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使用最小二乘图像匹配进行亚像素目标定位的动态摄影测量法测量三维振动运动以提高精度。

Measurement of 3-D Vibrational Motion by Dynamic Photogrammetry Using Least-Square Image Matching for Sub-Pixel Targeting to Improve Accuracy.

作者信息

Lee Hyoseong, Rhee Huinam, Oh Jae Hong, Park Jin Ho

机构信息

Department of Civil Engineering, Sunchon National University, Sunchon 57922, Korea.

Department of Mechanical & Aerospace Engineering, Sunchon National University, Sunchon 57922, Korea.

出版信息

Sensors (Basel). 2016 Mar 11;16(3):359. doi: 10.3390/s16030359.

Abstract

This paper deals with an improved methodology to measure three-dimensional dynamic displacements of a structure by digital close-range photogrammetry. A series of stereo images of a vibrating structure installed with targets are taken at specified intervals by using two daily-use cameras. A new methodology is proposed to accurately trace the spatial displacement of each target in three-dimensional space. This method combines the correlation and the least-square image matching so that the sub-pixel targeting can be obtained to increase the measurement accuracy. Collinearity and space resection theory are used to determine the interior and exterior orientation parameters. To verify the proposed method, experiments have been performed to measure displacements of a cantilevered beam excited by an electrodynamic shaker, which is vibrating in a complex configuration with mixed bending and torsional motions simultaneously with multiple frequencies. The results by the present method showed good agreement with the measurement by two laser displacement sensors. The proposed methodology only requires inexpensive daily-use cameras, and can remotely detect the dynamic displacement of a structure vibrating in a complex three-dimensional defection shape up to sub-pixel accuracy. It has abundant potential applications to various fields, e.g., remote vibration monitoring of an inaccessible or dangerous facility.

摘要

本文探讨了一种通过数字近景摄影测量法来测量结构三维动态位移的改进方法。使用两台日常相机,按指定间隔拍摄安装有目标的振动结构的一系列立体图像。提出了一种新方法来精确追踪每个目标在三维空间中的空间位移。该方法将相关性与最小二乘图像匹配相结合,从而能够获得亚像素级的目标定位,以提高测量精度。利用共线方程和空间后方交会理论来确定内、外方位参数。为验证所提方法,进行了实验以测量由电动振动台激励的悬臂梁的位移,该悬臂梁在复杂构型下以多种频率同时进行弯曲和扭转的混合运动。本方法的结果与两个激光位移传感器的测量结果显示出良好的一致性。所提方法仅需使用价格低廉的日常相机,并且能够以亚像素精度远程检测以复杂三维变形形状振动的结构的动态位移。它在各个领域都有丰富的潜在应用,例如对难以接近或危险设施的远程振动监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f67b/4813934/d4a41a4d4f20/sensors-16-00359-g001.jpg

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