Cheng Liangliang, de Groot Justin, Xie Kun, Si Yanxin, Han Xiaodong
Dynamics and Vibration Group, Engineering and Technology Institute Groningen, Faculty of Science and Engineering, University of Groningen, 9712 CP Groningen, The Netherlands.
Sensors (Basel). 2024 May 30;24(11):3541. doi: 10.3390/s24113541.
Accelerometers are commonly used to measure vibrations for condition monitoring in mechanical and civil structures; however, their high cost and point-based measurement approach present practical limitations. With rapid advancements in computer vision and deep learning, research into tracking the motion of individual pixels with vision cameras has increased. The recently developed CoTracker, a transformer-based model, has demonstrated excellence in motion tracking, yet its performance in measuring structural vibrations has not been fully explored. This paper investigates the efficacy of the CoTracker model in extracting full-field structural vibrations using cameras. It is initially applied to capture the dense point movements in video sequences of a cantilever beam recorded using a high-speed camera. Subsequently, modal analysis using delay-embedding dynamic mode decomposition (DMD) is conducted to extract modal parameters including natural frequencies, damping ratios, and mode shapes. The results, benchmarked against those from a reference accelerometer and the Finite Element Method (FEM) result, demonstrate CoTracker's high potential for general applicability in structural vibration measurements.
加速度计通常用于测量机械和土木结构中的振动以进行状态监测;然而,其高成本和基于点的测量方法存在实际局限性。随着计算机视觉和深度学习的快速发展,利用视觉相机跟踪单个像素运动的研究有所增加。最近开发的基于Transformer的CoTracker模型在运动跟踪方面表现出色,但其在测量结构振动方面的性能尚未得到充分探索。本文研究了CoTracker模型在使用相机提取全场结构振动方面的有效性。它最初被应用于捕捉使用高速相机记录的悬臂梁视频序列中的密集点运动。随后,使用延迟嵌入动态模式分解(DMD)进行模态分析,以提取包括固有频率、阻尼比和振型在内的模态参数。与参考加速度计的结果和有限元方法(FEM)的结果进行基准比较,结果表明CoTracker在结构振动测量中具有很高的普遍适用性潜力。