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首页> 外文期刊>International journal of remote sensing >SeaWiFS ocean colour chlorophyll algorithms for the southern Baltic Sea
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SeaWiFS ocean colour chlorophyll algorithms for the southern Baltic Sea

机译:波罗的海南部的SeaWiFS海洋颜色叶绿素算法

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Simultaneous measurements of the remote sensing reflectance and chlorophyll-a concentration at nearly 700 stations in the Baltic Sea were collected in the years 1993-2001. The collected dataset was used for in situ validation of the standard Sea-viewing Wide Field of view Sensor (SeaWiFS) algorithms. The results confirm a large discrepancy between the observed chlorophyll-a concentrations and the concentrations calculated from the current SeaWiFS operational algorithm equations. New forms are proposed as chlorophyll algorithms for the SeaWiFS sensors or sensors with similar spectral bands. These forms include new coefficients and lower order of equations. As a two-band algorithm, a simple polynominal log-log equation is proposed: log(Chla)= -0.141-2.865R, where R is a band ratio equal to that of SeaWiFS OC2 algorithm. The four-band algorithm takes the form: log(Chla)=-0.028-3.9015.R, where R is a band ratio equal to that of SeaWiFS OC4 algorithm. These new forms allow improving accuracy for chlorophyll retrieval in the Baltic. Further, a considerable improvement in the accuracy of the chlorophyll concentration estimated from remote sensing algorithms required the use of a new set of the spectral bands in the equations. An algorithm with such a new set of two spectral bands has the form: log(Chla)=0.738-4.681R, where R=log[R_(rs)(550)/R_(rs)(590)]. The accuracy of this algorithm is much better than the previously mentioned algorithms and the authors propose application of the new spectral bands in future satellite sensors.
机译:在1993年至2001年期间,对波罗的海近700个站点的遥感反射率和叶绿素a浓度进行了同步测量。收集的数据集用于标准海景宽视野传感器(SeaWiFS)算法的现场验证。结果证实观察到的叶绿素-a浓度与根据当前SeaWiFS操作算法方程式计算出的浓度之间存在很大差异。对于SeaWiFS传感器或具有相似光谱带的传感器,提出了新形式作为叶绿素算法。这些形式包括新系数和低阶方程。作为两频带算法,提出了一个简单的多项式对数对数方程:log(Chla)= -0.141-2.865R,其中R是与SeaWiFS OC2算法相等的频带比。四频带算法采用以下形式:log(Chla)=-0.028-3.9015.R,其中R是与SeaWiFS OC4算法相等的频带比。这些新形式可以提高波罗的海叶绿素提取的准确性。此外,从遥感算法估计的叶绿素浓度的准确性上的显着提高要求在方程式中使用一组新的光谱带。具有这样一个新的两个光谱带集的算法的形式为:log(Chla)= 0.738-4.681R,其中R = log [R_(rs)(550)/ R_(rs)(590)]。该算法的精度比以前提到的算法好得多,作者建议在未来的卫星传感器中应用新的光谱带。

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