首页> 外文期刊>Mechanical systems and signal processing >Non-contact structural displacement measurement using Unmanned Aerial Vehicles and video-based systems
【24h】

Non-contact structural displacement measurement using Unmanned Aerial Vehicles and video-based systems

机译:非接触结构位移测量使用无人驾驶飞行器和基于视频系统

获取原文
获取原文并翻译 | 示例

摘要

This article describes an innovative methodology for estimating in-plane horizontal displacements of Civil Engineering structures based on video systems integrated on Unmanned Aerial Vehicles (UAVs). As the structure and the UAV are both in motion, estimating absolute structural displacements involves, first, assessing the relative displacements of the UAV-structure based on target tracking, and second, subtracting movement of the UAV based on the data derived from an embedded Inertial Measuring Unit (1MU). Computer-vision processing tools based on heuristic features were developed for target tracking, while an efficient numerical integration strategy was implemented for processing IMU data. A successful integration process requires a baseline correction of the records through the application of high-pass filters and a rigorous control of distortion errors. The validation of the proposed methodology was based on exploratory dynamic tests performed in the laboratory and in the field.The laboratory test involved measuring the displacements of a moving target, positioned over a seismic table using a Linear Variable Differential Transformer (LVDT), a DC accelerom-eter and the UAV video system in a stationary position. An excellent agreement was achieved for the three estimated displacements, both in the time and frequency domains. In particular, the comparison between the video and the LVDT displacement records showed a peak value error of 0.096 mm and a Root Mean Square (RMS) error of 3.1%.The field test consisted of measuring the displacements of a target fixed to a massive Reinforced Concrete (RC) wall based on the UAV video system in motion. Under these circumstances, the target does not experience any movement, and therefore, the virtual displacement of the target estimated by the video is due exclusively to the self-movements of the UAV. The comparison between the video and the IMU displacement records shows a good agreement, with a peak value error of 1.47 mm (15.5% relative error) and a RMS error of 9.3%.The results of this study are a step forward in estimating the absolute displacements of a vibrating structure based on camera-based measurement from UAVs, specifically with the support of IMU systems for the elimination of measurement inaccuracies as a result of the UAV motion.
机译:本文介绍了一种创新方法,用于基于在无人机(UAV)上集成的视频系统估算土木工程结构的平面水平位移的创新方法。由于结构和UAV都在运动中,估计绝对结构位移涉及,首先评估基于目标跟踪的UAV结构的相对位移,并基于从嵌入式惯性导出的数据来减去UV的移动测量单元(1MU)。基于启发式特征的计算机视觉处理工具是为目标跟踪开发的,而实现了有效的数值集成策略,用于处理IMU数据。成功的集成过程需要通过应用高通滤波器和对失真误差的严格控制来基线校正记录。拟议方法的验证是基于在实验室和现场进行的探索性动态测试。涉及测量移动目标的位移的实验室测试,使用线性可变差压变压器(LVDT),DC定位在地震台上加速 - eter和UAV视频系统在静止位置。在时间和频率域中的三个估计的位移实现了一个很好的协议。特别地,视频和LVDT位移记录之间的比较显示了0.096mm的峰值误差和1.1%的根均线(RMS)误差为3.1%。现场测试包括测量固定到巨大增强的目标的位移基于UAV视频系统的混凝土(RC)墙。在这种情况下,目标不遇到任何移动,因此,视频估计的目标的虚拟位移是由于UAV的自动运动。视频与IMU位移记录之间的比较显示了一个良好的一致性,峰值误差为1.47毫米(相对误差15.5%)和9.3%的rms误差。该研究的结果是估计绝对的前进基于从无人机的基于相机的测量的振动结构的位移,具体地利用IMU系统的支持,以消除无人机运动的测量不准确性。

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