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FlexBRDF:一种用于机载成像光谱飞行线分组处理的灵活双向反射分布函数校正方法

FlexBRDF: A Flexible BRDF Correction for Grouped Processing of Airborne Imaging Spectroscopy Flightlines.

作者信息

Queally Natalie, Ye Zhiwei, Zheng Ting, Chlus Adam, Schneider Fabian, Pavlick Ryan P, Townsend Philip A

机构信息

Department of Forest and Wildlife Ecology University of Wisconsin-Madison Madison WI USA.

Jet Propulsion Laboratory California Institute of Technology Pasadena CA USA.

出版信息

J Geophys Res Biogeosci. 2022 Jan;127(1):e2021JG006622. doi: 10.1029/2021JG006622. Epub 2022 Jan 24.

Abstract

Bidirectional reflectance distribution function (BRDF) effects are a persistent issue for the analysis of vegetation in airborne imaging spectroscopy data, especially when mosaicking results from adjacent flightlines. With the advent of large airborne imaging efforts from NASA and the U.S. National Ecological Observatory Network (NEON), there is increasing need for methods that are flexible and automatable across images with diverse land cover. Flexible bidirectional reflectance distribution function (FlexBRDF) is built upon the widely used kernel method, with additional features including stratified random sampling across flightline groups, dynamic land cover stratification by normalized difference vegetation index (NDVI), interpolation of correction coefficients across NDVI bins, and the use of a reference solar zenith angle. We demonstrate FlexBRDF using nine long (150-400 km) airborne visible/infrared imaging spectrometer (AVIRIS)-Classic flightlines collected on 22 May 2013 over Southern California, where diverse land cover and a wide range of solar illumination yield significant BRDF effects. We further test the approach on additional AVIRIS-Classic data from California, AVIRIS-Next Generation data from the Arctic and India, and NEON imagery from Wisconsin. Comparison of overlapping areas of flightlines show that models built from multiple flightlines performed better than those built for single images (root mean square error improved up to 2.3% and mean absolute deviation 2.5%). Standardization to a common solar zenith angle among a flightline group improved performance, and interpolation across bins minimized between-bin boundaries. While BRDF corrections for individual sites suffice for local studies, FlexBRDF is an open source option that is compatible with bulk processing of large airborne data sets covering diverse land cover needed for calibration/validation of forthcoming spaceborne imaging spectroscopy missions.

摘要

双向反射分布函数(BRDF)效应是机载成像光谱数据分析中一个长期存在的问题,特别是在拼接相邻航线的结果时。随着美国国家航空航天局(NASA)和美国国家生态观测站网络(NEON)开展大规模机载成像工作,对能够灵活且自动处理具有不同土地覆盖类型图像的方法的需求日益增加。灵活双向反射分布函数(FlexBRDF)基于广泛使用的核方法构建,具有额外的功能,包括跨航线组的分层随机采样、通过归一化植被指数(NDVI)进行动态土地覆盖分层、跨NDVI区间插值校正系数以及使用参考太阳天顶角。我们使用2013年5月22日在南加州采集的九条长(150 - 400千米)的机载可见/红外成像光谱仪(AVIRIS)-Classic航线数据来演示FlexBRDF,那里多样的土地覆盖和广泛的太阳光照产生了显著的BRDF效应。我们进一步在来自加利福尼亚的其他AVIRIS-Classic数据、来自北极和印度的AVIRIS-下一代数据以及来自威斯康星州的NEON图像上测试该方法。航线重叠区域的比较表明,由多条航线构建的模型比为单幅图像构建的模型表现更好(均方根误差最多提高了2.3%,平均绝对偏差提高了2.5%)。将航线组中的太阳天顶角标准化提高了性能,并且跨区间插值使区间边界之间的差异最小化。虽然针对单个地点的BRDF校正足以满足局部研究的需求,但FlexBRDF是一个开源选项,它与大规模机载数据集的批量处理兼容,这些数据集涵盖了即将开展的星载成像光谱任务校准/验证所需的不同土地覆盖类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c769/9286663/43d5df3b4733/JGRG-127-0-g002.jpg

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