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一种监测漂浮大型绿藻水华的简单有效方法:以黄海为例的案例研究。

A simple and effective method for monitoring floating green macroalgae blooms: a case study in the Yellow Sea.

作者信息

Zhang Hailong, Qiu Zhongfeng, Devred Emmanuel, Sun Deyong, Wang Shengqiang, He Yijun, Yu Yue

出版信息

Opt Express. 2019 Feb 18;27(4):4528-4548. doi: 10.1364/OE.27.004528.

Abstract

Several algorithms have been proposed to detect floating macroalgae blooms in the global ocean. However, some of them are difficult or even impossible to routinely apply by non-experts because of performing a sophisticated atmospheric correction scheme or due to the mismatch in spectral bands from one sensor to another. Here, a generic, simple and effective method, referred to as the Floating Green Tide Index (FGTI), was proposed to detect floating green macroalgae blooms (GMB). The FGTI was defined as the difference between greenness and wetness features extracted from digital number (DN) observation through Tasseled Cap Transformation analysis, providing the advantage of bypassing the atmospheric correction procedure. Through cross-index and cross-sensor comparisons, the FGTI showed similar performance to the existing VB-FAH (Virtual-Baseline Floating macroAlgae Height) and FAI (Floating Algae Index) algorithms but proved more robust than the traditional NDVI (Normalized Difference Vegetation Index) in terms of response to perturbations by environmental conditions, viewing geometry, sun glint, and thin cloud contamination. Given the requirement for spectral bands in the current and planned satellite sensors, the FGTI design can easily be extended to any satellite sensor, and therefore provide an excellent data resource for studying GMB in any part of the global ocean.

摘要

已经提出了几种算法来检测全球海洋中的漂浮大型海藻水华。然而,其中一些算法由于需要执行复杂的大气校正方案,或者由于不同传感器的光谱波段不匹配,非专业人员很难甚至无法常规应用。在此,提出了一种通用、简单且有效的方法,称为漂浮绿潮指数(FGTI),用于检测漂浮绿藻水华(GMB)。FGTI被定义为通过缨帽变换分析从数字数(DN)观测中提取的绿度和湿度特征之间的差异,具有无需进行大气校正程序的优势。通过交叉指数和跨传感器比较,FGTI表现出与现有的VB-FAH(虚拟基线漂浮大型海藻高度)和FAI(漂浮藻类指数)算法相似的性能,但在对环境条件、观测几何、太阳耀斑和薄云污染引起的扰动的响应方面,比传统的归一化差异植被指数(NDVI)更稳健。鉴于当前和计划中的卫星传感器对光谱波段的要求,FGTI设计可以轻松扩展到任何卫星传感器,从而为研究全球海洋任何区域的GMB提供了出色的数据资源。

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