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Estimation of tension force in double hangers by a system identification approach

机译:用系统识别方法估算双衣架的拉力

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摘要

This article suggests a new technique for the estimation of tension of a double hanger cable system that is often used in a suspension bridge. The considered hanger system consists of the two independent parallel hanger cables tied by a lateral clamp. Measuring natural frequencies of the system, the hanger tension is determined by a frequency-based system identification technique with the aid of a finite element analysis. The proposed technique is able to simultaneously identify the tension, flexural rigidity and axial rigidity of the target hanger cable system. Laboratory experiments show that estimation errors of the proposed approach are less than 3%. For a relatively long hanger system in the field, the estimated results are similar to those evaluated by the existing methods. However, a significant difference is observed in a short hanger cable system.
机译:本文提出了一种新技术,用于估算悬架桥中经常使用的双吊索系统的张力。所考虑的吊架系统由两条独立的平行吊架电缆组成,这些电缆由侧向夹具捆绑在一起。通过测量系统的固有频率,可通过基于频率的系统识别技术并借助有限元分析来确定吊架张力。所提出的技术能够同时识别目标衣架电缆系统的张力,挠曲刚度和轴向刚度。实验室实验表明,该方法的估计误差小于3%。对于现场中相对较长的衣架系统,估计结果类似于通过现有方法评估的结果。但是,在短衣架电缆系统中观察到了显着差异。

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