一种新的基于振动的结构健康监测开放数据库基准结构

Stefan Wernitz, Benedikt Hofmeister, Clemens Jonscher, T. Griessmann, R. Rolfes
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引用次数: 6

摘要

基于振动的结构健康监测是许多工程学科正在进行的研究领域。在土木工程方面,在过去的几十年里,在实验室和现实生活条件下,已经建立了大量的实验结构。其中一些设施成为与结构健康监测相关的各种方法(如损伤分析和运行模态分析)的基准,这导致了全球研究界卓有成效的发展。当涉及到暴露于环境和操作变化的机械系统结构完整性的持续监测和评估时,应用方法的鲁棒性和适应性至关重要。这些特性不能在实验室条件下完全评估,这突出了户外测量活动的必要性。为此,我们介绍了一个结构健康监测的测试设施,包括一个暴露在现实条件下的晶格塔,并具有多种可逆损伤机制。该建筑位于德国北部汉诺威附近,密集地配备了传感器来捕捉结构动态。同时监测环境条件。获得的连续测量数据可以在开放的存储库中在线访问。这是基准的基础,由不断增长的数据集组成,可以开发、评估和比较结构健康监测策略和方法。在本文中,我们提供了测试设备和数据采集系统的文档。最后,我们借助有限元模型和分析几个月的数据来表征结构动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new open‐database benchmark structure for vibration‐based Structural Health Monitoring
Vibration‐based Structural Health Monitoring is an ongoing field of research in many engineering disciplines. As for civil engineering, plenty of experimental structures have been erected in the past decades, both under laboratory and real‐life conditions. Some of these facilities became a benchmark for different kinds of methods associated with Structural Health Monitoring such as damage analysis and Operational Modal Analysis, which led to fruitful developments in the global research community. When it comes to the continuous monitoring and assessment of the structural integrity of mechanical systems exposed to environmental and operational variability, the robustness and adaptability of the applied methods is of utmost importance. Such properties cannot be fully evaluated under laboratory conditions, which highlights the necessity of outdoor measurement campaigns. To this end, we introduce a test facility for Structural Health Monitoring comprising a lattice tower exposed to realistic conditions and featuring multiple reversible damage mechanisms. The structure located near Hanover in Northern Germany is densely equipped with sensors to capture the structural dynamics. The environmental conditions are monitored in parallel. The obtained continuous measurement data can be accessed online in an open repository. That is the foundation for benchmarks, consisting of a growing data set that enables the development, evaluation, and comparison of Structural Health Monitoring strategies and methods. In this article, we offer a documentation of the test facility and the data acquisition system. Lastly, we characterize the structural dynamics with the help of a finite element model and by analyzing several month of data.
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