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Dynamic identification of an ancient masonry bell tower using a MEMS-based acquisition system

机译:使用基于MEMS的采集系统的古代砌体钟楼的动态识别

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In this paper results of dynamic tests performed on a bell tower located in Ficarolo (Italy) are reported. After the Emilia earthquake that occurred in 2012, the bell tower reported a serious damage pattern and, as a consequence, retrofitting interventions were carried out. Dynamic tests before and after the strengthening were performed to investigate the modal properties of the bell tower and to evaluate possible changes in dynamic behavior due to the intervention. Accelerations during ambient vibrations were recorded by means of an advanced MEMS-based system, whose main features are the transmission of the data in digital form and the possibility of performing some system analyses directly on-board of the sensors. Accelerations were acquired using 11 biaxial MEMS units. First 8 modes are clearly identified, with natural frequencies in the range 0.5–9.0 Hz. Finally, a comparison between the performances of the installed MEMS-based system and a traditional analog (piezoelectric) system is carried out and results are critically compared.
机译:在本文中,报告了位于Ficarolo(意大利)的钟楼上进行的动态测试的结果。在2012年发生的Emilia地震之后,钟楼报告了严重的伤害模式,因此进行了改造干预措施。进行强化之前和之后的动态测试以研究钟塔的模态特性,并根据干预评估动态行为的可能变化。通过基于先进的MEMS的系统记录环境振动期间的加速度,其主要特征是以数字形式的数据传输,并且可以直接在传感器的板上进行一些系统分析的可能性。使用11个双轴MEMS单位获得加速度。先识别出前8种模式,自然频率范围为0.5-9.0Hz。最后,进行了所安装的基于MEMS的系统和传统模拟(压电)系统的性能与传统模拟(压电)系统之间的比较,结果统治地比较。

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