A Low-Cost Wireless Multinode Vibration Monitoring System for Civil Structures

Renan Rocha Ribeiro, Rafael de Almeida Sobral, I. B. Cavalcante, Luís Augusto Conte Mendes Veloso, Rodrigo de Melo Lameiras
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Abstract

Structural health monitoring (SHM) has gained importance because many structures are approaching the end of their design life and demanding maintenance and monitoring. Low-cost solutions may push forward a widespread implementation of SHM on infrastructures but further investigation is still required to assess the performance of technically accessible, simple, and scalable low-cost systems. This work presents the development and validation of a low-cost vibration-based SHM multinode wireless system, based on the Arduino platform, for identification of modal parameters in civil infrastructures. Full details about the hardware and source code of the system are disclosed in an open repository, allowing its reproduction even by non-specialists in electronics. The sampling frequency stability of the system is experimentally characterized, and interpolation postprocessing algorithms are proposed to solve inherent limitations. The system is validated, and its performance is investigated in impulse and ambient vibration tests performed in a real-scale slab and a high-grade system. The data obtained from the proposed system in impulse tests allowed estimation of natural frequencies within 2%, and MAC values around 0.3 to 0.9, in relation to those estimated with the high-grade system. However, the low-cost system was unable to produce usable data in ambient vibration tests.
土木结构低成本无线多节点振动监测系统
结构健康监测(SHM)变得越来越重要,因为许多结构接近其设计寿命的终点,需要维护和监测。低成本的解决方案可能会推动SHM在基础设施上的广泛实施,但仍然需要进一步的调查来评估技术上可访问的、简单的、可扩展的低成本系统的性能。本工作介绍了基于Arduino平台的基于低成本振动的SHM多节点无线系统的开发和验证,用于民用基础设施的模态参数识别。有关该系统的硬件和源代码的全部细节在一个开放的存储库中公开,即使是非电子学专家也可以复制它。实验表征了系统的采样频率稳定性,并提出了插值后处理算法来解决固有的局限性。对该系统进行了验证,并在实际板和高档系统中进行了冲击和环境振动试验。在脉冲测试中,从建议系统获得的数据允许在2%内估计固有频率,并且MAC值约为0.3至0.9,相对于高级别系统的估计值。然而,这种低成本的系统无法在环境振动测试中产生可用的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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