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首页> 外文期刊>Journal of Remote Sensing & GIS >Evaluation of Automatic Shadow Detection Approaches Using ADS-40 High Radiometric Resolution Aerial Images at High Mountainous Region
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Evaluation of Automatic Shadow Detection Approaches Using ADS-40 High Radiometric Resolution Aerial Images at High Mountainous Region

机译:使用ADS-40高辐射分辨率航空影像在高山地区评估自动阴影检测方法

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Shadow detection is a very important pre-processing step for remote sensing applications, particularly for high spatial resolution data. This study adopts the high resolution aerial images to investigate the shadow detection issue. Testing three shadow detection methods (Brightness method, Nagao’s method, NIR method), and look for a suitable shadow detection method for high radiometric resolution aerial images. We also discuss the differences for each method. The results indicate Brightness method and Nagao’s method are significantly better than NIR method. NIR often confuses water bodies with shadows due to the low reflectance of water. The data space we used, Nagao’s modified intensity and brightness are better than NIR channel to discriminate shadows from non-shadows, and the two methods are both not easily confused with shadow and water bodies. In our study, we found that most of cases presented shadow in the histogram of first mode, and the first valley detection thresholding is a robust way to detect the shadow threshold of histogram. A good data space and defining the optimum thresholding method will affect histogram thresholding result.
机译:阴影检测是遥感应用中非常重要的预处理步骤,特别是对于高空间分辨率数据。本研究采用高分辨率的航空影像来研究阴影检测问题。测试三种阴影检测方法(亮度方法,Nagao方法,NIR方法),并为高辐射分辨率的航空影像寻找合适的阴影检测方法。我们还将讨论每种方法的差异。结果表明,亮度法和长尾法明显优于近红外法。由于水的反射率低,NIR经常使水体与阴影混淆。我们使用的数据空间是Nagao修改后的强度和亮度,它比NIR通道更好地区分了阴影和非阴影,并且这两种方法都不易与阴影和水体混淆。在我们的研究中,我们发现大多数情况在第一模式的直方图中呈现阴影,而第一谷值检测阈值检测是检测直方图阴影阈值的可靠方法。良好的数据空间和定义最佳阈值方法将影响直方图阈值结果。

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