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Multistep and Multiparameter Identification Method for Bridge Cable Systems

机译:桥梁索道系统的多步多参数辨识方法

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摘要

Because complex cable systems are widely used in engineering practice, the issues related to parameter identification of complex cable systems are becoming increasingly important. In this study, a universal characteristic frequency equation, considering boundary conditions, various lateral forces, and multiple factors pertaining to cables simultaneously, was established for a class of cable systems installed with intermediate lateral components. The optimization model corresponding to the equation was established to transform the root-finding problem of the complicated transcendental equation into a relatively simple parameter identification and optimization problem. Thereafter, a parameter identification scheme for complicated cable systems was proposed using the particle swarm optimization algorithm. Through experimental tests using a full-scale cable-damper system, a detailed multistep, multiparameter identification program was presented for complex cable systems. The experimental results, achieved effectively using the proposed method, indicate a significant reduction in parameter identification errors and improvement in identification quality. (C) 2017 American Society of Civil Engineers.
机译:由于复杂电缆系统在工程实践中被广泛使用,因此与复杂电缆系统的参数识别相关的问题变得越来越重要。在这项研究中,针对安装了中间横向组件的一类电缆系统,建立了考虑边界条件,各种侧向力以及与电缆有关的多个因素的通用特征频率方程。建立了对应方程的优化模型,将复杂的先验方程的求根问题转化为相对简单的参数辨识和优化问题。此后,提出了一种基于粒子群算法的复杂电缆系统参数识别方案。通过使用大型电缆阻尼器系统的实验测试,提出了用于复杂电缆系统的详细的多步,多参数识别程序。使用所提出的方法有效地获得的实验结果表明,参数识别错误显着减少,并且识别质量得到改善。 (C)2017年美国土木工程师学会。

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