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Structural displacement measurements using DC coupled radar with active transponder

机译:使用带有有源应答器的直流耦合雷达进行结构位移测量

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摘要

Continuous wave (CW) radar sensors are a promising technology for structural displacement measurement. However, the commonly employed passive backscattering measurement configuration has some limitations for low-power applications of CW radar. To improve displacement measurement performance using the low-power CW radar, an active transponder configuration is introduced. Compared with passive backscattering, the active transponder configuration is capable of increasing the radar's signal power, thereby increasing the signal to noise ratio for more accurate displacement measurement. A series of laboratory experiments to demonstrate the performance of the transponder configuration was conducted, and the experimental results were compared with the results of using the backscattering configuration. The investigation revealed that the signal improvement provided by the transponder is a function of the distance between the transponder and the radar. In addition, a full-scale bridge test with the active transponder configuration was conducted to verify the improved performance. An oblique angle test using the transponder was conducted in the laboratory to demonstrate the potential for flexible installation strategies when deploying the radar/transponder pair for bridge displacement measurements. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:连续波(CW)雷达传感器是用于结构位移测量的有前途的技术。但是,常用的无源反向散射测量配置对连续波雷达的低功率应用有一些限制。为了使用低功率CW雷达提高位移测量性能,引入了有源应答器配置。与无源反向散射相比,有源应答器配置能够增加雷达的信号功率,从而提高信噪比,从而实现更精确的位移测量。进行了一系列实验室实验以证明应答器配置的性能,并将实验结果与使用反向散射配置的结果进行了比较。调查显示,应答器提供的信号改善是应答器与雷达之间距离的函数。此外,还进行了带有有源应答器配置的全尺寸电桥测试,以验证改进后的性能。在实验室中使用应答器进行了斜角测试,以展示在部署雷达/应答器对进行桥位移测量时灵活安装策略的潜力。版权所有(c)2016 John Wiley&Sons,Ltd.

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