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Achieving Subpixel Georeferencing Accuracy in the Canadian AVHRR Processing System

机译:在加拿大AVHRR处理系统中实现亚像素地理配准精度

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Precise geolocation is one of the fundamental requirements for satellite imagery to be suitable for climate applications. The Global Climate Observing System and the Committee on Earth Observing Satellites identified the requirement for the accuracy of geolocation of satellite data for climate applications as 1/3 field of view (FOV). This requirement for the series of the Advanced Very High Resolution Radiometer (AVHRR) on the National Oceanic and Atmospheric Administration platforms cannot be met without implementing the ground control point (GCP) correction, particularly for historical data, because of limited accuracy of orbit modeling and knowledge of satellite attitude angles. This paper presents a new method for precise georeferencing of the AVHRR imagery developed as part of the new Canadian AVHRR processing system (CAPS) designed for generating high-quality AVHRR satellite climate data record at 1-km spatial resolution. The method works in swath projection and uses the following: 1) the reference monthly images from Moderate Resolution Imaging Spectroradiometer at 250-m resolution; 2) orthorectification to correct for surface elevation; and 3) a novel image matching technique in swath projection to achieve the subpixel resolution. The method is designed for processing daytime data as it intensively employs observations from optical solar bands, the near-infrared channel in particular. The application of the developed processing system showed that the algorithm achieved better than 1/3 FOV geolocation accuracy for AVHRR 1-km scenes. It has very high efficiency rate (> 97%) due to the dense and uniform GCP coverage of the study area (5700 × 4800 km2 ), covering the entire Canada, the Northern U.S., Alaska, Greenland, and surrounding oceans.
机译:精确的地理位置是适合气候应用的卫星图像的基本要求之一。全球气候观测系统和地球观测卫星委员会确定了气候应用卫星数据的地理定位精度要求为1/3视场(FOV)。如果不进行地面控制点(GCP)校正,尤其是对历史数据,由于轨道建模和建模的准确性有限,就无法满足美国国家海洋与大气管理局平台上的超高分辨率高分辨率辐射计(AVHRR)系列的要求。卫星姿态角的知识。本文提出了一种新的方法,用于对AVHRR影像进行精确的地理配准,该方法是作为新的加拿大AVHRR处理系统(CAPS)的一部分开发的,该系统旨在生成1 km空间分辨率的高质量AVHRR卫星气候数据记录。该方法适用于条幅投影,并使用以下方法:1)来自中等分辨率成像光谱仪的250微米分辨率的参考月度图像; 2)矫正矫正表面高度; 3)一种新型的测幅投影图像匹配技术,以达到亚像素分辨率。该方法专为处理白天数据而设计,因为该方法大量使用了来自太阳光波段(尤其是近红外通道)的观测结果。所开发处理系统的应用表明,该算法在AVHRR 1 km场景中获得了优于1/3 FOV地理位置的精度。由于研究区域(5700×4800 km2)的密集且均匀的GCP覆盖,它具有非常高的效率(> 97%),覆盖了整个加拿大,美国北部,阿拉斯加,格陵兰,和周围的海洋。

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