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Applications of Image Recognition for Real-Time Water Level and Surface Velocity

机译:图像识别在实时水位和表面速度中的应用

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In this paper, we present two types of the real-time water monitoring system using the image processing technology, the water level recognition and the surface velocity recognition. According to the bridge failure investigation, floods in the river often pose potential risk to bridges, and scouring could undermine the pier foundation and cause the structures to collapse. It is very important to develop monitoring techniques for bridge safety in the field. In this study, we installed two high-resolution cameras on the in-situ bridge site to get the real-time water level and surface velocity image. For the water level recognition, we use the image processing techniques of the image binarization, character recognition, and water line detection. For the surface velocity recognition, the proposed system apply the PIV(Particle Image Velocimetry, PIV) method to obtain the recognition of the water surface velocity by the cross correlation analysis. Finally, the proposed systems are used to record and measure the variations of the water level and surface velocity for a period of three days. The good results show that the proposed systems have potential to provide real-time information of water level and surface velocity during flood periods.
机译:在本文中,我们介绍了使用图像处理技术的两种类型的实时水监控系统,即水位识别和表面速度识别。根据桥梁破坏调查,河流中的洪水经常对桥梁构成潜在风险,冲刷可能破坏墩台基础并导致结构坍塌。开发现场桥梁安全监控技术非常重要。在这项研究中,我们在现场桥梁现场安装了两个高分辨率摄像机,以获取实时水位和表面速度图像。对于水位识别,我们使用图像二值化,字符识别和水线检测的图像处理技术。对于表面速度识别,所提出的系统应用PIV(Particle Image Velocimetry,PIV)方法通过互相关分析获得对水表面速度的识别。最后,所提出的系统用于记录和测量三天期间的水位和表面速度的变化。良好的结果表明,所提出的系统具有提供洪水期间水位和地表速度的实时信息的潜力。

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