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A multi-wavelength optical content-addressable parallel processor (MW-OCAPP) for high-speed relational database processing: Free-space experimental implementation and monolithic adaptation based on guided-wave technology

机译:用于高速关系数据库处理的多波长光学内容可寻址并行处理器(MW-OCAPP):自由空间实验实现和基于导波技术的单片自适应

摘要

This thesis explores the five-space experimental implementation and monolithic adaptation of the Equality subsystem from a parallel relational database optical machine called the Multi-Wavelength Optical Content-Addressable Parallel Processor (MW-OCAPP). MW-OCAPP uses a novel polarization- and wavelength-encoding scheme to achieve an input/output-limited experimental peak bit comparison rate of 96,000/sec. Recognizing the severe diffraction-limit penalty for using a free-space optical processor with relatively long path lengths, a system based on guided-wave optics called the Equivalency Processing Parallel Photonic Integrated Circuit (EP3IC) was developed. Although algorithmically identical to MW-OCAPP's equality operation, EP3IC's peak bit comparison rate for a similarly configured machine is over six orders of magnitude faster. It achieves this substantial performance advantage by making use of integrated high-speed detectors and electro-optic modulators. This integrated circuit solution provides relatively low-power operation, fast switching speed, a compact system footprint, vibration tolerance, and a design that is highly manufacturable.
机译:本文从称为多波长光学内容可寻址并行处理器(MW-OCAPP)的并行关系数据库光学机器中探索了Equality子系统的五空间实验实现和整体适应。 MW-OCAPP使用新颖的偏振和波长编码方案,以实现96,000 / sec的输入/输出限制实验峰值比对速率。认识到使用具有较长路径长度的自由空间光学处理器会带来严重的衍射极限损失,因此开发了一种基于导波光学系统的系统,称为等效处理并行光子集成电路(EP3IC)。尽管在算法上与MW-OCAPP的相等操作相同,但是对于类似配置的机器,EP3IC的峰值位比较速率要快六个数量级。它通过使用集成的高速检测器和电光调制器来实现这一实质性的性能优势。这种集成电路解决方案可提供相对低功耗的操作,快速的开关速度,紧凑的系统占地面积,耐振动性以及高度可制造的设计。

著录项

  • 作者

    Detofsky Abram Maximilian;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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