Optical Image Recognition System Implemented with a 3-D Memory Disk

D. Psaltis, H. Li, Y. Qiao, K. Curtis
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Abstract

Holographic storage of data in 3-D media can provide high density of information storage and parallel access to the stored information. Such memories were investigated extensively in the early 60’s [1,2,3,4,5] and even though these early efforts produced remarkable results they never found practical application largely because of material limitations such as low sensitivity, fanning, and hologram decay. Interest in holographic 3-D memories has been revitalized in recent years for a variety of reasons, the most significant probably being the emergence of applications, such as neural networks, machine vision, and databases, that can make use of the capabilities of holographic 3-D memories.
基于三维存储磁盘的光学图像识别系统
三维介质中数据的全息存储可以提供高密度的信息存储和对存储信息的并行访问。这种存储器在60年代早期得到了广泛的研究[1,2,3,4,5],尽管这些早期的努力取得了显著的成果,但由于材料的限制,如低灵敏度、扇形和全息衰减,它们从未得到实际应用。近年来,由于各种原因,对全息3-D存储器的兴趣重新焕发了活力,最重要的可能是应用程序的出现,例如神经网络、机器视觉和数据库,这些应用程序可以利用全息3-D存储器的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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