首页> 外文会议>第21届国际摄影测量与遥感大会(ISPRS 2008)论文集 >RADIOMETRIC CALIBRATION OF FULL-WAVEFORM SMALL-FOOTPRINT AIRBORNE LASER SCANNERS
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RADIOMETRIC CALIBRATION OF FULL-WAVEFORM SMALL-FOOTPRINT AIRBORNE LASER SCANNERS

机译:全波形小脚印机载激光扫描仪的放射学标定

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Small-footprint airborne laser scanners (ALS) are lidar instruments originally developed for topographic mapping. In recent years ALS sensors are increasingly used also in other applications (forest mapping, building extraction, power line modelling, etc.) and their technical capabilities are steadily improving. While the first ALS systems only allowed determining the range from the sensor to the target, current ALS sensors also record the amplitude of the backscattered echoes (peak power of the received echo), or even the complete echo waveform. To fully utilise the potential of the echo amplitude and waveform measurements in applications, it is necessary to perform a radiometric calibration. The calibration process involves the definition of the physical quantities describing the backscattering properties of objects and the development of practical calibration techniques. These issues are currently addressed by an EuroSDR (http://www.eurosdr.net/) project which aims at developing ALS calibration standards. This paper reviews the definition of common scattering (reflectance) parameters and concludes that in the case of small-footprint airborne laser scanning,
机译:小型机载激光扫描仪(ALS)是激光雷达仪器,最初是为地形图开发的。近年来,ALS传感器也越来越多地用于其他应用程序(森林测绘,建筑物提取,电力线建模等)中,其技术能力也在稳步提高。虽然第一个ALS系统仅允许确定从传感器到目标的范围,但是当前的ALS传感器还记录了反向散射回波的幅度(接收回波的峰值功率),甚至是完整的回波波形。为了在应用中充分利用回波幅度和波形测量的潜力,必须执行辐射度校准。校准过程涉及描述物体后向散射特性的物理量的定义以及实际校准技术的发展。 EuroSDR(http://www.eurosdr.net/)项目目前正在解决这些问题,该项目旨在开发ALS校准标准。本文回顾了常见散射(反射率)参数的定义,并得出结论,在小尺寸机载激光扫描的情况下,

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