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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Random decrement based method for modal parameter identification of a dynamic system using acceleration responses
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Random decrement based method for modal parameter identification of a dynamic system using acceleration responses

机译:基于随机减量的基于加速度响应的动态系统模态参数识别方法

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摘要

This paper proposes a random decrement (RD) based method to identify the modal parameters of a linear dynamic system, when only forced acceleration responses are available for use. The RD based method evaluates response data in the time and, then, frequency domains by correlating the RD technique with fast Fourier transform based algorithms and a linear least square procedure. However, the effect of the RD signatures of input forces that is added in the RD signatures of the acceleration responses must be addressed. In response to this need, a novel frequency response function (FRF) approach for the acceleration responses, with a modification of the traditional one, is verified as a first step. Subsequently, the derivation of the RD based method follows the concept of the FRF approach to achieve the theoretical basis of the FRF defined for the RD signatures. Numerical simulations of a 2DOF linear dynamic system loaded by white noise forces and simulated wind forces foster applicability of the RD based method. Applications of the Ibrahim time domain algorithm and the vector RD technique to the forced acceleration responses are also discussed.
机译:本文提出了一种基于随机减量(RD)的方法,用于在只有强制加速度响应可用的情况下识别线性动态系统的模态参数。基于RD的方法通过将RD技术与基于快速傅里叶变换的算法和线性最小二乘法相关联,从而评估时域和频域中的响应数据。但是,必须解决在加速度响应的RD签名中添加的输入力RD签名的影响。响应于此需求,第一步是对传统加速度传感器的改进方法进行加速响应的新型频率响应函数(FRF)方法的验证。随后,基于RD的方法的推导遵循FRF方法的概念,以实现为RD签名定义的FRF的理论基础。带有白噪声力和模拟风力的2DOF线性动力系统的数值模拟促进了基于RD的方法的适用性。还讨论了易卜拉欣时域算法和矢量RD技术在强制加速度响应中的应用。

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