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An Artificial Filter Bank (AFB) for Structural Health Monitoring of Civil Structures-Parti: A Concept and Design of the AFB

机译:用于民间结构的结构健康监测人工滤波器银行(AFB) - PARTI:AFB的概念和设计

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This study developed an artificial filter bank (AFB) that emulates the auditory system in order to efficiently obtain the significant dynamic responses. The developed AFB is composed of digitally coded band-pass filter optimizing algorithm (BOA) and peak-picking algorithm (PPA). The developed AFB was then optimized using the random El-Centro earthquake wave, which is often used in structural dynamic studies, and the reconstructed signal and compressed signal were compared to the original signal using the reconstruction error (RE) and compressive ratio (CR). The AFB developed, designed, and evaluated in this study adequately captures the time and frequency information of the original signal while capturing the significant dynamic response compressed about the frequency range of interest. Also the digitally developed AFB overcomes the shortcomings of conventional analog filter banks, supporting for quick and easy software-based implementation of new logics, optimizations, and designs. Ultimately the AFB developed in this study is expected to provide new paradigm in the structural health monitoring of construction structures as well as other structures.
机译:本研究开发了一种人工滤波器组(AFB),用于刺激听觉系统,以便有效地获得显着的动态响应。开发的AFB由数字编码的带通滤波器优化算法(BOA)和峰值拾取算法(PPA)组成。然后使用常用于结构动态研究的随机EL-CITERO地震波进行优化,使用重建误差(RE)和压缩比(CR)将重建信号和压缩信号进行比较。 。在该研究中开发,设计和评估的AFB充分捕获原始信号的时间和频率信息,同时捕获对频率范围的频率范围压缩的显着动态响应。此外,数字开发的AFB克服了传统的模拟滤波器银行的缺点,支持快速简便的基于软件的新逻辑,优化和设计的实现。最终,预计本研究中开发的AFB将在建筑结构的结构健康监测以及其他结构中提供新的范式。

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