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首页> 外文期刊>Applied optics >Biorthogonally accessed three-dimensional two-photon memory for relational database operations
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Biorthogonally accessed three-dimensional two-photon memory for relational database operations

机译:用于关系数据库操作的双正交访问的二维两光子存储器

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摘要

Memory bandwidth is a bottleneck for very large database machines. Parallel-access three-dimensional two-photon memories have the potential of achieving enormous throughput (>100 Gbit/s) and capacity (1 Tbit/cm(3)) [Appl. Opt. 29, 2058 (1990)] and, consequently, are well suited for this application. Our analysis shows that some operations can be completed more than 2 orders of magnitude faster with this type of memory than with a system based on serial-access storage. These particular memories have a further feature of being accessible in orthogonal directions. We show that this property, used in conjunction with a three-dimensional data-organization scheme designed for this approach, leads to improved performance by permitting the user a choice of accessing strategies for a given operation. (C) 1997 Optical Society of America.
机译:内存带宽是非常大型的数据库计算机的瓶颈。并行访问三维二维光子存储器具有实现巨大吞吐量(> 100 Gbit / s)和容量(1 Tbit / cm(3))的潜力。选择。 29,2058(1990)],因此非常适合该应用。我们的分析表明,与基于串行访问存储的系统相比,使用这种类型的内存可以更快地完成某些操作,速度可提高2个数量级。这些特定的存储器还具有在正交方向上可访问的特征。我们表明,此属性与为此方法设计的三维数据组织方案结合使用,可通过允许用户选择给定操作的访问策略来提高性能。 (C)1997年美国眼镜学会。

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