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Optical correlation based pose estimation using bipolar phase grayscale amplitude spatial light modulators.

机译:使用双极性相位灰度幅度空间光调制器的基于光学相关的姿态估计。

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摘要

Pose estimation techniques have been developed on both optical and digital correlator platforms to aid in the autonomous rendezvous and docking of spacecraft. This research has focused on the optical architecture, which utilizes high-speed bipolar-phase grayscale-amplitude spatial light modulators as the image and correlation filter devices. The optical approach has the primary advantage of optical parallel processing: an extremely fast and efficient way of performing complex correlation calculations. However, the constraints imposed on optically implementable filters makes optical correlator based posed estimation technically incompatible with the popular weighted composite filter designs successfully used on the digital platform. This research employs a much simpler "bank of filters" approach to optical pose estimation that exploits the inherent efficiency of optical correlation devices. A novel logarithmically mapped optically implementable matched filter combined with a pose search algorithm resulted in sub-degree standard deviations in angular pose estimation error. These filters were extremely simple to generate, requiring no complicated training sets and resulted in excellent performance even in the presence of significant background noise. Common edge detection and scaling of the input image was the only image pre-processing necessary for accurate pose detection at all alignment distances of interest.
机译:在光学和数字相关器平台上都已经开发出姿态估计技术,以帮助航天器的自主会合和对接。这项研究集中在光学架构上,该架构利用高速双极性相位灰度幅度空间光调制器作为图像和相关滤波器设备。光学方法具有光学并行处理的主要优点:一种执行复杂相关计算的极其快速有效的方法。然而,施加在光学上可实现的滤波器上的约束使得基于光学相关器的姿势估计在技术上与数字平台上成功使用的流行的加权复合滤波器设计不兼容。这项研究采用了一种更为简单的“滤波器组”方法来进行光学姿态估计,该方法利用了光学相关设备的固有效率。一种新颖的对数映射的光学可实现匹配滤波器与姿态搜索算法相结合,导致角度姿态估计误差达到了亚度标准偏差。这些滤波器的生成极其简单,不需要复杂的训练集,即使在存在显着背景噪声的情况下,也具有出色的性能。输入图像的共同边缘检测和缩放是在所有感兴趣的对准距离上进行精确姿态检测所需的唯一图像预处理。

著录项

  • 作者单位

    The University of Alabama in Huntsville.;

  • 授予单位 The University of Alabama in Huntsville.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TS97-4;
  • 关键词

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