首页> 外文会议>Asian conference on remote sensing;ACRS >COMPARISON OF THE ADVANCED LAND OBSERVING SATELLITE (ALOS) DATA TO THE LIGHT DETECTION AND RAGING (LIDAR) DATA, SHUTTLE RADAR TOPOGRAPHY MISSION (SRTM) DATA, AND THE SYNTHETIC APERTURE RADAR (SAR) DATA FOR THE PHILIPPINES' DREAM/PHIL-LIDAR1 PROGRAM
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COMPARISON OF THE ADVANCED LAND OBSERVING SATELLITE (ALOS) DATA TO THE LIGHT DETECTION AND RAGING (LIDAR) DATA, SHUTTLE RADAR TOPOGRAPHY MISSION (SRTM) DATA, AND THE SYNTHETIC APERTURE RADAR (SAR) DATA FOR THE PHILIPPINES' DREAM/PHIL-LIDAR1 PROGRAM

机译:菲律宾的梦幻/ PHIL-LIDAR卫星的高级土地观测卫星(ALOS)数据与光探测和跟踪(LIDAR)数据,穿梭雷达地形图(SRTM)数据和合成孔径雷达(SAR)数据的比较

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The Light Detection and Ranging (LiDAR) derived Digital Elevation Models (DEMs) produced by the UP DREAM Program are used to produce the up-to-date hazard maps of the major river basins in the Philippines. These DEMs are used to produce the flood models of the river basins. However, several unavoidable data gaps can be found in the DEMs because of two major reasons: (1) the varying cloud cover in the areas when the plane is flying, and (2) the varying terrain of the areas which makes it difficult to easily change the altitude of the plane. As a result, the major river basins are not fully covered because of the several no data patches found. This paper presents the results of the accuracy assessments done to determine which geospatial dataset can be integrated into the LiDAR data to fully cover the river basin areas. Several accuracy assessments were done into the following spatial datasets: Shuttle radar Topography Mission (SRTM), Advanced Land Observing Satellite (ALOS), and the Synthetic Aperture Radar (SAR) data. The SRTM and ALOS are both open source geospatial datasets. Three accuracy assessments were done: vertical accuracy assessment using field validation points, Histogram Profiling, and the Drainage production assessment. The overall vertical accuracy shows RMS error of 3. 48 m, 1.92 m, and 1.96 m for SRTM, ALOS, and SAR respectively, when compared with the LiDAR DEM. The vertical accuracy also shows a Standard Deviation of 3.45 m, 1.92 m, and 1.91 m for SRTM, ALOS, and SAR respectively. The slope and profile of the DEMs are also affected by the difference in spatial resolution. Thus affecting the drainage network delineation for the study area. These results can serve as a basis for selecting which DEM can be integrated into the LiDAR data.
机译:UP DREAM计划产生的基于光检测和测距(LiDAR)的数字高程模型(DEM)用于绘制菲律宾主要流域的最新灾害图。这些DEM用于生成流域的洪水模型。但是,由于两个主要原因,在DEM中会发现一些不可避免的数据缺口:(1)飞机飞行时该区域的云量变化很大;(2)该地区的地形变化很大,因此很难轻松实现更改飞机的高度。结果,由于没有找到几个数据补丁,主要流域没有被完全覆盖。本文介绍了准确性评估的结果,以确定可以将哪些地理空间数据集整合到LiDAR数据中以完全覆盖流域地区。对以下空间数据集进行了一些精度评估:穿梭雷达地形任务(SRTM),高级陆地观测卫星(ALOS)和合成孔径雷达(SAR)数据。 SRTM和ALOS都是开源地理空间数据集。进行了三个精度评估:使用现场验证点的垂直精度评估,直方图分析和排水生产评估。与LiDAR DEM相比,SRTM,ALOS和SAR的整体垂直精度显示的RMS误差分别为3. 48 m,1.92 m和1.96 m。垂直精度还显示SRTM,ALOS和SAR的标准偏差分别为3.45 m,1.92 m和1.91 m。 DEM的斜率和轮廓也受空间分辨率差异的影响。从而影响研究区域的排水管网轮廓。这些结果可作为选择可将哪些DEM集成到LiDAR数据中的基础。

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