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A comprehensive review of self-powered sensors in civil infrastructure: State-of-the-art and future research trends

机译:民用基础设施自动传感器的全面综述:最先进的和未来研究趋势

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Rapid development in structural health monitoring systems has led to the invention of various sensing technologies. Nonetheless, difficulties in deploying and maintaining traditional wired sensors and managing vast amount of data collated from a dense array of wired sensors were fundamental drawbacks of using such systems. Wireless sensor networks (WSNs) were thus introduced to overcome the noted shortcomings. However, the energy required to power WSNs has become an important concern due to battery limitations. Energy harvesting technologies have been developed to extend the lifetime of WSNs by addressing the energy constraint problem. Recently, a new generation of WSNs based on self-powered sensors have become a reality by bridging the gap between the harvested energy and the energy required for sensing, computation, storage, and communication. Self-powered sensors are increasingly being used and establishing themselves as promising solutions to conventional WSNs in civil infrastructure. This review paper summarizes the applications of self-powered sensors in civil infrastructure during the last decade. First, a general introduction to self-powered sensing and its significance in civil engineering are presented. Thereafter, various self-powered sensors currently used in civil engineering arena are reviewed. Finally, the advantages of deploying these sensors are presented, and future research trends for their innovative use are highlighted.
机译:结构健康监测系统的快速发展导致了各种传感技术的发明。尽管如此,部署和维护传统有线传感器和管理从密集的有线传感器中处理大量数据的困难是使用这种系统的基本缺点。因此引入了无线传感器网络(WSNS)以克服所述缺点。然而,由于电池限制,电力WSN所需的能量已成为一个重要的问题。已经开发了能量收集技术来通过解决能量约束问题来扩展WSN的寿命。最近,基于自给自足传感器的新一代WSN通过弥合收获的能量与传感,计算,存储和通信所需的能量之间的差距而成为现实。越来越多地使用自动传感器并将自己作为对民用基础设施传统WSN的有希望的解决方案。本综述论文总结了在过去十年中自动传感器在民事基础设施中的应用。首先,介绍了对自给自足传感的一般介绍及其在土木工程中的重要性。此后,综述了当前用于土木工程竞技场中使用的各种自动传感器。最后,提出了部署这些传感器的优点,并突出了未来的创新使用研究趋势。

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