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首页> 外文期刊>Journal of Applied Remote Sensing >Comparison of remote sensing algorithms for retrieval of suspended particulate matter concentration from reflectance in coastal waters
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Comparison of remote sensing algorithms for retrieval of suspended particulate matter concentration from reflectance in coastal waters

机译:遥感算法对沿海水域反射率的悬浮颗粒物质浓度的比较

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摘要

Suspended particulate matter (SPM) is a key environmental indicator for rivers, estuaries, and coastal waters, which can be calculated from remote sensing reflectance obtained by an airborne or satellite imager. Here, algorithms from prior studies are applied to a dataset of in-situ at surface hyperspectral remote sensing reflectance, collected in three geographic regions representing different water types. These data show the optically inherent exponential nature of the relationship between reflectance and sediment concentration. However, linear models are also shown to provide a reasonable estimate of sediment concentration when utilized with care in similar conditions to those under which the algorithms were developed, particularly at lower SPM values (0 to 20 mg/L). Fifteen published SPM algorithms are tested, returning strong correlations of R~2 > 0.7, and in most cases, R~2 > 0.8. Very low SPM values show weaker correlation with algorithm calculated SPM that is not wavelength dependent. None of the tested algorithms performs well for high SPM values (>30 mg/L), with most algorithms underestimating SPM. A shift toward a smaller number of simple exponential or linear models relating satellite remote sensing reflectance to suspended sediment concentration with regional consideration will greatly aid larger spatiotemporal studies of suspended sediment trends.
机译:悬浮的颗粒物(SPM)是河流,河口和沿海水域的关键环境指标,其可以根据空降或卫星成像仪获得的遥感反射率计算。这里,来自现有研究的算法应用于在表面上光谱遥感反射的原位原位的数据集,其在三个代表不同水类型的地理区域中收集。这些数据显示了反射率和沉积物浓度之间的关系的光学固有的指数性质。然而,也显示线性模型,以提供在与算法的类似条件下使用的沉积物浓度的合理估计,特别是在较低的SPM值(0至20mg / L)。测试十五个已发表的SPM算法,返回R〜2> 0.7的强相关性,并且在大多数情况下,R〜2> 0.8。非常低的SPM值显示与算法计算出的SPM不依赖于波长的算法较弱。没有测试的算法对于高SPM值(> 30mg / L)进行良好,大多数算法低估SPM。将卫星遥感反射与区域考虑的悬浮沉积物集中有关的少数简单指数或线性模型的转变将大大帮助对悬浮沉积趋势的更大的时空研究。

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