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Miniaturization of High-Spectral-Spatial Resolution Hyperspectral Imagers on Unmanned Aerial Systems

机译:无人航空系统中高光谱空间分辨率高光谱成像仪的小型化

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Traditional airborne environmental monitoring has frequently deployed hyperspectral imaging as a leading tool for characterizing and analyzing a scene's critical spectrum-based signatures for applications in agriculture genomics and crop health, vegetation and mineral monitoring, and hazardous material detection. As the acceptance of hyperspectral evaluation grows in the airborne community, there has been a dramatic trend in moving the technology from use on midsize aircraft to Unmanned Aerial Systems (UAS). The use of UAS accomplishes a number of goals including the reduction in cost to run multiple seasonal evaluations over smaller but highly valuable land-areas, the ability to use frequent data collections to make rapid decisions on land management, and the improvement of spatial resolution by flying at lower altitudes (<500 ft.). Despite this trend, there are several key parameters affecting the use of traditional hyperspectral instruments in UAS with payloads less than 10 lbs. where size, weight and power (SWAP) are critical to how high and how far a given UAS can fly. Additionally, on many of the light-weight UAS, users are frequently trying to capture data from one or more instruments to augment the hyperspectral data collection, thus reducing the amount of SWAP available to the hyperspectral instrumentation. The following manuscript will provide an analysis on a newly-developed miniaturized hyperspectral imaging platform, the Nano-Hyperspec®, which provides full hyperspectral resolution and traditional hyperspectral capabilities without sacrificing performance to accommodate the decreasing SWAP of smaller and smaller UAS platforms. The analysis will examine the Nano-Hyperspec flown in several UAS airborne environments and the correlation of the systems data with LiDAR and other GIS datasets.
机译:传统的机载环境监测经常部署高光谱成像技术,作为表征和分析场景中基于光谱的关键特征的领先工具,用于农业基因组学和作物健康,植被和矿物质监测以及有害物质检测。随着机载界对高光谱评估的接受度不断提高,将技术从中型飞机上的应用转移到无人航空系统(UAS)方面已出现了戏剧性的趋势。使用UAS可以实现许多目标,包括降低在较小但价值很高的土地上进行多次季节性评估所需的成本,使用频繁的数据收集来快速做出土地管理决策的能力以及通过以下方式提高空间分辨率的能力:在较低的高度(<500英尺)飞行。尽管有这种趋势,但仍有几个关键参数会影响有效载荷小于10磅的UAS中传统高光谱仪器的使用。尺寸,重量和功率(SWAP)对于给定的UAS可以飞行多高和飞行多远至关重要。另外,在许多轻量级UAS上,用户经常尝试从一种或多种仪器中捕获数据以增强高光谱数据收集,从而减少了可用于高光谱仪器的SWAP数量。以下手稿将对新开发的微型化高光谱成像平台Nano-Hyperspec®进行分析,该平台可提供完整的高光谱分辨率和传统的高光谱功能,而不会牺牲性能以适应越来越小的UAS平台越来越小的SWAP。分析将检查在几种UAS机载环境中飞行的Nano-Hyperspec,以及系统数据与LiDAR和其他GIS数据集的相关性。

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