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An Integrated Use of Topography with RSI in Gully Mapping Shandong Peninsula China

机译:山东半岛沟壑区测绘中地形与RSI的综合应用

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摘要

Taking the Quickbird optical satellite imagery of the small watershed of Beiyanzigou valley of Qixia city, Shandong province, as the study data, we proposed a new method by using a fused image of topography with remote sensing imagery (RSI) to achieve a high precision interpretation of gully edge lines. The technique first transformed remote sensing imagery into HSV color space from RGB color space. Then the slope threshold values of gully edge line and gully thalweg were gained through field survey and the slope data were segmented using thresholding, respectively. Based on the fused image in combination with gully thalweg thresholding vectors, the gully thalweg thresholding vectors were amended. Lastly, the gully edge line might be interpreted based on the amended gully thalweg vectors, fused image, gully edge line thresholding vectors, and slope data. A testing region was selected in the study area to assess the accuracy. Then accuracy assessment of the gully information interpreted by both interpreting remote sensing imagery only and the fused image was performed using the deviation, kappa coefficient, and overall accuracy of error matrix. Compared with interpreting remote sensing imagery only, the overall accuracy and kappa coefficient are increased by 24.080% and 264.364%, respectively. The average deviations of gully head and gully edge line are reduced by 60.448% and 67.406%, respectively. The test results show the thematic and the positional accuracy of gully interpreted by new method are significantly higher. Finally, the error sources for interpretation accuracy by the two methods were analyzed.
机译:以山东省栖霞市北岩子沟流域小流域的快鸟光学卫星影像为研究数据,提出了一种将地形与遥感影像融合的新方法,以实现高精度的解释。沟边缘线。该技术首先将遥感影像从RGB颜色空间转换为HSV颜色空间。然后通过野外调查获得沟边缘线和沟藻的斜率阈值,并分别使用阈值分割斜率数据。基于融合的图像结合沟壑阈值向量,修正了沟壑阈值向量。最后,可以基于修正后的沟渠thalweg矢量,融合图像,沟渠边缘线阈值矢量和斜率数据来解释沟渠边缘线。在研究区域中选择了一个测试区域以评估准确性。然后,使用偏差,kappa系数和误差矩阵的总体准确性,对仅通过解释遥感影像和融合图像来解释的沟壑信息进行准确性评估。与仅解释遥感影像相比,整体准确性和卡伯系数分别提高了24.080%和264.364%。沟渠头部和沟渠边缘线的平均偏差分别减少了60.448%和67.406%。测试结果表明,新方法解释的沟渠的主题精度和位置精度明显更高。最后,分析了两种方法解释精度的误差来源。

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