Unmanned aerial vehicle-based computer vision for structural vibration measurement and condition assessment: A concise survey

Kai Zhou , Zequn Wang , Yi-Qing Ni , Yang Zhang , Jiong Tang
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引用次数: 2

Abstract

With the rapid advance in camera sensor technology, the acquisition of high-resolution images or videos has become extremely convenient and cost-effective. Computer vision that extracts semantic knowledge directly from digital images or videos, offers a promising solution for non-contact and full-field structural vibration measurement and condition assessment. Unmanned aerial vehicles (UAVs), also known as flying robots or drones, are being actively developed to suit a wide range of applications. Taking advantage of its excellent mobility and flexibility, camera-equipped UAV systems can facilitate the use of computer vision, thus enhancing the capacity of the structural condition assessment. The current article aims to provide a concise survey of the recent progress and applications of UAV-based computer vision in the field of structural dynamics. The different aspects to be discussed include the UAV system design and algorithmic development in computer vision. The main challenges, future trends, and opportunities to advance the technology and close the gap between research and practice will also be stated.

基于无人机的结构振动测量与状态评估计算机视觉研究综述
随着相机传感器技术的快速发展,获取高分辨率图像或视频变得非常方便和划算。计算机视觉直接从数字图像或视频中提取语义知识,为非接触式、全场结构振动测量和状态评估提供了一种很有前途的解决方案。无人机(UAV),也称为飞行机器人或无人机,正在积极开发以适应广泛的应用。配备摄像头的无人机系统具有良好的机动性和灵活性,可以方便地使用计算机视觉,从而提高结构状态评估的能力。本文旨在简要介绍无人机计算机视觉在结构动力学领域的最新进展和应用。要讨论的不同方面包括无人机系统设计和计算机视觉中的算法开发。还将说明主要挑战、未来趋势以及推进技术和缩小研究与实践之间差距的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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