首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >QUANTITATIVE INVERSION OF CHLOROPHYLL A CONCENTRATION AND ANALYSIS OF TEMPORAL AND SPATIAL CHARACTERISTICS IN HONGKONG OFFSHORE WATERS BASED ON TIME-SERIES HJ-1A/B MULTISPECTRAL DATA
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QUANTITATIVE INVERSION OF CHLOROPHYLL A CONCENTRATION AND ANALYSIS OF TEMPORAL AND SPATIAL CHARACTERISTICS IN HONGKONG OFFSHORE WATERS BASED ON TIME-SERIES HJ-1A/B MULTISPECTRAL DATA

机译:基于时间序列HJ-1A / B多光谱数据的叶绿素叶绿素叶绿素浓度分析的浓度及分析分析

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In order to meet the demand of obtaining chlorophyll a concentration distribution in the offshore waters of Hong Kong on a rapid and large scale, based on the daily measured chlorophyll a concentration data and the HJ-1A/B satellite multispectral data in 2009–2019. Taking Modis-Aqua and Himawari series chlorophyll a concentration of remote sensing products as comparative data. Through per-process to extracted the reflectivity of each band combined and statistical correlation analysis with measured data, select the highest correlation band combination as the characteristic variable to statistical regression analysis with two-thirds of the measured chlorophyll a concentration data, constructing multiple regression algorithms. Determination of the best inversion algorithm by verified accuracy of the remaining one-third of the measured data. Inversion of chlorophyll a concentration in the offshore waters of Hong Kong from 2009 to 2019, the results show: 1). The best inversion algorithm is a univariate cubic regression algorithm, R2 is 0.942, RMSE is 0.285 μg/L, RPD is 33%; 2). The overall trend of remote products is the same as the measured data, but the value is slightly higher than the measured data;3). The distribution characteristics in the offshore waters of Hong Kong in the recent ten years are “high in the east and low in the west”, and the average concentration in the western waters is about 5 μg/L lower than the eastern waters.
机译:为了满足在2009 - 2019年日常测量的叶绿素A浓度数据和HJ-1A / B卫星多光谱数据,以快速和大规模在香港海上水中获得叶绿素浓度分布的需求。采用Modis-Aqua和Himawari系列叶绿素A浓度遥感产品作为比较数据。通过每个过程提取每个频带的反射率和用测量数据来选择最高的相关频带组合,作为统计回归分析的特征变量,用三分之二的测量叶绿素浓度数据,构建多元回归算法。通过验证剩余的三分之一的测量数据的验证精度确定最佳反转算法。从2009年到2019年的香港海上水域中叶绿素中叶绿素的反演,结果表明:1)。最佳反转算法是一款单变量立方回归算法,R2为0.942,RMSE为0.285μg/ L,RPD为33%; 2)。远程产品的整体趋势与测量数据相同,但该值略高于测量数据; 3)。近十年来香港海上水域的分布特征是“东部高,西方低,西水水平的平均浓度约为5微米/升。

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