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Instrument performance enhancement and modification through an extended instrument paradigm.

机译:通过扩展的仪器范例来增强和改进仪器性能。

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摘要

An extended instrument paradigm is proposed, developed and shown in various applications. The CBM (Chin, Blass, Mahan) method is an extension to the linear systems model of observing systems. In the most obvious and practical application of image enhancement of an instrument characterized by a time-invariant instrumental response function, CBM can be used to enhance images or spectra through a simple convolution application of the CBM filter for a resolution improvement of as much as a factor of two. The CBM method can be used in many applications. We discuss several within this work including imaging through turbulent atmospheres, or what we've called Adaptive Imaging. Adaptive Imaging provides an alternative approach for the investigator desiring results similar to those obtainable with adaptive optics, however on a minimal budget. The CBM method is also used in a backprojected filtered image reconstruction method for Positron Emission Tomography. In addition, we can use information theoretic methods to aid in the determination of model instrumental response function parameters for images having an unknown origin. Another application presented herein involves the use of the CBM method for the determination of the continuum level of a Fourier transform spectrometer observation of ethylene, which provides a means for obtaining reliable intensity measurements in an automated manner. We also present the application of CBM to hyperspectral image data of the comet Shoemaker-Levy 9 impact with Jupiter taken with an acousto-optical tunable filter equipped CCD camera to an adaptive optics telescope.
机译:提出了一种扩展的仪器范例,并在各种应用中进行了展示。 CBM(Chin,Blass,Mahan)方法是对观测系统线性系统模型的扩展。在以时不变的仪器响应函数为特征的仪器的图像增强的最明显,最实际的应用中,CBM可通过CBM滤波器的简单卷积应用而用于增强图像或光谱,从而将分辨率提高多达两倍。 CBM方法可用于许多应用中。我们讨论了这项工作中的几个方面,包括通过湍流大气成像或我们称为自适应成像。自适应成像为研究人员提供了一种替代方法,希望获得与使用自适应光学器件可获得的结果相似的结果,但是预算却很少。 CBM方法还用于正电子发射断层扫描的反投影滤波图像重建方法中。另外,我们可以使用信息理论方法来帮助确定具有未知来源的图像的模型工具响应函数参数。本文提出的另一应用涉及使用CBM方法确定乙烯的傅里叶变换光谱仪观察的连续水平,该方法提供了一种以自动化方式获得可靠强度测量的方法。我们还介绍了CBM在Shoemaker-Levy 9彗星撞击木星的高光谱图像数据中的应用,该图像是由配备了声光可调滤镜的CCD相机拍摄到自适应光学望远镜所拍摄的。

著录项

  • 作者

    Mahan, Stephen Lee.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Physics General.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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