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Optimized Performance Parameters for Nighttime Multispectral Satellite Imagery to Analyze Lightings in Urban Areas

机译:优化的夜间多光谱卫星图像性能参数以分析城市的照明

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摘要

Contrary to its daytime counterpart, nighttime visible and near infrared (VIS/NIR) satellite imagery is limited in both spectral and spatial resolution. Nevertheless, the relevance of such systems is unquestioned with applications to, e.g., examine urban areas, derive light pollution, and estimate energy consumption. To determine optimal spectral bands together with required radiometric and spatial resolution, at-sensor radiances are simulated based on combinations of lamp spectra with typical luminances according to lighting standards, surface reflectances, and radiative transfers for the consideration of atmospheric effects. Various band combinations are evaluated for their ability to differentiate between lighting types and to estimate the important lighting parameters: efficacy to produce visible light, percentage of emissions attributable to the blue part of the spectrum, and assessment of the perceived color of radiation sources. The selected bands are located in the green, blue, yellow-orange, near infrared, and red parts of the spectrum and include one panchromatic band. However, these nighttime bands tailored to artificial light emissions differ significantly from the typical daytime bands focusing on surface reflectances. Compared to existing or proposed nighttime or daytime satellites, the recommended characteristics improve, e.g., classification of lighting types by >10%. The simulations illustrate the feasible improvements in nocturnal VIS/NIR remote sensing which will lead to advanced applications.
机译:与白天相比,夜间可见和近红外(VIS / NIR)卫星图像在光谱和空间分辨率上都受到限制。然而,此类系统的相关性在例如检查城市区域,产生光污染和估计能量消耗的应用中是毫无疑问的。为了确定最佳光谱带以及所需的辐射度和空间分辨率,根据照明标准,表面反射率和辐射传递,结合考虑大气效应的典型亮度,基于灯光谱与典型亮度的组合,模拟传感器处的辐射度。评估各种频段组合的能力,以区分不同的照明类型并估算重要的照明参数:产生可见光的功效,归因于光谱蓝色部分的发射百分比以及对辐射源感知颜色的评估。选定的波段位于光谱的绿色,蓝色,橙黄色,近红外和红色部分,并且包括一个全色波段。但是,这些针对人造光量身定制的夜间波段与侧重于表面反射率的典型白天波段明显不同。与现有或建议的夜间或白天卫星相比,推荐的特性例如将照明类型的分类提高了> 10%。仿真说明了夜间VIS / NIR遥感的可行性改进,这将导致先进的应用。

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