用于全面实时监控的物联网增强型智能道路基础设施系统

Zhoujing Ye , Ya Wei , Songli Yang , Pengpeng Li , Fei Yang , Biyu Yang , Linbing Wang
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引用次数: 0

摘要

随着物联网(IoT)技术的快速发展,其在道路基础设施中的应用也备受关注。然而,将物联网应用于道路基础设施监测仍存在一些挑战,包括前端传感器的耐用性不足、传感器嵌入造成的路面损坏以及海量实时数据的冗余性阻碍了对路面的长期实时监测。针对这些挑战,本研究开发了一种基于物联网的自供电分布式智能路面监测系统,包括传感器网络、云平台、通信网络和供电系统。考虑到水泥混凝土路面滑模摊铺的特殊性,提出了将嵌入式传感器与路面材料结构相结合的一体化摊铺工艺。通过现场工程监测,系统主动收集并分析系统能耗、温湿度、环境噪声、风速风向、路面结构振动等各类数据,为路面设计、养护和车路协同应用提供数据支持。未来将继续推动物联网技术在数字化道路养护、交通安全、路面材料结构优化设计等方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IoT-enhanced smart road infrastructure systems for comprehensive real-time monitoring

With the rapid advancement of Internet of Things (IoT) technology, its applications in road infrastructure have garnered attention. However, challenges persist when applying IoT to road infrastructure monitoring, including insufficient durability of front-end sensors, pavement damage due to sensor embedding, and the redundancy of a vast amount of real-time data, hindering the long-term real-time monitoring of pavements. To address these challenges, this study developed a self-powered distributed intelligent pavement monitoring system based on IoT, encompassing a sensor network, cloud platform, communication network, and power supply system. Considering the specific characteristics of slipform paving for cement concrete pavements, an integrated paving process was proposed, merging embedded sensors with pavement material structures. Through on-site engineering monitoring, the system actively collects and analyzes various data types such as system energy consumption, temperature and humidity, environmental noise, wind speed and direction, and pavement structural vibrations, providing data support for pavement design, maintenance, and vehicle-road synergy applications. Future efforts will continue to promote the application of IoT technology in digital road maintenance, traffic safety, and optimized pavement material structure design.

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CiteScore
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