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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Geometric accuracy of remote sensing images over oceans: The use of global offshore platforms
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Geometric accuracy of remote sensing images over oceans: The use of global offshore platforms

机译:海洋遥感图像的几何准确性:使用全球海上平台

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摘要

The geometric accuracy of tens of millions of scenes of medium-resolution remote sensing (RS) images collected in the past 45 years has been systematically evaluated for land scenes, but the accuracy of ocean scenes is poorly known due to the lack of ground control points (GCPs). In this study, the locations of offshore platforms are first derived from time-series of Landsat-8 OLI images, and are then used as offshore reference points to systematically assess the geometric performance of RS images covering offshore oil/gas development areas. An inventory of 16,131 offshore platforms at the global scale is established, and then a novel method using the position-invariant characteristic of offshore platforms and the coherent characteristic of the geometric shift among tie-points (i.e. between sensed points from to-be-assessed images and the corresponding OLI-derived reference points) is developed for assessing the geometric accuracy of Landsat and other RS images. The method has been applied to 112,935 Landsat scenes (similar to 1.87% of the entire archive) over oceans. The results indicate an optimal performance of Landsat OLI images (both pre-collection and Collection-1) but a less reliable performance of Landsat TM/ETM + L1TP images. Approximately 50% of TM L1GS and ETM + L1GT images have at least 2 pixels of geometric error. The new reference points inventory and the developed method were also applied to many other low-resolution and finer-resolution imagery (e.g. VIIRS Night-fire product, Terra/Aqua MODIS active fire product, ENVISAT ASAR, ALOS-1 PALSAR, Sentinel-1 SAR, Sentinel-2 MSI, the National Agriculture Imagery Program (NAIP) aerial images, and images from several Chinese satellites), and a quantitative description of the geometric accuracy of these sensors is also presented. The findings suggest that the new offshore reference point inventory is probably useful to help establish more robust offshore GCPs for U.S. Geological Survey (USGS) GCP library and f
机译:已经系统地评估了过去45年收集的数千万个中型遥感(RS)图像的几何准确度,但是对土地场景进行了系统地评估了陆地场景,但由于缺乏地面控制点,海景的准确性是众所周知的(GCPS)。在这项研究中,海上平台的位置首先来自Landsat-8 OLI图像的时间序列,然后用作海上参考点,以系统地评估覆盖海上油/天然气开发区域的RS图像的几何性能。建立了全球范围内16,131个海上平台的库存,然后使用海上平台的位置不变特征的新方法以及连接点之间的几何偏移的相干特性(即,从待评估的感测到的感测点之间开发了图像和相应的OLI衍生的参考点,用于评估Landsat和其他RS图像的几何精度。该方法已应用于112,935个山地景观场景(类似于海洋的1.87%)。结果表明Landsat Oli图像(占用和收集-1的预热和收集-1)的最佳性能,但Landsat TM / ETM + L1TP图像的可靠性较低。大约50%的TM L1GS和ETM + L1GT图像具有至少2个几何误差的像素。新的参考点库存和开发方法也适用于许多其他低分辨率和更精细的图像(例如Viirs夜间消防产品,Terra / Aqua Modis Active Fire产品,Envisat Asar,Alos-1 Palsar,Sentinel-1 SAR,Sentinel-2 MSI,国家农业图像(NAIP)航空图像和来自几种中国卫星的图像)以及这些传感器的几何精度的定量描述。调查结果表明,新的海上参考点库存可能有助于帮助为美国地质调查(USGS)GCP库和F建立更强大的离岸GCP.

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