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A Multi-Wavelength Optical COntent-Addressable Parallel processor for high-Speed Parallel Relational Database processing: Architectural COncepts and preliminary Experimental System

机译:用于高速并行关系数据库处理的多波长光学内容可寻址并行处理器:架构概念和初步实验系统

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This paper presents a novel architecture for parllel database processing called Multi-Wavelength optical COntent Addressable Parallel Porcessor. MW-OCAPP is designed to provide efficient parallel retrieval and processing of data by moving the bulk of database operations fro melectronics to optics. It ocmbines a paralel model of computation with the many degrees foprocessing freedom that light provides. MW-OCAPP uses a polarization and wavelength-encoding scheme to achieve a high level of parallelism. DIstinctive features of the proposed architecture include(1) the use of a multiple-wavelength encoding shceme to enhance processing parallelism, (2) multiple-comparand work-parallel and bit-parallel magnitude comparsison with an execution-time independent of the data size or work size, (3) the implementatio of a sutie of eleven database primitives, and (4) multi-comparand two-dimensioal data processing. The MW-OCAPP architecture realizes eleven relatioal database primitives: difference, intersection ,union, conditional selection, maximum, minimum, join, product, projection, division and update. Most of these operatons execute in constant time independent of the data size. This paper outlines the architeecutural concepts and motivation behind MW-OCAPP's design, as well as describs the architecture required for implementing the equality and magintude comparsion processing cores. Additionally, a physical demonstration of the multiwavelength equality operation is presented.
机译:本文介绍了一个新颖的架构,用于贴图数据库处理,称为多波长光学内容可寻址并行孔隙仪。 MW-OCAPP旨在通过将次定数据库操作从次定到光学器件移动到光学器件来提供有效的并行检索和处理数据。它引起了灯具提供的众多学术级别的计算的帕拉哈拉模型。 MW-OCAPP使用偏振和波长编码方案来实现高水平的并行性。所提出的架构的独特特征包括(1)使用多波长编码SHCEME来增强处理并行性,(2)多比较和并行的工作并行和比特平行幅度比较,其执行时间与数据大小无关工作规模,(3)十一类数据库基元的Sutie的实现,(4)多比较的二维数据处理。 MW-OCAPP架构实现了11个相对的数据库基元:差异,交叉口,联盟,条件选择,最大值,最低,加入,产品,投影,划分和更新。大多数操作都在恒定的时间内执行独立于数据大小。本文概述了MW-OCAPP的设计背后的拱形概念和动机,以及描述了实现平等和MAGINTUDE比较处理核心所需的架构。另外,呈现了多波长平等操作的物理演示。

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