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Remote monitoring of building oscillation modes by means of real-time Mid Infrared Digital Holography

机译:通过实时中红外数字全息术对建筑物的振动模式进行远程监控

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摘要

Non-destructive measurements of deformations are a quite common application of holography but due to the intrinsic limits in the interferometric technique, those are generally confined only to small targets and in controlled environment. Here we present an advanced technique, based on Mid Infrared Digital Holography (MIR DH), which works in outdoor conditions and provides remote and real-time information on the oscillation modes of large engineering structures. Thanks to the long wavelength of the laser radiation, large areas of buildings can be simultaneously mapped with sub-micrometric resolution in terms of their amplitude and frequency oscillation modes providing all the modal parameters vital for all the correct prevention strategies when the functionality and the health status of the structures have to be evaluated. The existing experimental techniques used to evaluate the fundamental modes of a structure are based either on seismometric sensors or on Ground-based Synthetic Aperture Radar (GbSAR). Such devices have both serious drawbacks, which prevent their application at a large scale or in the short term. We here demonstrate that the MIR DH based technique can fully overcome these limitations and has the potential to represent a breakthrough advance in the field of dynamic characterization of large structures.
机译:变形的非破坏性测量是全息术的一种非常普遍的应用,但是由于干涉技术的固有局限性,这些通常仅局限在小目标和受控环境中。在这里,我们介绍一种基于中红外数字全息术(MIR DH)的先进技术,该技术可在室外条件下工作,并提供有关大型工程结构的振动模式的远程和实时信息。由于激光辐射的波长长,因此可以在振幅和频率振荡模式方面同时以亚微米分辨率同时绘制建筑物的大面积区域,从而提供所有模式参数,这些参数对于功能和健康状况下的所有正确预防策略至关重要必须评估结构的状态。用于评估结构基本模式的现有实验技术基于地震传感器或基于地面的合成孔径雷达(GbSAR)。这样的设备具有严重的缺点,这阻止了它们在大规模或短期内的应用。我们在此证明,基于MIR DH的技术可以完全克服这些局限性,并具有代表大型结构动态表征领域的突破性进展的潜力。

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