首页> 外文会议>Geoscience and Remote Sensing Symposium, 1996. IGARSS '96. 'Remote Sensing for a Sustainable Future.', International >Land cover change dynamics of a Himalayan watershed utilizing Indian Remote Sensing satellite (IRS) data
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Land cover change dynamics of a Himalayan watershed utilizing Indian Remote Sensing satellite (IRS) data

机译:利用印度遥感卫星(IRS)数据的喜马拉雅流域土地覆盖变化动态

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This study of an anthropogenically vibrant Sikkim Himalayan watershed shows rapid land cover changes within it. The area is a typical environmentally fragile terrain undergoing tremendous pressure on its natural resources. Considering the watershed as basic resource unit, the impacts of development are noteworthy. Indian Remote Sensing Satellite (IRS 1A/1B) data have been used in this study along with other collateral information for deriving land cover change dynamics. The variations over a period of four years on the classified land covers were determined. At level I, the land covers are forest, agricultural land, waste-land, water bodies and built-up land. At level II, forest has six, agricultural land has three and waste-land has two subclasses. Interpretations have been done using optical bands of IRS/LISS II sensor with good spectral resolutions in visible to near infra-red range and spatial resolution of 36.25 meters. Multidate single band as well as normal false color composite (FCC) scenes have been used. Ground-truth studies were done with suitable ground control points (GCPs). Remote sensing technique has been found cost-effective and less time consuming. This has provided much needed information for developmental planning in such a mountain environment. Sustainable development and environmental conservation strategies are perceived to be worked out faster and precisely for such inaccessible and difficult terrain taking cue from the land cover change dynamics.
机译:这项关于人为充满活力的锡金喜马拉雅流域的研究表明,其中的土地覆盖迅速变化。该地区是典型的环境脆弱地区,自然资源承受着巨大压力。以流域为基本资源单位,发展的影响是值得注意的。在这项研究中,印度遥感卫星(IRS 1A / 1B)数据已与其他附带信息一起用于得出土地覆盖变化动态。确定了四年来分类土地覆被的变化。在第一级,土地覆盖为森林,农业用地,荒地,水体和建成地。在第二级,森林有六个,农业用地有三个,荒地有两个子类。已经使用IRS / LISS II传感器的光学波段进行了解释,该波段在可见到近红外范围内具有良好的光谱分辨率,并且空间分辨率为36.25米。已使用多日期单波段以及正常的伪彩色合成(FCC)场景。使用合适的地面控制点(GCP)进行地面真相研究。已经发现遥感技术具有成本效益并且耗时较少。这为在这样的山区环境中进行发展规划提供了急需的信息。人们认为,针对这种难以接近和困难的地形(从土地覆被变化动态中获得线索),可持续发展和环境保护战略可以更快,更准确地制定出来。

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