首页> 外文会议>Conference on Sensors, Systems, and Next-Generation Satellites VII; Sep 8-10, 2003; Barcelona, Spain >Application Of Fusion Techniques Between Radarsat And Landsat Images For Landuse Distribution At Cartagena (Colombia) Using Supervised Classification
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Application Of Fusion Techniques Between Radarsat And Landsat Images For Landuse Distribution At Cartagena (Colombia) Using Supervised Classification

机译:基于监督分类的雷达卫星与陆地卫星影像融合技术在卡塔赫纳(哥伦比亚)土地利用分布中的应用

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Use of satellite images has been of great help for studies of landuse distribution in different places at different conditions. Landsat images have been one of the best ones due to their great spectral resolution (Landsat TM-7 with 7 bands), but their limited spatial resolution of 30m has been of the biggest disadvantages for detailed landuse studies. In the other hand Radarsat images have one of the best spatial resolution (6 m) but poor spectral resolution (pancromatic mode). Besides their good spatial resolution Radar images have other advantages over other images like their capacity to operate under any climatic conditions and at any time (day or night). Radar images are able to get information even in cloudy conditions and this characteristic make them perfect for studies of coastal zones and specially on tropical areas, where most part of the year are covered by clouds. The study area in this case was located at a tropical area (09°33'45" N and 75°23'45" W) so it was absolutely necessary to find a solution to perform the best detailed landuse distribution in order to actualize coastal zone management plans for the area. Nowadays techniques have been able to overcome these disadvantages. Applications of fusion techniques were able to solve these limitations, by the combination of the best characteristics of these two types of images. In this specific case the good multiespectral resolution of Landsat images and the good spatial resolution of Radarsat images were combined in order to obtain a completely new image, but only with 20 m of spatial resolution since Radarsat resolution was decreased due to the exaggerated difference in spatial resolution between the two images (6m and 30m). This is very much recommended to decrease errors created during the pixel to pixel fusion. With this new image obtained a good and detailed landuse distribution was performed by the application of supervised classifications in the study area. The results obtained were of good percentage of reliability and then used for new coastal zone plans.
机译:卫星图像的使用对于研究不同条件下不同地方的土地利用分布有很大的帮助。 Landsat影像由于其光谱分辨率高(Landsat TM-7具有7个波段)而成为最佳影像之一,但是其有限的30m空间分辨率一直是详细的土地利用研究的最大弊端。另一方面,Radarsat影像具有最佳的空间分辨率(6 m)之一,但光谱分辨率却很差(全景模式)。雷达图像除了具有良好的空间分辨率外,还具有其他图像无法比拟的优势,例如它们可以在任何气候条件下以及在任何时间(白天或夜晚)运行。雷达图像即使在多云的条件下也能够获取信息,这一特征使其非常适合研究沿海地区,特别是在热带地区,因为一年中大部分时间都被云层覆盖。在这种情况下,研究区域位于热带地区(北纬09°33'45“和西经75°23'45”),因此绝对有必要找到一种解决方案,以进行最佳的详细土地利用分布,以实现沿海该区域的区域管理计划。如今,技术已经能够克服这些缺点。通过融合这两种图像的最佳特性,融合技术的应用能够解决这些局限性。在此特定情况下,将Landsat图像的良好多光谱分辨率与Radarsat图像的良好空间分辨率结合在一起以获得全新的图像,但由于空间的夸大差异导致Radarsat分辨率降低,因此只有20 m的空间分辨率两个图像(6m和30m)之间的分辨率。强烈建议这样做,以减少像素间融合过程中产生的错误。利用该新图像,通过在研究区域中应用监督分类,可以获得良好而详细的土地利用分布。获得的结果具有很高的可靠性百分比,然后可用于新的沿海地区计划。

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