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An interferometric radar sensor for monitoring the vibrations of structures at short ranges

机译:干涉雷达传感器,用于监视近距离结构的振动

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The Real-Aperture-Radar (RAR) interferometry technique consolidated in the last decade as an operational tool for the monitoring of large civil engineering structures as bridges, towers, and buildings. In literature, experimental campaigns collected through a well-known commercial equipment have been widely documented, while the cases where different types of sensors have been tested are a few. On the bases of some experimental tests, a new sensor working at high frequency, providing some improved performances, is here discussed. The core of the proposed system is an off-the-shelf, linear frequency modulated continuous wave device. The development of this apparatus is aimed at achieving a proof-of-concept, tackling operative aspects related to the development of a low cost and reliable system. The capability to detect the natural frequencies of a lightpole has been verified; comparing the results of the proposed sensor with those ones obtained through a commercial system based on the same technique, a more detailed description of the vibrating structure has been achieved. The results of this investigation confirmed that the development of sensors working at higher frequencies, although deserving deeper studies, is very promising and could open new applications demanding higher spatial resolutions at close ranges.
机译:过去十年中,Real-Aperture-Radar(RAR)干涉测量技术作为一种监视大型土木工程结构(如桥梁,塔楼和建筑物)的操作工具得到了巩固。在文献中,已经广泛记录了通过众所周知的商用设备收集的实验活动,而测试了不同类型传感器的情况很少。在一些实验测试的基础上,这里讨论了一种新的高频工作传感器,它提供了一些改进的性能。拟议系统的核心是现成的线性调频连续波设备。该设备的开发旨在实现概念证明,解决与开发低成本且可靠的系统有关的操作方面。已经验证了检测灯杆自然频率的能力;将建议的传感器结果与通过基于相同技术的商用系统获得的结果进行比较,可以得到对振动结构的更详细描述。这项调查的结果证实,尽管需要更深入的研究,但在更高频率下工作的传感器的发展是非常有希望的,并且可以打开要求近距离更高空间分辨率的新应用。

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