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CCSS-CPS: Collaborative: If Bridges can talk: Towards Autonomous Structure Health Monitoring for Civil Structure

CCSS-CPS: Collaborative: If Bridges can talk: Towards Autonomous Structure Health Monitoring for Civil Structure
CCSS-CPS:协作:如果桥梁会说话:走向土木结构的自主结构健康监测
批准号:
1101547
负责人:
Zhi Ding
金额:
$12.6万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-09-01 至 2015-08-31

项目摘要

项目成果

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中文摘要
翻译
该研究的目标是开发完全自主的结构健康监测(SHM)系统,该系统由有机集成在结构内的传感器组成,没有导线和外部电源。该方法的核心是基于多功能压电传感器的智能骨料,它可以将环境能量转换为电能,调制用于通信的应力波的有用信息,并产生和接收用于检测结构缺陷的应力波。该项目将通过以下方式在智能上推进混凝土管道通信的知识:i)在不同负载条件下对“智能集合”收发器和混凝土信道进行测量驱动的表征,以及ii)设计混凝土信道中声学通信的调制方案。该项目旨在开发一个整体的系统解决方案,通过:i)开发能量收集和存储模块,结合低功耗电路,ii)设计和评估能源感知任务调度。拟议的研究预计将在科学,教育和社会产生深远的广泛影响。我们基于系统的研究整合了对硬件,算法和架构的创新研究,以实现下一代网络系统。它还将教育活动整合到现实生活中的基础设施建设、通信系统和网络中。在短期内,为通信和能量收集开发的基本构建模块可以帮助扩展现有的基于无线的电池供电系统,使这些系统更具容错性和能源效率。从长远来看,随着技术的成熟,项目成果可以为全自主SHM系统的广泛集成提供动力,从而提高公共安全并降低维护成本。
英文摘要
The objective of the research is to develop fully autonomous Structural Health Monitoring (SHM) system consisting of sensors organically integrated within the structure, free of wire leads and external power sources. Central to the proposed approach are the multi-functional piezoelectric transducer-based smart aggregates, which can transform ambient energy to electricity power, modulate useful information on stress waves for communication, and generate and receive stress waves for detection of structural defects.Intellectually, the project will advance the knowledge regarding communication over concrete conduits through: i) Measurement-driven characterization of "smart aggregates" transceivers and concrete channels under different loading conditions, and ii) Design of modulation schemes for acoustic communications in concrete channels. The project aims to develop a holistic system solution through: i) the development of energy harvesting and storage modules, in conjunction with low-power circuits, and ii) Design and evaluation of energy-aware task scheduling.The proposed research is expected to generate far-reaching broader impacts in science, education, and society. Our systems-based research integrates innovative research on hardware, algorithms, and architectures to enable the next generation of cyber systems. It also integrates educational activities in real-life infrastructure building, communications systems, and networking. In the near term, the basic building blocks developed for communication and energy harvesting can help extend existing wireless-based, battery powered systems, making these systems more fault tolerant and energy efficient. In the long term, the project outcomes can provide impetus for wide-spread integration of fully autonomous SHM systems as the technology matures, leading to improved public safety and reduced maintenance costs.
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