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Spectral polarization signature analysis and modeling in the infrared for the detection of landmines

机译:红外谱检测红外光谱偏振鉴定分析与建模

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Current electro-optical based landmine detection techniques focus on exploiting phenomena across several wavebands. In particular, polarization signatures have and continue to be a focus of interest for this problem. Our research examined these signatures in the context of a real world environment; specifically, we examined the spectral polarization characteristics of landmines and soils within a complex radiative environment. Our initial results indicate that the optical properties of sand dominate the resultant signature for the buried and flush-buried cases. For surface landmines, the polarization results are dependent on the depth of the soil coating. Therefore, a spectral phenomenological model for the polarization signature of the combined sand-landmine system was developed for the infrared band (mid-wave and long-wave infrared) to study these issues in more detail. The modeling paradigm centered on a radiative transfer approach coupled with heat transfer results to account for incident and emitted radiation simultaneously. This paper will present a description of the physics-based model for the spectral polarization signatures of buried, flush, and surface land mines.
机译:电流电光的地雷检测技术侧重于跨多个波段的利用现象。特别是,极化签名具有并继续成为此问题的感兴趣的焦点。我们的研究在真实世界环境中审查了这些签名;具体地,我们在复杂的辐射环境中检查了地雷和土壤的光谱偏振特性。我们的初始结果表明,沙子的光学性质主导了埋设和埋地箱的所得签名。对于地面覆盖,偏振效果取决于土壤涂层的深度。因此,为红外频带(中波和长波红外线)开发了组合沙地区偏振签名的光谱现象学模型,以更详细地研究这些问题。以辐射转移方法为中心的建模范式与传热结果相结合,以同时进行事件和发射辐射。本文将介绍埋地,冲洗和表面陆地矿山光谱偏振特征的基于物理学模型的描述。

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