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首页> 外文期刊>International Journal of Pavement Research and Technology >Sensor-based pavement diagnostic using acoustic signature for moduli estimation
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Sensor-based pavement diagnostic using acoustic signature for moduli estimation

机译:基于传感器的路面诊断,使用声学签名进行模估计

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摘要

The diffusion of smart infrastructures for smart cities provides new opportunities for the improvement of both road infrastructure monitoring and maintenance management.Often pavement management is based on the periodic assessment of the elastic modulus of the bound layers (i.e., asphalt concrete layers) by means of traditional systems, such as Ground Penetrating Radar (GPR) and Falling Weight Deflectometer (FWD). Even if these methods are reliable, well-known, and widespread, they are quite complex, expensive, and are not able to provide updated information about the evolving structural health condition of the road pavement. Hence, more advanced, effective, and economical monitoring systems can be used to solve the problems mentioned above.Consequently, the main objective of the study presented in this paper is to present and apply an innovative solution that can be used to make smarter the road pavement monitoring. In more detail, an innovative Non-Destructive Test (NDT)-based sensing unit was used to gather the vibro-acoustic signatures of road pavements with different deterioration levels (e.g. with and without fatigue cracks) of an urban road. Meaningful features were extracted from the aforementioned acoustic signature and the correlation with the elastic modulus defined using GPR and FWD data was investigated.Results show that some of the features have a good correlation with the elastic moduli of the road section under investigation. Consequently, the innovative solution could be used to evaluate the variability of elastic modulus of the asphalt concrete layers, and to monitor with continuity the deterioration of road pavements under the traffic loads.
机译:智能城市的智能基础设施的扩散为改善道路基础设施监测和维护管理提供了新的机会。常规路面管理是基于伯爵(即沥青混凝土层)的弹性模量的定期评估地面穿透雷达(GPR)等传统系统和下降重量偏转仪(FWD)。即使这些方法是可靠的,众所周知的和广泛的,它们也非常复杂,昂贵,并且不能提供有关道路路面不断变化的结构健康状况的更新信息。因此,更先进,有效,经济的监测系统可用于解决上述问题。本文提出的研究的主要目的是展示并应用可用于使道路更智能的创新解决方案路面监控。更详细地,一个创新的无损检测(NDT)基感测单元被用来收集道路路面的振动 - 声学签名具有不同劣化等级的城市道路(例如有和没有疲劳裂纹)。有意义的特征是从上述声学特征提取和使用GPR定义的弹性模量的相关性和FWD数据是investigated.Results显示,一些功能的情况下有调查路段的弹性模量良好的相关性。因此,创新的解决方案可用于评估沥青混凝土层的弹性模量的可变性,并在交通负荷下的道路路面的恶化的连续性监测。

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