Andò Bruno, Greco Danilo, Navarra Giacomo, Lo Iacono Francesco
Department of Electrical Electronic and Computer Engineering (DIEEI), University of Catania, 95123 Catania, Italy.
Department of Engineering and Architecture, Kore University of Enna, 94100 Enna, Italy.
Sensors (Basel). 2024 Jun 20;24(12):4023. doi: 10.3390/s24124023.
Health assessment and preventive maintenance of structures are mandatory to predict injuries and to schedule required interventions, especially in seismic areas. Structural health monitoring aims to provide a robust and effective approach to obtaining valuable information on structural conditions of buildings and civil infrastructures, in conjunction with methodologies for the identification and, sometimes, localization of potential risks. In this paper a low-cost solution for structural health monitoring is proposed, exploiting a customized embedded system for the acquisition and storing of measurement signals. Experimental surveys for the assessment of the sensing node have also been performed. The obtained results confirmed the expected performances, especially in terms of resolution in acceleration and tilt measurement, which are 0.55 mg and 0.020°, respectively. Moreover, we used a dedicated algorithm for the classification of recorded signals in the following three classes: noise floor (being mainly related to intrinsic noise of the sensing system), exogenous sources (not correlated to the dynamic behavior of the structure), and structural responses (the response of the structure to external stimuli, such as seismic events, artificially forced and/or environmental solicitations). The latter is of main interest for the investigation of structures' health, while other signals need to be recognized and filtered out. The algorithm, which has been tested against real data, demonstrates relevant features in performing the above-mentioned classification task.
对建筑物进行健康评估和预防性维护对于预测损伤以及安排所需的干预措施来说是必不可少的,尤其是在地震多发地区。结构健康监测旨在提供一种强大而有效的方法,以便结合识别潜在风险(有时还包括定位潜在风险)的方法,获取有关建筑物和土木基础设施结构状况的有价值信息。本文提出了一种用于结构健康监测的低成本解决方案,该方案利用定制的嵌入式系统来采集和存储测量信号。还进行了用于评估传感节点的实验调查。所获得的结果证实了预期的性能,特别是在加速度和倾斜测量分辨率方面,分别为0.55毫克和0.020°。此外,我们使用了一种专用算法,将记录的信号分为以下三类:本底噪声(主要与传感系统的固有噪声有关)、外源信号(与结构的动态行为无关)和结构响应(结构对外部刺激,如地震事件、人工施加的力和/或环境作用的响应)。后者对于结构健康调查最为重要,而其他信号则需要被识别并滤除。该算法已针对实际数据进行了测试,在执行上述分类任务时展现出了相关特性。