arXiv:2603.29956eess.SPcs.SY2026-03

用信息论方法提升无输入信号下的阻尼估计精度,增强结构健康监测预警能力。

An Information-Theoretic Method for Dynamic System Identification With Output-Only Damping Estimation

  • 基于香农熵与KL散度构建新方法,从振动数据中动态识别系统参数。
  • 在巴斯大学多轴台和IASC-ASCE基准数据上验证,准确捕捉预警持续时间。
  • 适合结构健康监测、故障预警等需实时评估振动风险的工程场景。

本文考察了一种新型信息论方法在系统辨识中的能力,重点利用信息论度量与基于振动的测量数据,提升机械系统阻尼估计的准确性。该方法针对系统辨识、信号处理、监测与预警系统中存在的关键局限性——现有方法因经验性导致阻尼估计不佳,进而影响预警系统的判断,尤其在以振动幅值为危险指标的损伤或异常检测场景中,易造成持续时间误判。为此,提出基于香农熵与Kullback-Leibler散度的方法,旨在近实时监控振动水平,并在超过预设阈值时立即发出警报。研究采用巴斯大学多轴模拟台的真实数据及国际结构控制协会-美国土木工程师学会(IASC-ASCE)结构健康监测基准问题数据进行验证。结果表明,该方法可有效选择最优模型,精确捕捉正确预警持续时间,为系统辨识与监测提供有力工具。

原文摘要 · Abstract (English)

The system identification capabilities of a novel information-theoretic method are examined here. Specifically, this work uses information-theoretic metrics and vibration-based measurements to enhance damping estimation accuracy in mechanical systems. The method refers to a key limitation in system identification, signal processing, monitoring, and alert systems. These systems integrate various components, including sensors, data acquisition devices, and alert mechanisms. They are designed to operate in an environment to calculate key parameters such as peak accelerations and duration of high acceleration values. The current operational modal identification methods, though, suffer from limitations related to obtaining poor damping estimates due to their empirical nature. This has a significant impact on alert warning systems. This occurs when their duration is misestimated; specifically, when using the vibration amplitudes as an indicator of danger alerts for monitoring systems in damage or anomaly detection scenarios. To this end, approaches based on the Shannon entropy and the Kullback-Leibler divergence concept are proposed. The primary objective is to monitor the vibration levels in near real-time and provide immediate alerts when predefined thresholds are exceeded. In considering the proposed approach, both new real-world data from the multi-axis simulation table at the University of Bath, as well as the benchmark International Association for Structural Control-American Society of Civil Engineers (IASC-ASCE) structural health monitoring problem are considered. Importantly, the approach is shown to select the optimal model, which accurately captures the correct alert duration, providing a powerful tool for system identification and monitoring.

系统辨识信息论结构健康监测阻尼估计

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