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Distributed electrical time domain reflectometry (ETDR) structural sensors: design models and proof-of-concept experiments

机译:分布式电时域反射仪(ETDR)结构传感器:设计模型和概念验证实验

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Abstract: A parametric design model has been created to optimize the sensitivity of the sensing cable in a distributed sensing system. The system consists of electrical time domain reflectometry (ETDR) signal processing equipment and specially designed sensing cables. The ETDR equipment sends a high-frequency electric pulse (in the giga hertz range) along the sensing cable. Some portion of the electric pulse will be reflected back to the ETDR equipment as a result of the variation of the cable impedance. The electric impedance variation in the sensing cable can be related to its mechanical deformation, such as cable elongation (change in the resistance), shear deformation (change in the capacitance), corrosion of the cable or the materials around the cable (change in inductance and capacitance), etc. The time delay, amplitude, and shape of the reflected pulse provides the means to locate, determine the magnitude, and indicate the nature of the change in the electrical impedance, which is then related to the distributed structural deformation. The sensing cables are an essential part of the health-monitoring system. By using the parametric design model, the optimum cable parameters can be determined for specific deformation. Proof-of-concept experiments also are presented in the paper to demonstrate the utility of an electrical TDR system in distributed sensing applications. !22
机译:摘要:建立了参数设计模型,以优化分布式传感系统中传感电缆的灵敏度。该系统由电时域反射仪(ETDR)信号处理设备和经过特殊设计的传感电缆组成。 ETDR设备沿传感电缆发送高频电脉冲(千兆赫兹范围)。由于电缆阻抗的变化,一部分电脉冲会反射回ETDR设备。感应电缆中的电阻抗变化可能与其机械变形有关,例如电缆伸长(电阻变化),剪切变形(电容变化),电缆或电缆周围材料的腐蚀(电感变化)反射脉冲的时间延迟,幅度和形状提供了一种定位,确定幅度并指示电阻抗变化性质的方法,然后电阻抗变化的性质与分布的结构变形有关。传感电缆是健康监测系统的重要组成部分。通过使用参数设计模型,可以确定特定变形的最佳电缆参数。本文还提出了概念验证实验,以证明电子TDR系统在分布式传感应用中的实用性。 !22

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