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SWIR range performance prediction for long-range applications

机译:远程应用的SWIR范围性能预测

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摘要

Long range imaging systems have applications in vessel traffic monitoring, border and coastal observation, and generic surveillance. Often, sign reading and identification capabilities are required, and medium or long-wave infrared systems are simply not the best solution for these tasks, because of the low scene contrast. Among reflected light imagers, the short-wave infrared has a competitive advantage over the visible and near-infrared spectrum, being less affected by path attenuation, scattering and turbulence. However, predicting a SWIR system long range performance still represents a challenge because of the need of an accurate atmospheric modelling. In this paper, we present the key limiting performance factors for long range applications, and how we used popular atmospheric models to extract the synthetic simulation parameters needed for range performance prediction. We then present a case study for a long range application, where the main requirement is to read a vessel name at distances greater than 10km. The results show a significant advantage of SWIR over visible and near-infrared solutions for long range identification tasks.
机译:远程成像系统可用于船舶交通监控,边境和沿海观察以及通用监视。通常,需要具有标志读取和识别功能,而中景或长波红外系统由于场景对比度低而根本不是解决这些任务的最佳解决方案。在反射光成像器中,短波红外光谱比可见光谱和近红外光谱具有竞争优势,受路径衰减,散射和湍流的影响较小。但是,由于需要精确的大气建模,因此预测SWIR系统的远程性能仍然是一个挑战。在本文中,我们提出了用于远程应用的关键限制性能因素,以及如何使用流行的大气模型来提取进行距离性能预测所需的综合模拟参数。然后,我们提出一个针对远程应用的案例研究,其中主要要求是读取距离大于10公里的船只名称。结果表明,对于远距离识别任务,SWIR优于可见和近红外解决方案。

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