首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >A Near-Infrared Band-Based Algorithm for Suspended Sediment Estimation for Turbid Waters Using the Experimental Tiangong 2 Moderate Resolution Wide-Wavelength Imager
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A Near-Infrared Band-Based Algorithm for Suspended Sediment Estimation for Turbid Waters Using the Experimental Tiangong 2 Moderate Resolution Wide-Wavelength Imager

机译:基于近红外频段的浊度沉积物估计,用于使用实验的天孔2中频分辨率宽波长成像仪

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Ocean color remote sensing using visible spectral bands with or without the combination of near infrared (NIR) bands for the retrieval of suspended sediment (SS) concentration (SSC) has been proven to be successful in low and medium turbid waters, but the visible bands are prone to be saturated and less sensitive to high-turbid waters. This paper proposes an NIR bands SS index (NISSI) for SSC estimation using an experimental ocean-color sensor, the moderate resolution wide-wavelength imager onboard the Chinese Tiangong 2 Space Lab. The NISSI takes advantage of the reflectance peak height around 820 nm, which is highly related with SSC. Validation using in situ dataset at the Poyang and Taihu Lakes of China and comparison with conventional approaches showed higher accuracy with mean relative error values of 21.9% and 18.6%, respectively. Benefits of NISSI algorithm is proven with higher saturation level of 300 mg/L. Sensitivity of the algorithm is affected by the sensor noise, and SSC variations lower than 12 mg/L would be significantly impeded. The results showed a promising solution for ocean-color remote sensing of extremely turbid waters, with alternative or new NIR bands around 820 nm, or short-wave infrared bands for SSC estimation.
机译:已经证明,使用具有或不具有近红外(NIR)浓度(SSC)的近红外(NIR)带的组合的可见光谱带的海洋颜色遥感(SSC)中,在低中和中浑浊的水域中成功,但可见带容易发生饱和和对高浑水的敏感。本文提出了使用实验海洋颜色传感器的SSC估计的NIR带SS指数(NISSI),中间天平2空间实验室的中等分辨率宽波长成像仪。 NISSI利用约820nm的反射率峰值高度,这与SSC高度相关。验证在中国鄱阳和太湖湖泊中使用的验证,与传统方法的比较显示,平均相对误差值分别为21.9%和18.6%。 NISSI算法的优点是经过验证的,饱和水平为300 mg / L.算法的灵敏度受传感器噪声的影响,并且可以显着地阻碍低于12mg / L的SSC变化。结果表明,用于极其混浊水域的海洋遥感的有希望的解决方案,其中包含约820nm的替代或新的nir带,或用于SSC估计的短波红外条带。

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