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Frequency Domain Analysis of the Minerva Medica Temple by means of the Motion Magnification Methodology

机译:通过运动倍率方法的Minerva Medica寺的频域分析

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Historical monuments in the urban environment are affected by anthropic vibrations, therefore the health monitoring of those structures is mandatory. The frequency domain analysis is the standard procedure to infer the presence of damages, but usually it requires expensive equipment, time consuming elaborations, trained personnel. Moreover, especially if the monument to be investigated is a large building, many devices are necessary. In order to face all these difficulties, we propose the recently developed motion magnification methodology. It is based on a processing procedure that plays the role of a microscope for slight motions within a video. In recent years, experimental studies explored this methodology applied to simple geometries, demonstrating its potentialities and reliability thorough comparison with conventional and accurate vibration instruments, such as accelerometers and lasers. However, the study of large ancient monuments is lacking. Our case-study, the so-called Temple of Minerva Medica located between the railway tracks and a tramway in the center of Rome, intends to fill the gap.
机译:城市环境中的历史古迹受到人类振动的影响,因此对这些结构的健康监测是强制性的。频域分析是推断出损坏的标准程序,但通常需要昂贵的设备,耗时的阐述,训练有素的人员。此外,特别是如果要调查的纪念碑是一个大型建筑,则需要许多设备。为了面对所有这些困难,我们提出了最近开发的运动倍率方法。它基于一种处理过程,其发挥显微镜在视频内的轻微运动的作用。近年来,实验研究探讨了这种应用于简单的几何形状的方法,展示了与传统和准确的振动仪器彻底比较的潜力和可靠性,例如加速度计和激光器。然而,缺乏大型古老古迹的研究。我们的案例研究,所谓的Minerva Medica寺庙位于铁路轨道和罗马中心的电车轨道之间,打算填补差距。

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