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Automatic extraction of shorelines from Landsat TM and ETM+ multi-temporal images with subpixel precision

机译:以亚像素精度自动从Landsat TM和ETM +多时相图像中提取海岸线

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摘要

A high precision geometric method for automated shoreline detection from Landsat TM and ETM+ imagery is presented. The methodology is based on the application of an algorithm that ensures accurate image geometric registration and the use of a new algorithm for sub-pixel shoreline extraction, both at the sub-pixel level. The analysis of the initial errors shows the influence that differences in reflectance of land cover types have over shoreline detection, allowing us to create a model to substantially reduce these errors. Three correction models were defined according to the type of gain used in the acquisition of the original Landsat images. Error assessment tests were applied on three artificially stabilised coastal segments that have a constant and well-defined land-water boundary. A testing set of 45 images (28 TM, 10 ETM high-gain and 7 ETM low-gain) was used. The mean error obtained in shoreline location ranges from 1.22 to 1.63 m, and the RMSE from 4.69 to 5.47 m. Since the errors follow a normal distribution, then the maximum error at a given probability can be estimated. The results confirm that the use of Landsat imagery for detection of instantaneous coastlines yields accuracy comparable to high-resolution techniques, showing the potential of Landsat TM and ETM images in those applications where the instantaneous lines are a good geomorphological descriptor.
机译:提出了从Landsat TM和ETM +影像中自动检测海岸线的高精度几何方法。该方法基于一种算法的应用,该算法可确保精确的图像几何配准以及在子像素级别均使用新算法进行子像素海岸线提取。初始误差的分析表明,土地覆盖类型的反射率差异对海岸线检测的影响,从而使我们能够创建模型来大幅减少这些误差。根据采集原始Landsat图像所用增益的类型,定义了三个校正模型。对三个人为稳定的沿海地段进行了误差评估测试,这些沿海地段具有恒定且界限分明的陆水边界。使用了45张图像的测试集(28 TM,10 ETM高增益和7 ETM低增益)。海岸线位置的平均误差范围为1.22至1.63 m,RMSE范围为4.69至5.47 m。由于误差服从正态分布,因此可以估计给定概率下的最大误差。结果证实,使用Landsat影像检测瞬时海岸线的准确性可与高分辨率技术相媲美,显示了Landsat TM和ETM图像在瞬时线是良好地貌描述符的那些应用中的潜力。

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