the interconnections and weights of a neural network processor; attention is given to limits on interconnection densities, diffraction efficiencies, and weighing accuracies possible with such an updatable thin film holographic device.

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BibTeXRIS

Hine, Butler P., III, Downie, John D., Reid, Max B.. 1990-01-01. An efficient optical architecture for sparsely connected neural networks. https://ntrs.nasa.gov/citations/19910048095

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