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Lakes without Landsat? An alternative approach to remote lake monitoring with MODIS 250 m imagery

机译:没有Landsat的湖泊?使用MODIS 250 m影像进行湖泊远程监控的另一种方法

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摘要

We evaluated use of MODIS 250 m imagery for remote lake monitoring in Maine. Despite limited spectral resolution (visible red and near infrared bands), the twice daily image capture has a potential advantage over conventionally used, often cloudy Landsat imagery (16 day interval) when short time windows are of interest. We analyzed 364 eligible (contains 100 ha) Maine lakes during late summer (Aug-early Sep) 2000-2011. The red band was strongly correlated with natural log-transformed Secchi depth (SD), and the addition of ancillary lake and watershed variables explained some variability in ln(SD) (R~2 = 0.68-0.85; 9 models). Weak spectral resolution and variable lake conditions limited accurate lake monitoring to relatively productive periods in late summer, as indicated by inconsistent, sometimes weak regressions during June and July when lakes were clearer and less stable (R~2 = 0.19-0.74; 8 models). Additionally, SD estimates derived from 2 sets of concurrent MODIS and Landsat imagery generally did not agree unless Landsat imagery (30 m) was resampled to 250 m, likely owing to various factors related to scale. Average MODIS estimates exceeded those of Landsat by 0.35 and 0.49 m on the 2 dates. Overall, MODIS 250 m imagery are potentially useful for remote lake monitoring during productive periods when Landsat data are unavailable; however, analyses must occur when algal communities are stable and well-developed, are biased toward large lakes, may overestimate SD, and accuracy may be unreliable without non-spectral lake predictors.
机译:我们评估了将MODIS 250 m影像用于缅因州远程湖泊监测的情况。尽管光谱分辨率有限(可见的红色和近红外波段),但是当需要使用短时间窗口时,每天两次的图像捕获相对于通常使用的,通常为多云的Landsat图像(16天间隔)具有潜在的优势。我们分析了2000-2011年夏末(八月初至九月初)的364个合格的(占地100公顷)缅因州的湖泊。红带与自然对数转换的Secchi深度(SD)密切相关,附加的湖泊和分水岭变量解释了ln(SD)的某些变化(R〜2 = 0.68-0.85; 9个模型)。弱的光谱分辨率和变化的湖泊条件将精确的湖泊监测限制在夏末的相对高产期,这表现为6月和7月不一致的,有时较弱的回归,这时湖泊更清晰且不稳定(R〜2 = 0.19-0.74; 8个模型) 。此外,除非同时将Landsat影像(30 m)重新采样到250 m,否则从2套同时进行的MODIS和Landsat影像中获得的SD估计值通常不一致,这可能是由于与比例尺相关的各种因素所致。在两个日期,MODIS的平均估计值比Landsat的估计值高出0.35和0.49 m。总体而言,如果没有Landsat数据,则MODIS 250 m影像对于生产期的远程湖泊监测很有用。但是,必须在藻类群落稳定且发育良好,偏向大型湖泊,可能高估SD以及没有非光谱湖泊预测因子的准确性不可靠的情况下进行分析。

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