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首页> 外文期刊>Journal of Sensors >Structural Health Monitoring of Wind Turbine Blades: Acoustic Source Localization Using Wireless Sensor Networks
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Structural Health Monitoring of Wind Turbine Blades: Acoustic Source Localization Using Wireless Sensor Networks

机译:风力涡轮机叶片的结构健康监测:使用无线传感器网络的声源定位

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Structural health monitoring (SHM) is important for reducing the maintenance and operation cost of safety-critical components and systems in offshore wind turbines. This paper proposes an in situ wireless SHM system based on an acoustic emission (AE) technique. By using this technique a number of challenges are introduced due to high sampling rate requirements, limitations in the communication bandwidth, memory space, and power resources. To overcome these challenges, this paper focused on two elements: (1) the use of an in situ wireless SHM technique in conjunction with the utilization of low sampling rates; (2) localization of acoustic sources which could emulate impact damage or audible cracks caused by different objects, such as tools, bird strikes, or strong hail, all of which represent abrupt AE events and could affect the structural health of a monitored wind turbine blade. The localization process is performed using features extracted from aliased AE signals based on a developed constraint localization model. To validate the performance of these elements, the proposed system was tested by testing the localization of the emulated AE sources acquired in the field.
机译:结构健康监测(SHM)对于降低海上风力发电机中安全关键组件和系统的维护和运营成本非常重要。本文提出了一种基于声发射(AE)技术的原位无线SHM系统。通过使用该技术,由于高采样率要求,通信带宽,存储空间和电源资源的限制,引入了许多挑战。为了克服这些挑战,本文集中在两个要素上:(1)使用原位无线SHM技术结合低采样率的使用; (2)声源的定位,可以模拟由不同物体(例如工具,鸟击或强冰雹)引起的冲击损坏或可听见的裂纹,这些都表示突然的AE事件,并可能影响受监视的风力涡轮机叶片的结构健康。基于已开发的约束定位模型,使用从别名AE信号中提取的特征来执行定位过程。为了验证这些元素的性能,通过测试在现场获得的模拟AE源的定位来测试所提出的系统。

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