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Surface reflectance variations in realistic targets

机译:现实目标的表面反射率变化

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Signature prediction models have become an increasingly important tool for the ground combat vehicle designer in recent years. System designers have been successful in prototyping entire vehicles in each spectral band. With this success, focused efforts to improve the accuracy of these signature models have produced robust, validated performance for many operational conditions. One of the most recent improvement in prediction models for ground vehicle systems has been improvements in surface reflectance. Surface reflectance is central to the predicted performance of these models and range from simple to very complex. Simple surface reflectance models treats the surface as totally lambertiant has an advantage of being fast to calculate but does not take into account the specular nature which all surfaces posses. The bi-directional reflectance distribution function (BRDF) is a more complex representation which allows for a more accurate representation of surface reflectance phenomena. The input to the BRDF usually comes from a laboratory sample measured in a laboratory setting. These laboratory samples are made to be perfect so that comparisons can be made between variations in formulas for the coatings. The limitation of these inputs is that surfaces that are exposed to environments effects and normal daily use are the more representative of data we are interested in. Other effects such as the conditions under which the surface coatings are applied can cause reflectance variability as well. This paper explores the variability on real targets and compares them to laboratory samples. The implication of these variations to signature models will be explored.
机译:签名预测模型近年来已成为地面战斗车设计师越来越重要的工具。系统设计人员已经成功地在每个光谱频带中的整个车辆上的原型设计。凭借这种成功,重点努力提高这些签名模型的准确性,为许多操作条件产生了强大的验证性能。地面车辆系统预测模型的最新改进之一已经改善了表面反射率。表面反射率是这些模型的预测性能的核心,并且从简单到非常复杂的范围。简单的表面反射模型将表面视为完全灯泡的优势,其优点是快速计算,但不考虑所有表面拥有的镜面性质。双向反射率分布函数(BRDF)是一种更复杂的表示,其允许更准确地表示表面反射率现象。 BRDF的输入通常来自在实验室设置中测量的实验室样本。这些实验室样品是完美的,因此可以在涂层的公式的变化之间进行比较。这些输入的限制是暴露于环境效果和正常日常使用的表面是我们感兴趣的数据的代表性。其他效果,例如施加表面涂层的条件也会导致反射率变异性。本文探讨了真实目标的可变性,并将其与实验室样本进行比较。将探讨这些变化对签名模型的含义。

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