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A frequency domain approach for estimating relative time lag between vibration measurement data

机译:估计振动测量数据之间相对时滞的频域方法

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The synchronicity of the measurement data at different locations of a structure is essential to structural health monitoring. Sometimes, however, non-synchronicity may occur in them. A frequency domain approach is proposed for the estimation of the relative time lag between vibration measurement data. Making use of the mapping between a relative time lag in the time domain and a phase angle shift in the frequency domain, the relative time lag between either two outputs of a structure is determined by finding a mode where the actual phase angle between them is ideally zero and then calculating the perturbed phase angle that corresponds to the modal frequency of the selected mode. To address the problem of non-uniqueness of solutions, the slope of the phase angle curve is employed to identify the actual relative time lag from a pool of candidates. Extensive validations have been carried out with the use of filed measurement data. Asynchronous acceleration data recorded during a ship-collision of the Jiangyin Bridge were employed to examine its capability to fulfill correct identification of relative time lag. Synchronous acceleration data of the Canton tower under ambient excitations were exploited to test its capability to avoid false-positive identification of relative time lag. The proposed frequency domain approach achieved a satisfactory performance in the identification of relative time lag for both asynchronous and synchronous measurement data. (C) 2018 Elsevier Ltd. All rights reserved.
机译:结构不同位置的测量数据的同步性对于结构健康状况监控至关重要。但是,有时它们中可能会出现非同步性。提出了一种频域方法来估计振动测量数据之间的相对时滞。利用时域中的相对时滞与频域中的相移之间的映射关系,通过找到理想情况下两者之间的实际相角为理想模式,可以确定结构的两个输出之间的相对时滞零,然后计算与所选模式的模态频率相对应的扰动相角。为了解决解的非唯一性问题,采用相角曲线的斜率来识别候选池的实际相对时滞。使用归档的测量数据已经进行了广泛的验证。江阴大桥发生船舶碰撞时记录的异步加速度数据被用来检验其正确识别相对时滞的能力。利用广州塔在环境激励下的同步加速度数据来测试其避免相对时滞的假阳性识别的能力。所提出的频域方法在异步和同步测量数据的相对时滞识别中均取得了令人满意的性能。 (C)2018 Elsevier Ltd.保留所有权利。

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