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Assessment of new camouflage prototypes deployed in semi-desertic environments using hyperspectral polarimetric imaging sensors

机译:使用高光谱偏振成像传感器评估部署在半沙漠环境中的新伪装原型

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Electro-optic (EO) sensors operating in the reflective and thermal bands are commonly used for a wide range of surveillance applications. Among the ones of interest is the detection of military targets cluttered in natural environment using either broadband or multispectral imaging sensors. Additionally, the spectral information of the elements of a scene under surveillance can be exploited further by hyperspectral imaging (HSI) sensors to provide enhanced detection capability against Army assets thwarted by Camouflage, Concealment, and Deception (CC&D) countermeasure techniques. While innovative camouflages are designed to mimic the spectral signature of various background environments, new advanced hyperspectral imaging sensors having increased sensitivity and spectral resolution are also actively developed. Accordingly, hyperspectral polarimetric imaging sensors have been devised to measure the polarization property of light in addition to the spectral signatures of the elements of a scene. Such imaging sensors provide the capability to improve further the detection of a broad range of target materials buried in various vegetation backgrounds while reducing false alarm rates. This paper investigates the use of ground-based hyperspectral polarimetric sensors to assess the optical performance of camouflage prototypes currently in development for the Canadian Armed Forces (CAF). Unpolarized and polarized radiance measurements of camouflage prototypes deployed in semi-desertic environments were acquired in the visible and shortwave infrared spectral bands. Experimental results demonstrate the benefits of using hyperspectral polarimetric imaging sensors to improve the detection performance of different camouflage prototypes, and open up potential to develop new remote sensing capabilities that are able to deal with improved CC&D countermeasure means.
机译:在反射和热带中操作的电光(EO)传感器通常用于各种监视应用。兴趣中的一个人是使用宽带或多光谱成像传感器检测在自然环境中杂乱的军事目标。另外,监视下的场景的元件的光谱信息可以进一步通过高光谱成像(HSI)传感器进一步利用,以提供通过伪装,隐藏和欺骗(CC&D)对策技术而对军队资产进行增强的检测能力。虽然创新伪装设计用于模拟各种背景环境的光谱特征,但也积极开发出具有增加的灵敏度和光谱分辨率的新的高光谱成像传感器。因此,已经设计了高光谱偏振成像传感器,以减少除了场景元素的光谱签名之外的光的偏振特性。这种成像传感器提供了改进的能力,进一步检测在各种植被背景中埋入的广泛目标材料,同时降低了误报率。本文调查了地面高光谱偏振传感器的使用,评估目前为加拿大武装部队(CAF)开发的伪装原型的光学性能。在可见和短波红外光谱带中获得了在半沙漠环境中部署的伪装原型的未经偏振和极化辐射测量。实验结果表明,使用高光谱偏振成像传感器提高不同伪装原型的检测性能的好处,开辟了开发能够处理改进的CC&D对策手段的新遥感能力的潜力。

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