首页> 外文会议>Image Processing and Pattern Recognition in Remote Sensing II >Integration of Remote Sensing, GIS and GPS techniques for dynamic monitoring of land resources in mountainous areas—A case study of Renhe District, Sichuan, China
【24h】

Integration of Remote Sensing, GIS and GPS techniques for dynamic monitoring of land resources in mountainous areas—A case study of Renhe District, Sichuan, China

机译:遥感,GIS和GPS技术的集成对山区土地资源的动态监测-以四川省仁和区为例

获取原文
获取原文并翻译 | 示例

摘要

Geometric and radiometric correction, image processing, information extraction and the integration of remote sensing, GIS and GPS in the specific approach for dynamic monitoring of land resources in mountainous areas are discussed. A synthesized method combining the image difference approach with comparison post classification is employed and a monitoring system based on remote sensing, GIS and GPS are set up. Different illumination conditions are key factors influencing the spectral features in mountainous areas, thus the comprehensive analysis of DEM and NDVI are employed to restrain the influence of terrain. Errors also commonly generate in the registration of different temporal images and much change information is usually lost when the mean-value smoothing template is employed in the image processing in mountainous areas. To reduce the information lost, a regional auto-adaptive smoothing template is employed. As a case study, according to the specific characteristics of mountainous areas, the TM images acquired from both 1994 and 1996 are processed for land change detection in Renhe District, Sichuan. Field experiments for radiometric correction are conducted in the areas of 25 Km~2 in this district. The changed areas are precisely surveyed and validated after the fieldwork in which the database of detailed land survey is acquired. Combined with Geological Information System (GIS) technology and Global Position System (GPS), a 3S-based dynamic monitoring system of land resources change information in Renhe District is established, which helps the data renewal and daily management. Finally, the key factors influencing the accuracy of information extracting in mountainous areas are discussed.
机译:讨论了对山区土地资源进行动态监测的特定方法中的几何和辐射校正,图像处理,信息提取以及遥感,GIS和GPS的集成。采用图像差分法与比较岗位分类相结合的综合方法,建立了基于遥感,GIS和GPS的监控系统。不同的光照条件是影响山区光谱特征的关键因素,因此对DEM和NDVI进行综合分析以限制地形的影响。当在山区的图像处理中使用均值平滑模板时,通常还会在不同时间图像的配准中产生错误,并且通常会丢失很多更改信息。为了减少信息丢失,采用了区域自适应平滑模板。作为一个案例,根据山区的特点,对1994年和1996年采集的TM图像进行处理,以用于四川仁和区的土地变化检测。在该地区25 Km〜2的区域内进行了辐射校正的现场试验。经过实地调查后,对变更后的区域进行了精确的勘测并进行了验证,在实地调查中获得了详细的土地勘测数据库。结合地质信息系统(GIS)技术和全球定位系统(GPS),建立了基于3S的人和区土地资源变化信息动态监测系统,有利于数据更新和日常管理。最后,讨论了影响山区信息提取准确性的关键因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号