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A vision-based system for dynamic displacement measurement of long-span bridges : algorithm and verification

机译:基于视觉的大跨度桥梁动力位移测量系统:算法与验证

摘要

Dynamic displacement of structures is an important index for in-service structural condition and behavior assessment, but accurate measurement of structural displacement for large-scale civil structures such as long-span bridges still remains as a challenging task. In this paper, a vision-based dynamic displacement measurement system with the use of digital image processing technology is developed, which is featured by its distinctive characteristics in non-contact, long-distance, and high-precision structural displacement measurement. The hardware of this system is mainly composed of a high-resolution industrial CCD (charge-coupled-device) digital camera and an extended-range zoom lens. Through continuously tracing and identifying a target on the structure, the structural displacement is derived through cross-correlation analysis between the predefined pattern and the captured digital images with the aid of a pattern matching algorithm. To validate the developed system, MTS tests of sinusoidal motions under different vibration frequencies and amplitudes and shaking table tests with different excitations (the El-Centro earthquake wave and a sinusoidal motion) are carried out. Additionally, in-situ verification experiments are performed to measure the mid-span vertical displacement of the suspension Tsing Ma Bridge in the operational condition and the cable-stayed Stonecutters Bridge during loading tests. The obtained results show that the developed system exhibits an excellent capability in real-time measurement of structural displacement and can serve as a good complement to the traditional sensors.
机译:结构的动态位移是在役结构状态和行为评估的重要指标,但是对于大型民用结构(如大跨度桥梁)的结构位移的准确测量仍然是一项艰巨的任务。本文开发了一种利用数字图像处理技术的基于视觉的动态位移测量系统,该系统具有非接触式,长距离和高精度结构位移测量的独特特性。该系统的硬件主要由高分辨率工业CCD(电荷耦合器件)数码相机和大范围变焦镜头组成。通过连续跟踪和识别结构上的目标,借助模式匹配算法,通过预定义图案与捕获的数字图像之间的互相关分析,得出结构位移。为了验证开发的系统,对不同振动频率和振幅下的正弦运动进行了MTS测试,并在不同的激励下(El-Centro地震波和正弦运动)进行了振动台测试。另外,进行了现场验证实验,以测量在运行状态下的青马大桥悬索桥和斜拉式昂船洲大桥的中跨竖向位移。所得结果表明,所开发的系统具有实时的结构位移实时测量能力,可以作为传统传感器的良好补充。

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