首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A CREATIVE VIBRATION ENERGY HARVESTING SYSTEM TO SUPPORT A SELF- POWERED INTERNET OF THING (IOT) NETWORK IN SMART BRIDGE MONITORING
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A CREATIVE VIBRATION ENERGY HARVESTING SYSTEM TO SUPPORT A SELF- POWERED INTERNET OF THING (IOT) NETWORK IN SMART BRIDGE MONITORING

机译:一种创造性振动能量收集系统,支持智能桥梁监控中的自我动力的物联网(物联网)网络

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This paper presents a creative energy harvesting system using a bimorph piezoelectric cantilever-beam to power wireless sensors in an IoT network for the Sunshine Skyway Bridge. The bimorph piezoelectric energy harvester (BPEH) comprises a cantilever beam as a substrate sandwiched between two piezoelectric layers to remarkably harness ambient vibrations of an inclined stay cable and convert them into electrical energy when the cable is subjected to a harmonic acceleration. To investigate and design the bridge energy harvesting system, a field measurement was required for collecting cable vibration data. The results of a non-contact laser vibrometer is used to remotely measure the dynamic characteristics of the inclined cables. A finite element study is employed to simulate a 3-D model of the proposed BPEH by COMSOL Multiphasics. The FE modelling results showed that the average power generated bv the BPEH excited by a harmonic acceleration of I m/s2 at 1 Hz is up to 614 μW which satisfies the minimum electric power required for the sensor node in the proposed IoT network. In this research a LoRaWAN architecture is also developed to utilize the BPEH as a sustainable and sufficient power resource for an IoT platform which uses wireless sensor networks installed on the bridge stay cables to collect and remotely transfer bridge health monitoring data over the bridge in a low-power manner.
机译:本文介绍了一种创造性能量收集系统,使用Bimorph压电悬臂 - 在Sunshine Skyway Bridge的IoT网络中的无线传感器。 Bimorph压电能量收割机(BPEH)包括悬臂梁,作为夹在两个压电层之间的基板,以显着地线束的环境振动,当电缆经受谐波加速时,将它们转换成电能。为了调查和设计桥梁能量收集系统,需要采集电缆振动数据所需的场测量。非接触式激光振动计的结果用于远程测量倾斜电缆的动态特性。采用有限元研究来模拟COMSOL多相论建议的BPEH的3-D模型。 FE模型结果表明,通过1Hz的谐波加速器激发的平均功率Bv是高达614Îw,其满足所提出的物联网中的传感器节点所需的最小电力。在本研究中,还开发了一种Lorawan架构,以利用BPEH作为IOT平台的可持续和足够的功率资源,该机器平台使用桥接电缆上安装的无线传感器网络来收集和远程转移桥梁健康监测数据在低位的桥上 - 劳动。

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