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静止头平行读出光盘系统

Motionless-head parallel readout optical-disk system.

作者信息

Marchand P J, Krishnamoorthy A V, Urquhart K S, Ambs P, Esener S C, Lee S H

出版信息

Appl Opt. 1993 Jan 10;32(2):190-203. doi: 10.1364/AO.32.000190.

Abstract

The design, analysis, and feasibility of a novel motionless-head parallel readout optical-disk system are presented. The system is designed to read data blocks distributed radially on the disk's active surface, and it has the unique advantage that no mechanical motion of the head is required for fast access, focusing, or tracking. Data access is achieved solely through the disk rotation, and the entire memory can be read in one rotation. In principle, this permits a data rate of up to 1 Gbyte/s. The data blocks are one-dimensional Fourier-transform computer-generated holograms, each reconstructing one column of a two-dimensional output image. Owing to the information redundancy and shift invariance properties of Fourier-transform holograms, tracking and focusing servo requirements are eliminated. A holographic encoding method is developed to produce high signal-to-noise ratio reconstructions and to reduce significantly the radial alignment requirements of the recorded data bits. The optical readout system consists of only three cylindrical lenses. Two of these may be replaced by a single hybrid diffractive-refractive optical element for easier system alignment and better optical performance, i.e., reduced aberrations and improved resolution. The throughputs and retrieval times of this parallel readout optical-disk system make it well suited to a variety of parallel computing architectures, including a high-performance optoelectronic associative memory [Proc. Soc. Photo-Opt. Instrum. Eng. 1347, 86 (1990)].

摘要

本文介绍了一种新型的静止头并行读出光盘系统的设计、分析和可行性。该系统旨在读取沿磁盘有效表面径向分布的数据块,其独特优势在于快速访问、聚焦或跟踪时无需磁头进行机械运动。数据访问仅通过磁盘旋转实现,整个存储器可在一次旋转中读取。原则上,这允许高达1GB/s的数据速率。数据块是一维傅里叶变换计算机生成全息图,每个全息图重建二维输出图像的一列。由于傅里叶变换全息图的信息冗余和位移不变性特性,消除了跟踪和聚焦伺服要求。开发了一种全息编码方法,以产生高信噪比的重建结果,并显著降低记录数据位的径向对准要求。光学读出系统仅由三个柱面透镜组成。其中两个透镜可用单个混合衍射-折射光学元件代替,以简化系统对准并获得更好的光学性能,即减少像差并提高分辨率。这种并行读出光盘系统的吞吐量和检索时间使其非常适合各种并行计算架构,包括高性能光电关联存储器[《光学仪器工程师学会会刊》1347, 86 (1990)]。

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