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Data processing of remotely sensed airborne hyperspectral data using the Airborne Processing Library (APL): Geocorrection algorithm descriptions and spatial accuracy assessment

机译:使用机载处理库(APL)的遥感机载高光谱数据的数据处理:地球校正算法描述和空间准确性评估

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Remote sensing airborne hyperspectral data are routinely used for applications including algorithm development for satellite sensors, environmental monitoring and atmospheric studies. Single flight lines of airborne hyperspectral data are often in the region of tens of gigabytes in size. This means that a single aircraft can collect terabytes of remotely sensed hyperspectral data during a single year. Before these data can be used for scientific analyses, they need to be radiometrically calibrated, synchronised with the aircraft's position and attitude and then geocorrected. To enable efficient processing of these large datasets the UK Airborne Research and Survey Facility has recently developed a software suite, the Airborne Processing Library (APL), for processing airborne hyperspectral data acquired from the Specim AISA Eagle and Hawk instruments. The APL toolbox allows users to radiometrically calibrate, geocorrect, reproject and resample airborne data. Each stage of the toolbox outputs data in the common Band Interleaved Lines (BILs) format, which allows its integration with other standard remote sensing software packages. APL was developed to be user-friendly and suitable for use on a workstation PC as well as for the automated processing of the facility; to this end APL can be used under both Windows and Linux environments on a single desktop machine or through a Grid engine. A graphical user interface also exists. In this paper we describe the Airborne Processing Library software, its algorithms and approach. We present example results from using APL with an AISA Eagle sensor and we assess its spatial accuracy using data from multiple flight lines collected during a campaign in 2008 together with in situ surveyed ground control points.
机译:遥感机载高光谱数据通常用于各种应用,包括卫星传感器的算法开发,环境监测和大气研究。机载高光谱数据的单线飞行通常在数十GB的范围内。这意味着一架飞机可以在一年内收集TB级的遥感高光谱数据。在将这些数据用于科学分析之前,需要对它们进行放射线校准,与飞机的位置和姿态同步,然后进行地理校正。为了有效处理这些大型数据集,英国空降研究与调查设施最近开发了一套软件,空降处理库(APL),用于处理从Specim AISA Eagle和Hawk仪器获取的空降高光谱数据。 APL工具箱使用户可以对航空数据进行辐射校准,地理校正,重新投影和重新采样。工具箱的每个阶段均以通用的频带交错线(BIL)格式输出数据,从而使其能够与其他标准遥感软件包集成。 APL的开发易于用户使用,适合在工作站PC上使用以及用于工厂的自动化处理。为此,APL可以在Windows和Linux环境下在一台台式机上或通过Grid引擎使用。图形用户界面也存在。在本文中,我们描述了机载处理库软件,其算法和方法。我们提供了将APL与AISA Eagle传感器配合使用的示例结果,并使用2008年战役期间收集的多条航线的数据以及在现场勘测的地面控制点来评估其空间准确性。

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