首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >Evaluation of a three-band model for estimating chlorophyll-a concentration in tidal reaches of the Pearl River Estuary, China
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Evaluation of a three-band model for estimating chlorophyll-a concentration in tidal reaches of the Pearl River Estuary, China

机译:估算珠江口潮汐地区叶绿素a浓度的三波段模型的评估

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摘要

Accurate assessment of phytoplankton chlorophyll-a (Chla) concentration in turbid waters by means of remote sensing was challenging due to the optical complexity of turbid waters. Recently, a conceptual model containing reflectance in three spectral bands in the red and near-infrared range of the spectrum was suggested for retrieving Chla concentrations in turbid productive waters. The objective of this paper was to evaluate the performance of this three-band model to estimate Chla concentration in the Pearl River Estuary (PRE), China. Reflectance spectra of surface water and water samples were collected concurrently. The samples contained variable Chla (4.80-92.60 mg/m~3) and total suspended solids (0.4-55.2 mg/L dry wt). Colored dissolved organic matter (CDOM) absorption at 400 nm was 0.40-1.41 m"1; turbidity ranged from 4 to 25 NTU (Nephelometric Turbidity Units). The three-band model was spectrally calibrated by iterative and least-square linear regression methods to select the optimal spectral bands for the most accurate Chla estimation. Strong linear relationships (R2 = 0.81, RMSE =1.4 mg/m3, N — 32) were established between measured Chla and the levels obtained from the calibrated three-band model [R~l(684)-R~1(690)] x R(718), where R(k) was the reflectance at wavelength A. The calibrated three-band model was independently validated (R~2 = 0.9521, RMSE = 6.44 mg/m3, N = 16) and applied to retrieve Chla concentrations from the calibrated EO-1 Hyperion reflectance data in the PRE on December 21, 2006. The EO-1 Hyperion-derived Chla concentrations were further validated using synchronous in situ data collected on the same day (R~2 = 0.64, RMSE = 2 mg/m~3, N = 9). The spatial tendency of Chla distribution mapping by Hyperion showed gradually increased concentrations of Chla farther from the river mouths (although decreasing from east to west), which were disturbed by the combination of river outlets and tidal current in Lingding Bay of the PRE. This observation conformed to previous observations and studies, and could reasonably be explained by geographical changes. Also, results indicated that the slope of the three-band regression line decreased as the Chla concentration increased, resulting in the first sensitive band of the three-band model to move towards short wavelengths. These findings validated the rationale behind the conceptual model and demonstrated the robustness of this algorithm for Chla retrieval from in situ data and the Hyperion satellite sensor in turbid estuarine waters of the PRE, China.
机译:由于浑浊水的光学复杂性,通过遥感准确评估浑浊水中浮游植物叶绿素a(Chla)的浓度具有挑战性。最近,有人提出了一个概念模型,该模型在光谱的红色和近红外范围内的三个光谱带中都有反射率,用于检索混浊生产水中的Chla浓度。本文的目的是评估该三波段模型的性能,以估计中国珠江口(PRE)中的Chla浓度。同时收集地表水和水样的反射光谱。样品中含有可变的Chla(4.80-92.60 mg / m〜3)和总悬浮固体(0.4-55.2 mg / L干重)。有色溶解有机物(CDOM)在400 nm处的吸收为0.40-1.41 m“ 1;浊度为4到25 NTU(浊度单位)。通过迭代和最小二乘线性回归方法对三波段模型进行光谱校正,以达到选择最合适的谱带以获得最准确的Chla估计在测得的Chla与从校准的三波段模型获得的水平之间建立了很强的线性关系(R2 = 0.81,RMSE = 1.4 mg / m3,N_32) l(684)-R〜1(690)] x R(718),其中R(k)是在波长A处的反射率。校准的三波段模型经过独立验证(R〜2 = 0.9521,RMSE = 6.44 mg / m3,N = 16),并用于从2006年12月21日的PRE中校准的EO-1 Hyperion反射率数据中检索Chla浓度。使用从EO-1 Hyperion采集的同步原位数据进一步验证了EO-1 Hyperion衍生的Chla浓度。同一天(R〜2 = 0.64,RMSE = 2 mg / m〜3,N = 9)。Chla分布的空间趋势Hyperion的定位图显示,远离河口的Chla浓度逐渐增加(尽管从东向西递减),这受到PRE灵顶湾的河道和潮流的共同影响。该观测结果与以前的观测结果和研究相符,可以通过地理变化合理地解释。同样,结果表明,随着Chla浓度的增加,三波段回归线的斜率减小,导致三波段模型的第一敏感波段向短波长方向移动。这些发现证实了概念模型背后的理论基础,并证明了该算法从原位数据和Hyper卫星传感器在中国PRE的混浊河口水中进行Chla检索的鲁棒性。

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  • 作者单位

    Guangdong Open Lab. ofGeospatial Information Technology and Application, Guangzhou Institute of Geography, Guangzhou 510070, China;

    Guangdong Open Lab. ofGeospatial Information Technology and Application, Guangzhou Institute of Geography, Guangzhou 510070, China,Department of Computer Engineering, Suzhou Vocational University, Suzhou 215104, China;

    Department of Computer Engineering, Suzhou Vocational University, Suzhou 215104, China;

    Department of Geography, Florida State University, Tallahassee, FL 32306, USA;

    Department of Civil Engineering, Florida State University, Tallahassee, FL 32310, USA,Key Laboratory of Yangtze River Water Environment, Ministry of Education, Tongji University, Shanghai 200092, China;

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  • 正文语种 eng
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  • 关键词

    chlorophyll-a; three-band model; evaluation; pearl river estuary; hyperion remote sensing;

    机译:叶绿素a;三波段模型;评价;珍珠河口;高倍遥感;

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