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A Novel Data Reduction Approach for Structural Health Monitoring Systems

机译:一种结构健康监测系统的新型数据约简方法

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摘要

The massive amount of data generated by structural health monitoring (SHM) systems usually affects the system’s capacity for data transmission and analysis. This paper proposes a novel concept based on the probability theory for data reduction in SHM systems. The beauty salient feature of the proposed method is that it alleviates the burden of collecting and analysis of the entire strain data via a relative damage approach. In this methodology, the rate of variation of strain distributions is related to the rate of damage. In order to verify the accuracy of the approach, experimental and numerical studies were conducted on a thin steel plate subjected to cyclic in-plane tension loading. Circular holes with various sizes were made on the plate to define damage states. Rather than measuring the entire strain response, the cumulative durations of strain events at different predefined strain levels were obtained for each damage scenario. Then, the distribution of the calculated cumulative times was used to detect the damage progression. The results show that the presented technique can efficiently detect the damage progression. The damage detection accuracy can be improved by increasing the predefined strain levels. The proposed concept can lead to over 2500% reduction in data storage requirement, which can be particularly important for data generation and data handling in on-line SHM systems.
机译:结构健康监控(SHM)系统生成的大量数据通常会影响系统的数据传输和分析能力。本文提出了一种基于概率论的SHM系统数据约简的新概念。所提出的方法的突出特点是通过相对损伤方法减轻了收集和分析整个应变数据的负担。在这种方法中,应变分布的变化率与损伤率有关。为了验证该方法的准确性,对承受循环面内张力载荷的薄钢板进行了实验和数值研究。在板上制作各种尺寸的圆形孔以定义损坏状态。并非测量整个应变响应,而是针对每种损坏情况获取了不同预定义应变水平下应变事件的累积持续时间。然后,使用计算出的累积时间的分布来检测损伤的进展。结果表明,所提出的技术可以有效地检测损伤的进展。通过增加预定义的应变水平可以提高损伤检测的准确性。提出的概念可以导致数据存储需求减少2500%以上,这对于在线SHM系统中的数据生成和数据处理尤其重要。

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