首页> 外文会议>Conference on Atmospheric Optical Modeling, Measurement, and Simulation >Influence of temperature fluctuations on infrared limb radiance: a new simulation code
【24h】

Influence of temperature fluctuations on infrared limb radiance: a new simulation code

机译:温度波动对红外肢体辐射的影响:一种新的仿真代码

获取原文

摘要

Airborne infrared limb-viewing detectors may be used as surveillance sensors in order to detect dim military targets. These systems' performances are limited by the inhomogeneous background in the sensor field of view which impacts strongly on target detection probability. This background clutter, which results from small-scale fluctuations of temperature, density or pressure must therefore be analyzed and modeled. Few existing codes are able to model atmospheric structures and their impact on limb-observed radiance. SAMM-2 (SHARC-4 and MODTRAN4 Merged), the Air Force Research Laboratory (AFRL) background radiance code can be used to in order to predict the radiance fluctuation as a result of a normalized temperature fluctuation, as a function of the line-of-sight. Various realizations of cluttered backgrounds can then be computed, based on these transfer functions and on a stochastic temperature field. The existing SIG (SHARC Image Generator) code was designed to compute the cluttered background which would be observed from a space-based sensor. Unfortunately, this code was not able to compute accurate scenes as seen by an airborne sensor especially for lines-of-sight close to the horizon. Recently, we developed a new code called BRUTE3D and adapted to our configuration. This approach is based on a method originally developed in the SIG model. This BRUTE3D code makes use of a three-dimensional grid of temperature fluctuations and of the SAMM-2 transfer functions to synthesize an image of radiance fluctuations according to sensor characteristics. This paper details the working principles of the code and presents some output results. The effects of the small-scale temperature fluctuations on infrared limb radiance as seen by an airborne sensor are highlighted.
机译:空气传播的红外线肢体观察探测器可用作监视传感器,以便检测昏暗的军事目标。这些系统的性能受到传感器视野中的不均匀背景的限制,这在目标检测概率上强烈影响。因此,因此必须分析和建模由温度,密度或压力小的小规模波动导致的杂波。少数现有代码能够模拟大气结构及其对肢体观察到的辐射的影响。 SAMM-2(SHARC-4和MODTRAN4合并),空军研究实验室(AFRL)背景辐射码代码可用于预测由于归一化温度波动而导致的辐射波动,作为线路的函数 - 视线。然后基于这些传递函数和随机温度场来计算杂乱背景的各种实现。现有的SIG(SHARC图像发生器)代码被设计为计算从基于空间的传感器观察的杂乱背景。不幸的是,这段代码无法计算机载传感器所见的准确场景,特别是靠近地平线的视线。最近,我们开发了一个名为Brute3d的新代码,并适合我们的配置。这种方法基于最初在SIG模型中开发的方法。该BRUTE3D代码利用了三维温度波动的网格,并且SAMM-2传输功能,以根据传感器特性合成辐射波动的图像。本文详细介绍了代码的工作原则,并提出了一些输出结果。突出了由空机传感器看到的小规模温度波动对红外肢体辐射的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号