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使用可扩展的低成本设备测量加速度响应函数。在实验模态分析中的应用。

Measurement of Acceleration Response Functions with Scalable Low-Cost Devices. An Application to the Experimental Modal Analysis.

机构信息

School of Industrial Engineering, ITAP, University of Valladolid, Paseo del Cauce 59, 47011 Valladolid, Spain.

Department of Signal Theory and Communications and Telematic Engineering, University of Valladolid, Paseo de Belén 15, 47011 Valladolid, Spain.

出版信息

Sensors (Basel). 2021 Oct 6;21(19):6637. doi: 10.3390/s21196637.

Abstract

One of the most popular options in the Structural Health Monitoring field is the tracking of the modal parameters, which are estimated through the frequency response functions of the structure, usually in the form of accelerances, which are computed as the ratio between the measured accelerations and the applied forces. This requires the use of devices capable of synchronously recording accelerations at several points of the structure at high sampling rates and the subsequent computational analysis using the recorded data. To this end, this work presents and validates a new scalable acquisition system based on multiple myRIO devices and digital MEMS (Micro-Electro-Mechanical System) accelerometers, intended for modal analysis of large structures. A simple form of this system was presented by the authors in a previous work, showing that a single board with some accelerometers connected to it got to obtain high quality measurements in both time and frequency domains. Now, a larger system composed by several slave boards connected and synchronized to a master one is presented. Delays lower than 100 ns are found between the synchronised channels of the proposed system. For validation purposes, a case study is presented where the devices are deployed on a timber platform to estimate its modal properties, which are compared with the ones provided by a commercial system, based on analog accelerometers, to show that similar results are obtained at a significantly lower cost.

摘要

在结构健康监测领域,最受欢迎的选择之一是跟踪模态参数,这些参数是通过结构的频率响应函数来估计的,通常以加速度的形式表示,加速度是通过测量的加速度与施加的力的比值计算得出的。这需要使用能够以高采样率同步记录结构上多个点的加速度的设备,并使用记录的数据进行后续的计算分析。为此,这项工作提出并验证了一种基于多个 myRIO 设备和数字 MEMS(微机电系统)加速度计的新型可扩展采集系统,旨在用于大型结构的模态分析。作者在之前的工作中提出了这种系统的一种简单形式,表明连接了一些加速度计的单个电路板能够在时域和频域中获得高质量的测量结果。现在,提出了一个由多个从板组成的更大系统,这些从板连接并同步到一个主板上。在所提出的系统的同步通道之间发现延迟低于 100ns。为了验证目的,提出了一个案例研究,其中将设备部署在一个木材平台上,以估计其模态特性,并与基于模拟加速度计的商业系统提供的特性进行比较,以表明以显著更低的成本获得了类似的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83ac/8512721/ffc8e4de05f8/sensors-21-06637-g001.jpg

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