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洪水期实时桥梁冲刷监测预警的物联人工智能传感系统。

The Artificial Intelligence of Things Sensing System of Real-Time Bridge Scour Monitoring for Early Warning during Floods.

机构信息

National Center for Research on Earthquake Engineering, Taipei 106, Taiwan.

Hydrotech Research Institute, National Taiwan University, Taipei 106, Taiwan.

出版信息

Sensors (Basel). 2021 Jul 20;21(14):4942. doi: 10.3390/s21144942.

Abstract

Scour around bridge piers remains the leading cause of bridge failure induced in flood. Floods and torrential rains erode riverbeds and damage cross-river structures, causing bridge collapse and a severe threat to property and life. Reductions in bridge-safety capacity need to be monitored during flood periods to protect the traveling public. In the present study, a scour monitoring system designed with vibration-based arrayed sensors consisting of a combination of Internet of Things (IoT) and artificial intelligence (AI) is developed and implemented to obtain real-time scour depth measurements. These vibration-based micro-electro-mechanical systems (MEMS) sensors are packaged in a waterproof stainless steel ball within a rebar cage to resist a harsh environment in floods. The floodwater-level changes around the bridge pier are performed using real-time CCTV images by the Mask R-CNN deep learning model. The scour-depth evolution is simulated using the hydrodynamic model with the selected local scour formulas and the sediment transport equation. The laboratory and field measurement results demonstrated the success of the early warning system for monitoring the real-time bridge scour-depth evolution.

摘要

桥墩周围冲刷仍然是洪水引发桥梁破坏的主要原因。洪水和暴雨会侵蚀河床并损坏跨河结构,导致桥梁倒塌,对财产和生命造成严重威胁。需要在洪水期间监测桥梁安全容量的减少,以保护出行公众。在本研究中,设计了一种基于振动的阵列传感器冲刷监测系统,该系统由物联网(IoT)和人工智能(AI)组合而成,用于实时获取冲刷深度测量值。这些基于振动的微机电系统(MEMS)传感器被封装在一个防水不锈钢球中,并置于钢筋笼内,以抵抗洪水等恶劣环境的影响。利用 Mask R-CNN 深度学习模型的实时闭路电视图像来检测桥墩周围的水位变化。利用选定的局部冲刷公式和泥沙输移方程的水动力模型来模拟冲刷深度的演变。实验室和现场测量结果表明,该系统在监测实时桥梁冲刷深度演变方面的预警系统取得了成功。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c13a/8309823/1f20a0dc04f0/sensors-21-04942-g001.jpg

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