Performance Evaluation of Displacement Measurement System with Marker and Fixed Vision Sensor on Port Structures

Jiyoung Min, Ryulri Kim, H. Jeon
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Abstract

This study focused on the measurement of displacement on port structures with the combination of a marker and a vision sensor installed on the fixed location. The proposed algorithm optimizes the intrinsic parameters of the vision sensor using genetic algorithm and then measures the 6-DOF displacement automatically tracking feature points on the marker extracted through the image process. Experimental studies were carried out by using a general IP camera and a marker including 12 feature points. The distance between the camera and the marker was 10 m. Several types of displacements were induced with the precise motion stage, and the results showed that the measurement errors might be reasonable less than 3.5% in rotation and 4.0% in translation. This system was applied on the lock gate located in Incheon port, which corresponds to Type 1 facilities in Korea. The same camera was fixed at 24 m from the marker and the marker was moved by controlling the precise motion stage. The errors of measurements were less than 1 mm and 0.5 degrees, which were precise and accurate enough to evaluate the displacement in the field considering the present evaluation standard for drift, settlement, and slope on port facilities.
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基于标记和固定视觉传感器的港口结构位移测量系统性能评价
本研究主要针对港口结构位移的测量,采用在固定位置安装标记与视觉传感器相结合的方法。该算法利用遗传算法对视觉传感器的固有参数进行优化,然后通过图像处理提取的标记物上的特征点自动跟踪测量6自由度位移。实验研究采用普通IP摄像机和包含12个特征点的标记进行。相机与标记之间的距离为10米。利用精确的运动阶段诱导了几种类型的位移,结果表明,旋转测量误差小于3.5%,平移测量误差小于4.0%,是合理的。在相当于国内第1类设施的仁川港的船闸上也采用了该系统。同一台摄像机固定在距离标记点24 m处,通过控制精确运动台移动标记点。测量误差小于1 mm,误差小于0.5°,考虑到目前港口设施的漂移、沉降和坡度评价标准,测量精度和准确度足以在现场对位移进行评价。
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