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Modeling and experimental testing for future development of Night Vision Electro-Optic (NVEO) FLIR92 Model

机译:夜视光电(NVEO)FLIR92模型未来开发的建模和实验测试

摘要

Recent advances in thermal imaging technology have resulted in the fielding of two-dimensional array detector based imaging systems. These designs have been labeled second-generation, and are rapidly replacing first generation systems having linear detector arrays with a parallel scan type architecture. It has been postulated that first generation prediction models are not applicable to second generation systems. In particular, the minimum resolvable temperature difference (MRTD) modeling needs refinement in the areas of sampling, quantization noise, and array non-uniformities in order for it to be applied to second generation systems. The present industry standard for MRTD is the Night Vision FLIR92 Model. Results from the FLIR92 Model and the two well known first generation models will be presented and compared with experimental measurements made on two thermal imaging systems available at the Naval Postgraduate School.
机译:热成像技术的最新进展导致了基于二维阵列检测器的成像系统的发展。这些设计已被标记为第二代,并且正在迅速取代具有带有并行扫描类型架构的线性检测器阵列的第一代系统。假设第一代预测模型不适用于第二代系统。特别是,最小可分辨温度差(MRTD)建模需要在采样,量化噪声和阵列不均匀性方面进行完善,以便将其应用于第二代系统。机读旅行证件的当前行业标准是夜视FLIR92模型。将介绍FLIR92模型和两个著名的第一代模型的结果,并将其与在海军研究生院的两个热成像系统上进行的实验测量结果进行比较。

著录项

  • 作者

    Koc Cem.;

  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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