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Bistable Wind-Induced Vibration Energy Harvester for Self-Powered Wireless Sensors in Smart Bridge Monitoring Systems

机译:用于智能桥监控系统中自供电无线传感器的双稳态风致振动能量收集器

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Low reliability and high maintenance cost of using power and data cables are two main reasons motivating theapplication of the self-powered wireless sensors for structural health monitoring (SHM) systems in bridge structures. Onthe other hand, energy harvesting systems have been introduced as a solution for the current limitations of the batterypoweredwireless sensors associated with the finite life-span of batteries and their replacements. The objective in thispaper is to propose a new optimized nonlinear energy harvesting concept, namely Bistable Energy Harvesting (BEH)system, for smart SHM of bridge structures. In this study, a dynamic analysis of the energy harvesting system for cablesupportedbridges subject to wind-induced vibration is carried out and the feasibility of the energy harvesting device isinvestigated. This paper presents efficient linear and nonlinear energy harvesting systems for wireless monitoring oflong-span cable-supported bridges. It is shown that level of the extracted energy from such energy harvesting system isquite sufficient to supply energy for self-powered sensors of a bridge health monitoring system. This study is to promotethe recent line of research on self-powered sensor networks for smart bridge monitoring being performed at the FloridaInternational University.
机译:使用电源线和数据线的低可靠性和较高的维护成本是促使这种情况发生的两个主要原因。 自供电无线传感器在桥梁结构健康监测(SHM)系统中的应用。在 另一方面,已经引入了能量收集系统,以解决当前电池供电的局限性 与电池有限寿命相关的无线传感器及其更换。这个目标 论文将提出一种新的优化的非线性能量收集概念,即双稳态能量收集(BEH) 系统,用于桥梁结构的智能SHM。在这项研究中,对电缆支撑的能量收集系统的动态分析 进行了风振作用的桥梁,并且能量收集装置的可行性是 调查。本文提出了一种有效的线性和非线性能量收集系统,用于无线监测 大跨度电缆支撑桥。结果表明,从这种能量收集系统提取的能量水平为 足以为桥梁健康监测系统的自供电传感器提供能量。这项研究是为了促进 在佛罗里达州进行的用于智能桥梁监控的自供电传感器网络的最新研究 国际大学。

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