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Free space optical interconnections for an incoherent correlator.

机译:非相干相关器的自由空间光互连。

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摘要

This thesis describes the design of free-space optical interconnections between two arrays within commercial constraints for use as an incoherent correlator in image recognition or compression applications. Critical reviews are given of computer generated holograms and of refractive microlenses. Photoresist microlenses were chosen due to their ease of fabrication, efficient operation under incoherent illumination and the compactness of the system which results. Novel long focal length (up to 4.7 mm) microlenses with diameters of 120 mum were realised by immersing the microlenses in fluids of appropriate refractive index.;They had negligible astigmatic aberrations for off-axis angles of illumination. Two novel configurations are proposed for incoherent correlators based on the image multiplexer and shared microlens interconnect systems. The shared microlens total interconnect was used because it was shorter. Theoretical analysis of a shared microlens system, a shared pinhole system and a shadow casting system showed that the first gave the best combination of high efficiency with good resolution and low crosstalk in the correlation plane. Measurements of the angular responses of two diffusers for generating illumination gave a narrow but efficient response for the microlens diffuser and a wider spread for a bulk plastic diffuser which was then selected. An incoherent correlator was constructed successfully using two high contrast image transparencies giving correlation peaks as predicted and demonstrating translation invariance. The feasibility of using ferroelectric liquid crystal spatial light modulators was assessed. A theoretical computer simulation of the correlation process showed that the poor contrast ratio of the SLM (10:1) seriously degraded the output correlation contrast (2:1). Indeed in experiments using one SLM and a high contrast transparency it was impossible to discern any correlation peaks. We conclude that a higher contrast SLM, which may be in the form of an optically addressed SLM, is required for successful practical operation.
机译:本文描述了在商业限制内两个阵列之间的自由空间光学互连的设计,该互连在图像识别或压缩应用中用作非相干相关器。对计算机生成的全息图和折射微透镜进行了严格的审查。选择光致抗蚀剂微透镜是因为它们易于制造,在非相干照明下的有效操作以及所得到的系统的紧凑性。通过将微透镜浸入适当折射率的流体中,可以实现直径为120 mm的新型长焦距(最大4.7 mm)微透镜。对于轴外照明角,它们的像散像差可忽略不计。针对基于图像复用器和共享微透镜互连系统的非相干相关器,提出了两种新颖的配置。使用共享的微透镜总互连,因为它更短。对共享微透镜系统,共享针孔系统和阴影投射系统的理论分析表明,第一个在相关平面上将高效,高分辨率和低串扰最佳地结合在一起。测量两个漫射器产生照明的角响应后,对于微透镜漫射器产生了狭窄但有效的响应,而对于块状塑料漫射器则选择了较宽的展宽。使用两个高对比度图像透明胶片成功构建了一个非相干相关器,给出了相关峰,如预测的那样,并证明了翻译不变性。评估了使用铁电液晶空间光调制器的可行性。对相关过程进行的理论计算机仿真表明,SLM的对比度很差(10:1)严重降低了输出相关对比度(2:1)。实际上,在使用一个SLM和高对比度透明性的实验中,不可能辨别任何相关峰。我们得出结论,成功的实际操作需要更高对比度的SLM(可能采用光学寻址SLM的形式)。

著录项

  • 作者

    Poon, Chun Ho Peter.;

  • 作者单位

    University of London, University College London (United Kingdom).;

  • 授予单位 University of London, University College London (United Kingdom).;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 261 p.
  • 总页数 261
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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