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Assessment of Vibration-based Damage Identification Methods Using Displacement and Distributed Strain Measurements

机译:使用位移和分布式应变测量评估基于振动的损伤识别方法

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摘要

Accurate measurement and monitoring of vibration characteristics is critical for proper detection of the location and severity of damage. However, experimentally measured modal properties are inevitably corrupted by measurement noise and errors, which could render most vibration-based structural damage identification algorithms unreliable for civil structural health monitoring (SHM). This article, through computer simulation and experimental investigation of a simply supported beam, comparatively evaluates the performance of these techniques for practical civil SHM by using displacement modes from accelerometers and long-gage distributed strain measurements. Most of all the techniques proved unreliable for damage identification using noisy measurements from accelerometers, while successful with distributed strain measurements. The findings reveal that long-gage distributed strain measurements are much more efficient choice over the traditional measurement techniques for reliable civil SHM. It may therefore be concluded that the performance of some algorithms might be improved for application to civil infrastructure by using distributed strain fiber optic sensing measurement techniques.
机译:正确测量和监测振动特性对于正确检测损坏的位置和严重性至关重要。但是,实验测量的模态特性不可避免地会受到测量噪声和误差的破坏,这可能会使大多数基于振动的结构损伤识别算法对于民用结构健康监测(SHM)变得不可靠。本文通过计算机模拟和简单支撑梁的实验研究,通过使用加速度计的位移模式和长距离分布应变测量,比较评估了这些技术在实际民用SHM中的性能。事实证明,大多数技术都无法通过加速度计的噪声测量来进行损伤识别,但在分布式应变测量中却很成功。研究结果表明,对于可靠的民用SHM,长距离分布应变测量比传统测量技术更有效。因此可以得出结论,通过使用分布式应变光纤传感测量技术,可以改善某些算法的性能,以应用于民用基础设施。

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