首页> 外文会议>European Calibration and Orientation Workshop >STUDY OF LEVER-ARM EFFECT USING EMBEDDED PHOTOGRAMMETRY AND ON-BOARD GPS RECEIVER ON UAV FOR METROLOGICAL MAPPING PURPOSE AND PROPOSAL OF A FREE GROUND MEASUREMENTS CALIBRATION PROCEDURE
【24h】

STUDY OF LEVER-ARM EFFECT USING EMBEDDED PHOTOGRAMMETRY AND ON-BOARD GPS RECEIVER ON UAV FOR METROLOGICAL MAPPING PURPOSE AND PROPOSAL OF A FREE GROUND MEASUREMENTS CALIBRATION PROCEDURE

机译:在无人机上使用嵌入式摄影测量和板载GPS接收器的杠杆式臂效应,用于计量映射目的和自由地测量校准程序的建议

获取原文

摘要

Nowadays, Unmanned Aerial Vehicle (UAV) on-board photogrammetry knows a significant growth due to the democratization of using drones in the civilian sector. Also, due to changes in regulations laws governing the rules of inclusion of a UAV in the airspace which become suitable for the development of professional activities. Fields of application of photogrammetry are diverse, for instance: architecture, geology, archaeology, mapping, industrial metrology, etc. Our research concerns the latter area. Vinci-Construction-Terrassement is a private company specialized in public earthworks that uses UAVs for metrology applications. This article deals with maximum accuracy one can achieve with a coupled camera and GPS receiver system for direct-georeferencing of Digital Surface Models (DSMs) without relying on Ground Control Points (GCPs) measurements. This article focuses specially on the lever-arm calibration part. This proposed calibration method is based on two steps: a first step involves the proper calibration for each sensor, i.e. to determine the position of the optical center of the camera and the GPS antenna phase center in a local coordinate system relative to the sensor. A second step concerns a 3d modeling of the UAV with embedded sensors through a photogrammetric acquisition. Processing this acquisition allows to determine the value of the lever-arm offset without using GCPs.
机译:如今,无人驾驶飞行器(UAV)在板上摄影测量中的摄影测量非常了解,由于在民用部门使用无人机的民主化,这是一个显着的增长。此外,由于规定法律的变化,管理空域中拥有无人机的规则,这是适合职业活动的发展。摄影测量的应用领域是多样的,例如:架构,地质,考古学,映射,工业计量等。我们的研究涉及后者区域。 Vinci-Construction-Terrasement是一家专门从事公共土方工程的私营公司,用于使用无人机进行计量应用。本文涉及最大精度,可以通过耦合相机和GPS接收系统实现,用于数字表面模型(DSM)的直接地地理(DSM)而不依赖于地面控制点(GCP)测量。本文专注于杠杆手臂校准部件。这一提出的校准方法基于两个步骤:第一步涉及每个传感器的适当校准,即确定相机光学中心的位置和相对于传感器的局部坐标系中的GPS天线相位中心。第二步涉及通过摄影测量采集的与嵌入式传感器的3D建模。处理此采集允许在不使用GCP的情况下确定杠杆手臂偏移的值。

著录项

相似文献

  • 外文文献
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