从研究到生产:通过辐射测量块调整,自动改进根据机载图像制作的正射影像图的色调调整

L. Markelin, Mikko Sippo, Petri Leiso, E. Honkavaara
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引用次数: 0

摘要

摘要几十年来,利用航空成像制作正射影像图和正射影像图一直是各国测绘机构的标准程序。影响图像颜色或色调的因素有很多:一天中的时间和年份、大气、光照条件、视角和照射角度、BRDF 效果(双向反射分布函数)、物体、传感器和整个成像系统。创建色彩均匀的图像镶嵌图的定量和自动化解决方案是使用基于辐射测量块调整的方法,这种方法与更著名的几何块调整有相似之处。我们已将名为 RadBA 的辐射测量块调整方法应用到大型摄影测量相机采集的图像块中,该方法最初是为使用高光谱传感器采集的无人机图像块而开发的。我们的工作目标是1)加快向用于欧盟农业补贴监测的芬兰食品管理局(Finish Food Authority)提供正射影像的速度;2)提高向用于森林资源清查的芬兰森林中心(Finnish Forest Centre)提供的图像的质量;3)自动、快速并改进芬兰国家土地测量局(National Land Survey of Finland)当前的正射影像色彩平衡流程。基于 RadBA 的色调处理和 4 参数 BRDF 校正能够明显改善三个不同日期采集的图像镶嵌的色调质量。我们仍需要将 RadBA 工作流程的各个步骤自动化,并改进将每波段 16 位的马赛克图像转换为视觉效果良好的每波段 8 位马赛克图像的最后步骤。我们的长期目标是制作出色调优质、无缝的全芬兰正射影像马赛克。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From research to production: radiometric block adjustment to automate and improve tonal adjustment of orthomosaics created from airborne images
Abstract. Production of orthophotos and orthomosaics from airborne imaging has been standard procedure of National mapping agencies for decades. Various aspects affect to the colour, or tones of the images: time of the day and year, atmosphere, illumination conditions, view and illumination angle, BRDF-effects (Bi-directional reflectance distribution function), object, sensor, and whole imaging system. Quantitative and automated solution for creating evenly coloured image mosaics is to use method based on radiometric block adjustment, that has similarities to more well-known geometric block adjustment. We have applied radiometric block adjustment method called RadBA, originally developed for drone image blocks collected with hyperspectral sensor, to image block collected with large-format photogrammetric camera. Goals of our work are: 1) to speed up orthophoto deliveries to Finish Food Authority used for EU farming subsidies monitoring, 2) improve the quality of images delivered to Finnish Forest Centre used for forest inventory, and 3) to automate, fasten and improve the current colour balancing process of orthophotos at National Land Survey of Finland. RadBA-based tonal processing with 4-parameter BRDF-correction was able to clearly improve the tonal quality of the image mosaic collected during three different dates. We still need to automate various steps of the RadBA-workflow and improve final steps in converting 16-bits per band mosaics to visually good looking 8-bits per band mosaics. Our long-term goal is to create tonally high quality, seamless orthomosaic of whole Finland.
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