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Evaluation of appropriate sensor specifications for space based ballistic missile detection

机译:评估适用于天基弹道导弹探测的传感器规格

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The detection and tracking of ballistic missiles (BMs) during launch or cloud break using satellite based electro-optical (EO) sensors is a promising possibility for pre-instructing early warning and fire control radars. However, the successful detection of a BM is depending on the applied infrared (IR)-channel, as emission and reflection of threat and background vary in different spectral (IR-) bands and for different observation scenarios. In addition, the spatial resolution of the satellite based system also conditions the signal-to-clutter-ratio (SCR) and therefore the predictability of the flight path. Generally available satellite images provide data in spectral bands, which are suitable for remote sensing applications and earth surface observations. However, in the fields of BM early warning, these bands are not of interest making the simulation of background data essential. The paper focuses on the analysis of IR-bands suitable for missile detection by trading off the suppression of background signature against threat signal strength. This comprises a radiometric overview of the background radiation in different spectral bands for different climates and seasons as well as for various cloud types and covers. A brief investigation of the BM signature and its trajectory within a threat scenario is presented. Moreover, the influence on the SCR caused by different observation scenarios and varying spatial resolution are pointed out. The paper also introduces the software used for simulating natural background spectral radiance images, MATISSE ("Advanced Modeling of the Earth for Environment and Scenes Simulation") by ONERA [1].
机译:使用基于卫星的电光(EO)传感器在发射或云层破裂期间对弹道导弹(BM)进行检测和跟踪,对于预示预警和火控雷达是一种很有前途的可能性。但是,成功检测到BM取决于所应用的红外(IR)通道,因为威胁和背景的发射和反射在不同的光谱(IR-)频段和针对不同的观察场景而有所不同。另外,基于卫星的系统的空间分辨率还决定了信噪比(SCR),因此也决定了飞行路径的可预测性。通常可用的卫星图像提供光谱带中的数据,这些光谱带适用于遥感应用和地球表面观测。但是,在BM预警领域中,这些频段并不重要,因此必须对背景数据进行仿真。本文通过权衡抑制背景特征与威胁信号强度之间的权衡,对适用于导弹探测的红外波段进行分析。其中包括针对不同气候和季节以及针对各种云类型和覆盖范围的不同光谱带中的背景辐射的辐射概览。简要介绍了在威胁情况下的BM签名及其轨迹。指出了不同观测场景和不同空间分辨率对SCR的影响。本文还介绍了用于模拟自然背景光谱辐射图像的软件,MATERAE(ONERA [1]的“用于环境和场景模拟的地球高级建模”)。

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