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Identification of time-varying cable tension forces based on adaptive sparse time-frequency analysis of cable vibrations

机译:基于自适应稀疏时频分析的电缆振动时变电缆拉力识别

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For cable bridges, the cable tension force plays a crucial role in their construction, assessment and long-term structural health monitoring. Cable tension forces vary in real time with the change of the moving vehicle loads and environmental effects, and this continual variation in tension force may cause fatigue damage of a cable. Traditional vibration-based cable tension force estimation methods can only obtain the time-averaged cable tension force and not the instantaneous force. This paper proposes a new approach to identify the time-varying cable tension forces of bridges based on an adaptive sparse time-frequency analysis method. This is a recently developed method to estimate the instantaneous frequency by looking for the sparsest time-frequency representation of the signal within the largest possible time-frequency dictionary (i.e. set of expansion functions). In the proposed approach, first, the time-varying modal frequencies are identified from acceleration measurements on the cable, then, the time-varying cable tension is obtained from the relation between this force and the identified frequencies. By considering the integer ratios of the different modal frequencies to the fundamental frequency of the cable, the proposed algorithm is further improved to increase its robustness to measurement noise. A cable experiment is implemented to illustrate the validity of the proposed method. For comparison, the Hilbert-Huang transform is also employed to identify the time-varying frequencies, which are then used to calculate the time-varying cable-tension force. The results show that the adaptive sparse time-frequency analysis method produces more accurate estimates of the time-varying cable tension forces than the Hilbert-Huang transform method. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:对于电缆桥,电缆张力在其施工,评估和长期结构健康监测中起着至关重要的作用。电缆拉力会随着移动的车辆负载的变化和环境影响而实时变化,并且这种拉力的连续变化可能会导致电缆的疲劳损坏。传统的基于振动的电缆拉力估算方法只能获得时间平均的电缆拉力,而不能获取瞬时力。本文提出了一种基于自适应稀疏时频分析方法的桥梁时变索力识别方法。这是最近开发的一种方法,它通过在最大可能的时频字典(即一组扩展函数)中寻找信号的最稀疏的时频表示来估算瞬时频率。在提出的方法中,首先,根据电缆上的加速度测量值来确定随时间变化的模态频率,然后,根据该力与所识别的频率之间的关系来获得随时间变化的电缆张力。通过考虑不同模态频率与电缆基频的整数比,对所提出的算法进行了进一步改进,以提高其对测量噪声的鲁棒性。进行电缆实验以说明所提方法的有效性。为了进行比较,还采用了希尔伯特-黄(Hilbert-Huang)变换来识别随时间变化的频率,然后将其用于计算随时间变化的电缆拉力。结果表明,与Hilbert-Huang变换方法相比,自适应稀疏时频分析方法可以对电缆随时间变化的张力进行更准确的估计。版权所有(C)2016 John Wiley&Sons,Ltd.

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