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使用光盘和光折变晶体的可编程图像关联存储器。

Programmable image associative memory using an optical disk and a photorefractive crystal.

作者信息

Neifeld M A, Psaltis D

出版信息

Appl Opt. 1993 Aug 10;32(23):4398-409. doi: 10.1364/AO.32.004398.

Abstract

The optical disk is a computer-addressable binary storage medium with very high capacity. More than 1010 bits of information can be recorded on a 12-cm-diameter optical disk. The natural two-dimensional format of the data recorded on an optical disk makes this medium particularly attractive for the storage of images and holograms, while parallel access provides a convenient mechanism through which such data may be retrieved. In this paper we discuss a closed-loop optical associative memory based on the optical disk. This system incorporates image correlation, using photorefractive media to compute the best association in a shift-invariant fashion. When presented with a partial or noisy version of one of the images stored on the optical disk, the optical system evolves to a stable state in which those stored images that best match the input are temporally locked in the loop.

摘要

光盘是一种具有极高容量的计算机可寻址二进制存储介质。在直径为12厘米的光盘上可以记录超过1010比特的信息。光盘上记录数据的自然二维格式使得这种介质对于图像和全息图的存储特别有吸引力,而并行访问提供了一种方便的机制来检索此类数据。在本文中,我们讨论一种基于光盘的闭环光学关联存储器。该系统采用图像相关性,利用光折变介质以平移不变的方式计算最佳关联。当呈现存储在光盘上的其中一幅图像的部分或有噪声版本时,光学系统会演变为一个稳定状态,在该状态下,那些与输入最匹配的存储图像会在环路中被时间锁定。

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