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Toward an Integrated Smart Sensing System and Data Interpretation Techniques for Pavement Fatigue Monitoring

机译:面向路面疲劳监测的集成智能传感系统和数据解释技术

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摘要

Currently, pavement instrumentation for condition monitoring is done on a localized and short-term basis. Existing technology does not allow for continuous long-term monitoring and network level deployment. Long-term monitoring of mechanical loading for pavement structures could reduce maintenance costs, improve longevity, and enhance safety. In this article, on-going research to develop and validate a smart pavement monitoring system is described. The system mainly consists of a novel self-powered wireless sensor based on the integration of piezoelectric transduction with floating-gate injection capable of detecting, storing, and transmitting strain history for long-term monitoring and a novel passive temperature gauge. A technique for estimating full-field strain distributions using measured data from a limited number of implemented sensors is also described. The ultimate purpose is to incorporate the traffic wander effect in the fatigue prediction algorithms. Preliminary results are shown and limitations are discussed.
机译:当前,用于状态监测的路面仪表是在局部和短期的基础上进行的。现有技术不允许进行连续的长期监视和网络级部署。长期监测路面结构的机械负载可以减少维护成本,提高使用寿命,并提高安全性。在本文中,描述了开发和验证智能路面监控系统的持续研究。该系统主要由一个新颖的自供电无线传感器和一个新型的无源温度传感器组成,该传感器基于压电传感与浮栅注入的集成,该浮栅注入能够检测,存储和传输应变历史以进行长期监测。还描述了一种使用来自有限数量的已实现传感器的测量数据来估计全场应变分布的技术。最终目的是将交通漂移效应纳入疲劳预测算法。显示了初步结果并讨论了局限性。

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    Department of Civil and Environmental Engineering, Michigan State University, East Lansing, Ml 48824, USA;

    Department of Civil and Environmental Engineering, Michigan State University, East Lansing, Ml 48824, USA;

    Department of Civil and Environmental Engineering, Michigan State University, East Lansing, Ml 48824, USA;

    Department of Civil and Environmental Engineering, Michigan State University, East Lansing, Ml 48824, USA;

    Federal Highway Administration, Turner-Fairbank Highway Research Center, McLean, VA, USA;

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