用于地下物理和化学测量的被动合作目标

J. Friedt
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引用次数: 4

摘要

研究了探地雷达(GPR)探测的被动协同目标的发展。使用压电基板将输入的电磁脉冲转换为局限于传感器表面的声波(表面声波换能器- SAW)允许缩小传感器尺寸,同时通过压电基板声波速度与所研究的物理量的依赖关系提供传感能力。讨论了两种广泛的传感机制:固有的压电衬底速度依赖于数量-仅限于测量温度或应变,因此仅限于扭矩或压力-以及外部负载依赖于传感器,允许测量可变电容性或电阻性负载。我们演示了如何使用现成的表面声波滤波器,将其从原始用途转移到反射合作目标,如何使用商业上可用的GPR硬件,加上少量的软件,通过定义多个时间窗口(一些用于地下监测,另一些用于传感能力)来探测这些传感器,而不会妨碍浅层地下结构探测能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Passive cooperative targets for subsurface physical and chemical measurements
We investigate the development of passive cooperative targets as sub-surface sensors interrogated by Ground Penetrating RADAR (GPR). Using piezoelectric substrates for converting the incoming electromagnetic pulse to an acoustic wave confined to the sensor surface (Surface Acoustic Wave transducer - SAW) allows for shrinking the sensor dimensions while providing sensing capability through the piezoelectric substrate acoustic wave velocity dependence with the physical quantity under investigation. Two broad ranges of sensing mechanisms are discussed: intrinsic piezoelectric substrate velocity dependence with a quantity - restricted to the measurement of temperature or strain and hence torque or pressure - and extrinsic load dependence on the sensor, allowing for the measurement of variable capacitive or resistive loads. We demonstrate, using readily available surface acoustic wave filters diverted from their original use to become reflective cooperative targets, how commercially available GPR hardware can be used, with minor software addition, to probe such sensors with no hindrance to the shallow subsurface structure detection capability by defining multiple time windows - some for sub-surface monitoring and others for sensing capability.
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