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A spiral passive electromagnetic sensor (SPES) for wireless and wired structural health monitoring

机译:用于无线和有线结构健康监测的螺旋式无源电磁传感器(SPES)

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A major goal of structural health monitoring (SHM) in the past decade has been to improve crack detection and monitoring while reducing maintenance and installation costs. This would normally require placing many sensors over a large area, powering and interrogating them. On the other hand, operational aspects such as the temperature effects, battery life, and weight penalties have fundamental roles in the sensor design. In addition, small dimension of the sensors, low cost, and non-contact measurement system for data retrieval are very often required. We present a non-destructive evaluation/structural health monitoring (NDE/SHM) sensor that can be remotely interrogated without any wiring for data transmission or power supply. A spiral passive electromagnetic sensor (SPES) was designed and fabricated. The sensor is a planar 2D inductor circuit of scalable size that resonates at a characteristic frequency when exposed to an electromagnetic field. The specific frequency is dependent on the inductance of the inductor, its parasitic capacitance and resistance, and the electrical properties of the surrounding area. A change in a material's permittivity or permeability due to damage can be sensed through the SPES device. The sensor was tested by using a passive wireless resonant telemetry scheme and a wired interrogation method. Both conductive (i.e. carbon fiber) and non-conductive (i.e. fiber glass) structures were monitored showing very promising capabilities and accuracy in detecting defects/damage in composite structures. The use of the proposed sensor eliminates the need for on-board power and exposed interconnects, reduces the instrumentation mass and volume, increases the reliability due to the continuous operation even in case of a damaged sensor, and increases the life of the device.
机译:过去十年中,结构健康监测(SHM)的主要目标是改善裂缝检测和监测,同时降低维护和安装成本。通常,这将需要在大面积上放置许多传感器,并对其供电并进行询问。另一方面,温度影响,电池寿命和重量损失等操作方面在传感器设计中具有基本作用。另外,非常需要传感器的小尺寸,低成本和用于数据检索的非接触式测量系统。我们提出了一种无损评估/结构健康监测(NDE / SHM)传感器,无需任何数据传输或供电线路即可对其进行远程询问。设计并制造了螺旋无源电磁传感器(SPES)。传感器是可扩展尺寸的平面二维电感器电路,当暴露于电磁场时会以特征频率谐振。特定频率取决于电感器的电感,其寄生电容和电阻以及周围区域的电性能。由于损坏,材料的介电常数或磁导率的变化可以通过SPES装置检测到。通过使用无源无线谐振遥测方案和有线询问方法对传感器进行了测试。导电(即碳纤维)和非导电(即玻璃纤维)结构都受到监测,显示出非常有前途的检测复合结构缺陷/损坏的能力和准确性。所提出的传感器的使用消除了对板载电源和裸露互连的需求,减少了仪器的质量和体积,即使在传感器损坏的情况下,由于连续运行也提高了可靠性,并延长了设备的使用寿命。

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