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Continuous monitoring of coastline dynamics in western Florida with a 30-year time series of Landsat imagery

机译:使用Landsat影像的30年时间序列连续监测佛罗里达州西部的海岸线动态

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Continuous monitoring of coastline dynamics is of crucial importance to the understanding of relative contributions of various potential driving factors behind the long-term coastline change. While a large number of efforts have been made to extract coastline and detect coastline change with remotely sensed data, the temporal frequency and spatial resolution of coastline datasets obtained are generally not fine enough to reflect the detailed process of coastline retreat and/or advance, particularly in coastlines with subtle variability. To overcome these limitations, we developed a method to continuously monitor the dynamics of a muddy coastline with subtle variability in western Florida at annual and subpixel scales using time-series Landsat data (1984-2013). First, robust indicators were used to indicate the annual "average" location of the dynamic coastline. Due to the complexity of muddy-coast morphology, the annual average location is represented not by the coast "line", but by the fractional inundated "area" of coastline pixels (pixels where the coastline is located), namely annually inundated area. Second, the annually inundated area of coastline pixels was estimated with a model proposed in this study, and the uncertainty was estimated with the Monte Carlo method. The retrievals were validated at 10 sites with aerial imagery, and the overall RMSE (root mean square error) is 11.48%. Third, the long-term trend for the time series of annually inundated area was derived with a statistical model. The results indicate that the muddy coast in western Florida continues to shrink with an average rate of 0.42 +/- 0.05 km(2)/year during the three decades. This study demonstrates the feasibility of time-series Landsat data in continuous monitoring of coastline dynamics. (C) 2016 Elsevier Inc. All rights reserved.
机译:连续监测海岸线动态对了解长期海岸线变化背后各种潜在驱动因素的相对贡献至关重要。尽管已经做出了大量努力来提取海岸线并利用遥感数据检测海岸线变化,但是获得的海岸线数据集的时间频率和空间分辨率通常不够精细,无法反映出海岸线撤退和/或前进的详细过程,特别是在海岸线上变化不大。为了克服这些限制,我们开发了一种方法,可以使用Landsat时间序列(1984-2013)连续监测佛罗里达州西部在年像素和亚像素范围内变化不大的泥泞海岸线的动态。首先,使用可靠的指标来指示动态海岸线的年度“平均”位置。由于泥泞海岸形态的复杂性,年平均位置不是由海岸“线”表示,而是由海岸线像素(海岸线所在的像素)的分数被淹没“区域”表示,即每年被淹没的面积。其次,使用本研究提出的模型估算海岸线像素的年淹没面积,并使用蒙特卡洛方法估算不确定性。在10个具有航空影像的站点上对检索结果进行了验证,总体RMSE(均方根误差)为11.48%。第三,利用统计模型得出了年度淹没区域时间序列的长期趋势。结果表明,在过去的三十年中,佛罗里达州西部的泥泞海岸以每年平均0.42 +/- 0.05 km(2)的速度持续缩小。这项研究证明了时间序列Landsat数据在连续监测海岸线动态方面的可行性。 (C)2016 Elsevier Inc.保留所有权利。

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