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Development of an object-oriented infrared imaging system simulator and its application to multi-spectral infrared imaging.

机译:面向对象的红外成像系统模拟器的开发及其在多光谱红外成像中的应用。

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摘要

This thesis describes efforts undertaken to investigate passive, multi-spectral infrared imaging. Although many applications of multi-spectral infrared imaging may exist, the high cost of developing viable multi-spectral technologies has limited research into, and subsequent exploitation of, these applications. Our efforts attempt to find a way to minimize the cost of this research while concurrently investigating one of the possible applications of multi-spectral infrared imaging using current infrared imaging technology. The outcome is an object-oriented, infrared imaging system simulator, called IRIMAGE, and a series of experiments and simulations that confirm the viability of gaseous pollution detection using passive, multi-spectral infrared imaging.; IRIMAGE is a flexible tool capable of applications research and basic infrared system design. This combination makes it a cost effective tool for researching the applications of multi-spectral IR imaging and the technological requirements they require. We present the physical and computational concepts that underly the simulation as well as certain computational advances made during IRIMAGE's development. A comprehensive discussion of the primary objects that make up IRIMAGE and how the simulation works is also provided. Since the reliability of a simulation depends on experimental verification of its output, we also present the results of this verification.; Besides verifying IRIMAGE, these experiments investigated detecting gaseous pollutants using passive, multi-spectral IR imaging. The thesis describes the imaging system we used and the theoretical background of these experiments. For each experiment, we describe the experimental setup and how IRIMAGE simulated the experiment. Finally, we compare the experimental and simulation results. Although these experiments verify IRIMAGE and demonstrate how gaseous pollutants can be detected using passive, multi-spectral IR imaging, further research is necessary and certain technological advances must be made before this application can be exploited. More information about IRIMAGE is available on the web at www.ssdp.caltech.edu.
机译:本论文介绍了为研究被动多光谱红外成像而付出的努力。尽管可能存在多光谱红外成像的许多应用,但是开发可行的多光谱技术的高成本限制了对这些应用的研究和后续开发。我们的努力试图找到一种方法来最小化这项研究的成本,同时研究使用当前红外成像技术的多光谱红外成像的一种可能的应用。结果是一个称为IRIMAGE的面向对象的红外成像系统仿真器,以及一系列实验和模拟,这些实验和仿真确认了使用被动多光谱红外成像进行气态污染检测的可行性。 IRIMAGE是一种灵活的工具,能够进行应用研究和基本的红外系统设计。这种组合使其成为研究多光谱红外成像应用及其所需技术要求的经济高效的工具。我们介绍了作为仿真基础的物理和计算概念,以及IRIMAGE开发过程中取得的某些计算进展。还提供了对组成IRIMAGE的主要对象以及模拟如何工作的全面讨论。由于仿真的可靠性取决于对其输出进行实验验证,因此我们也提供了验证结果。除了验证IRIMAGE,这些实验还研究了使用被动多光谱红外成像检测气态污染物的方法。本文介绍了我们使用的成像系统以及这些实验的理论背景。对于每个实验,我们都会描述实验设置以及IRIMAGE如何模拟实验。最后,我们比较了实验结果和仿真结果。尽管这些实验验证了IRIMAGE并演示了如何使用被动的多光谱IR成像检测气态污染物,但仍需要进一步的研究,并且在利用此应用程序之前必须取得一定的技术进步。有关IRIMAGE的更多信息,请访问网站www.ssdp.caltech.edu。

著录项

  • 作者

    Springfield, Christopher D.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Optics.; Computer Science.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 252 p.
  • 总页数 252
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;自动化技术、计算机技术;
  • 关键词

  • 入库时间 2022-08-17 11:48:33

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