首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2011.;vol. 5 pt. A. >Developing Innovative Energy Harvesting Approaches for Infrastructure Health Monitoring Systems
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Developing Innovative Energy Harvesting Approaches for Infrastructure Health Monitoring Systems

机译:为基础设施健康监测系统开发创新的能量收集方法

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Many factors must be addressed when designing infrastructure health monitoring systems. Structures in remote locations or with limited accessibility make the requirements for these systems unique and challenging. For locations where connection to the power grid is difficult or impossible, monitoring system life is severely limited by battery technology. Alternatively, an energy harvesting power supply can make the monitoring system independent of the grid while increasing capabilities and lifetime beyond what is possible with current battery technology. This paper discusses a design and development methodology for developing energy harvesting aspects of a health monitoring system. The system comprises a sensor module that monitors the health of the structure, an on-site processing module that analyzes the data, and a wireless communication module that transmits the data. The method is demonstrated by examples of energy harvesting systems for a bridge monitoring application, using solar, wind, and vibration energy harvesters to provide power to a wireless network, local data processors, and strain gauges. Theoretical feasibility of energy harvesting in these domains has been previously demonstrated. The examples described in this paper validate the feasibility previously calculated as well as illustrate shortcomings in the current technology that inhibit potential implementation. The examples also show areas where innovation is needed to continue to advance the technology of energy harvesting in this application on infrastructure.
机译:设计基础结构运行状况监视系统时,必须解决许多因素。偏远地区或可访问性有限的结构使这些系统的要求变得独特且具有挑战性。对于难以或不可能连接到电网的位置,电池技术严重限制了监视系统的寿命。可替代地,能量收集电源可以使监视系统独立于电网,同时增加能力和使用寿命,超过当前电池技术所能提供的能力。本文讨论了用于开发健康监控系统的能量收集方面的设计和开发方法。该系统包括监视结构健康状况的传感器模块,分析数据的现场处理模块以及传输数据的无线通信模块。通过使用太阳能,风能和振动能收集器向无线网络,本地数据处理器和应变仪提供电能的桥梁监测应用的能量收集系统示例,演示了该方法。先前已经证明了在这些领域中能量收集的理论可行性。本文中描述的示例验证了先前计算的可行性,并说明了当前技术中阻碍潜在实现的缺点。这些示例还显示了需要创新的领域,以继续推进此基础结构应用中的能量收集技术。

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