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Estimation of the degree of polarization through computational sensing.

机译:通过计算感测来估计极化程度。

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摘要

The degree of polarization of a reflected field from active laser illumination can be used for object identification and classification. The goal of this study is to investigate methods for estimating the degree of polarization for reflected fields with active laser illumination, which involves the measurement and processing of two orthogonal field components (complex amplitudes), two orthogonal intensity components, and the total field intensity. We propose to replace interferometric optical apparatuses with a computational approach for estimating the degree of polarization from two orthogonal intensity data and total intensity data. Cramer-Rao bounds for each of the three sensing modalities with various noise models are computed. Algebraic estimators and maximum-likelihood (ML) estimators are proposed. Active-set algorithm and expectation-maximization (EM) algorithm are used to compute ML estimates. The performances of the estimators are compared with each other and with their corresponding Cramer-Rao bounds. Estimators for four-channel polarimeter (intensity interferometer) sensing have a better performance than orthogonal intensities estimators and total intensity estimators. Processing the four intensities data from polarimeter, however, requires complicated optical devices, alignment, and four CCD detectors. It only requires one or two detectors and a computer to process orthogonal intensities data and total intensity data, and the bounds and estimator performances demonstrate that reasonable estimates may still be obtained from orthogonal intensities or total intensity data. Computational sensing is a promising way to estimate the degree of polarization.
机译:来自有源激光照射的反射场的偏振度可用于物体识别和分类。这项研究的目的是研究用有源激光照明估计反射场偏振度的方法,其中涉及对两个正交场分量(复振幅),两个正交强度分量和总场强的测量和处理。我们建议用一种计算方法代替干涉式光学设备,以便根据两个正交强度数据和总强度数据来估计偏振度。计算具有各种噪声模型的三个传感模态中每个模态的Cramer-Rao边界。提出了代数估计和最大似然估计。主动集算法和期望最大化(EM)算法用于计算ML估计。将估计器的性能相互比较,并与它们相应的Cramer-Rao边界进行比较。与正交强度估计器和总强度估计器相比,用于四通道偏振计(强度干涉仪)感测的估计器具有更好的性能。但是,处理来自旋光仪的四个强度数据需要复杂的光学设备,对准和四个CCD检测器。它仅需要一个或两个检测器和一台计算机即可处理正交强度数据和总强度数据,并且边界和估计器性能表明仍可以从正交强度或总强度数据中获得合理的估计值。计算感测是一种估计极化程度的有前途的方法。

著录项

  • 作者

    Wang, Wei.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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