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首页> 外文期刊>Journal of Applied Remote Sensing >Algorithm for daytime radiation fog detection based on MODIS/TERRA data over land
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Algorithm for daytime radiation fog detection based on MODIS/TERRA data over land

机译:基于MODIS / TERRA陆地数据的白天辐射雾检测算法

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We present an algorithm for daytime radiation fog detection (ADRFD) to characterize the fog distribution over land areas through two main steps: (1) detection of areas with clouds and radiation fog based on edge pixels and (2) separation of radiation fog from clouds based on object properties. The algorithm is tested in southeast China over an area of 2;640;000 km~2 (longitude extent: 105°E to 122°E, latitude extent: 23°N to 40°N), with 1 km resolution moderate resolution imaging spectroradiometer/TERRA images, digital elevation model of China (grid size is 1 × 1 km~2 and accuracy of elevation is 25 m), and the fog detection accuracies are evaluated using the observation results from 3590 ground observation stations. Results show that ADRFD can detect areas with clouds and radiation fog and effectively differentiate radiation fog from clouds based on object properties with a Kappa coefficient of 0.89 and critical success index at 0.87. It is concluded that ADRFD is a promising approach for daytime radiation fog detection over large land surfaces based on the condition that fog objects do not intersect with cloud objects or are not located under cloud objects. Extensions of this current study will be on improving the parameters determination method of ADRFD. ADRFD can be used to detect other types of fog in different regions and different seasons theoretically, but it should be tested further. In addition, more improvements are needed to allow for the detection of smaller areas of fog and fog regions intersecting with or under clouds.
机译:我们提出了一种用于白天辐射雾检测(ADRFD)的算法,可通过两个主要步骤来表征陆地区域上的雾分布:(1)基于边缘像素检测云和辐射雾的区域,以及(2)辐射雾与云的分离基于对象属性。该算法在中国东南地区的2; 640; 000 km〜2(经度范围:105°E至122°E,纬度范围:23°N至40°N)上进行了测试,分辨率为1 km光谱仪/ TERRA图像,中国的数字高程模型(网格尺寸为1×1 km〜2,高程精度为25 m),并使用3590个地面观测站的观测结果评估了烟雾探测的准确性。结果表明,ADRFD可以根据对象属性(Kappa系数为0.89,临界成功指数为0.87)有效地检测出有云和辐射雾的区域,并有效地将辐射雾与云区分开。结论是,基于雾物体不与云物体相交或不位于云物体下方的条件,ADRFD是一种用于大面积地面上白天辐射雾检测的有前途的方法。本研究的扩展将在于改进ADRFD的参数确定方法。理论上,ADRFD可用于检测不同地区和不同季节的其他类型的雾,但应进一步测试。另外,需要更多的改进以允许检测雾的较小区域和与云相交或在云下方的雾区域。

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