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Techniques for measuring three-dimensional displacement vector using ground-based interferometric synthetic aperture radar

机译:使用地面干涉性合成孔径雷达测量三维位移载体的技术

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Over the past 10 years,slope monitoring radar via the interferometry technique has evolved as an important tool for safety-critical monitoring of pit wall movements in surface mining.While radar can provide near real-time high spatial resolution surface displacement movement,the displacement vector measured using interferometry is lineof-site(LOS)to the radar position and does not provide a spatially oriented vector.Using two or more ground-based interferometric synthetic aperture radar(GBInSAR)systems to rapidly record continuous,spatially dense LOS displacement data of an open pit slope in’stereo’,has potential to provide detailed vector movement across an entire wall or whole pit.The radar displacement vectors can be combined to create a pseudo three-dimensional(3D)displacement map of the pit slope using millions of monitoring points.Data collected from several radar systems has potential to greatly improve the understanding of the 3D kinematics of a large rock slope and further assist in better mine planning and design,thus allowing more efficient mine operations.This paper will cover examples and analysis of pseudo 3D displacement map data from GBInSAR systems.
机译:在过去的10年中,斜坡通过干涉测量技术监视雷达已经演变为在表面mining.While雷达坑壁运动安全关键监控的重要工具,可以提供接近实时的高空间分辨率的地表位移运动,位移矢量使用干涉测量是lineof现场(LOS)的雷达位置,并且不以快速记录连续提供一个空间定向vector.Using两个或更多个基于地面的干涉合成孔径雷达(GBInSAR)系统,在空间上致密的LOS位移数据露天边坡in'stereo”,有潜力在整个墙壁或整个pit.The雷达位移矢量提供详细的矢量运动可被组合以创建伪三维(3D)位移用百万监测的凹坑斜率的地图points.Data从几个雷达系统收集有潜力极大提高大型岩质边坡,进一步屁股的3D运动的理解IST在更好矿井规划和设计,从而允许更有效的矿井operations.This纸将涵盖实施例和从GBInSAR系统伪三维位移的地图数据的分析。

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