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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >A validation metrics based model calibration applied on stranded cables
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A validation metrics based model calibration applied on stranded cables

机译:基于验证指标的模型校准应用于多股电缆

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The present work is aimed at building a computational model for a typical stranded cable based on the basic principles of Verification and Validation. The model calibration and model tracking are guided based on a pool of validation metrics suitable for data which are commonly used in structural dynamics. The estimator used for the associated inverse problem is the Maximum a Posteriori estimator and the parameter estimation process is performed sequentially over experiments. Experimental tests have been performed at CEPEL's (Electric Power Research Center) laboratory span with the overhead conductor Grosbeak in order to provide the measured data. The predictive capacity of the computational model is assessed by means of frequency-and time-domain validations through FRFs, band limited white-noise and sine sweep excitations. We also present novel and reliable estimates for the bending stiffness and damping parameters of a widely used transmission line conductor.
机译:本工作旨在基于验证和确认的基本原理为典型的多股电缆建立计算模型。基于适用于结构动力学常用数据的验证指标池,指导模型校准和模型跟踪。用于相关逆问题的估计器是“最大后验”估计器,并且在整个实验过程中依次执行参数估计过程。为了提供测得的数据,已在CEPEL(电力研究中心)的实验室范围内用架空导体Grosbeak进行了实验测试。计算模型的预测能力是通过FRF,有限频带白噪声和正弦扫描激励通过频域和时域验证来评估的。我们还提出了一种新颖而可靠的估计,用于广泛使用的传输线导体的弯曲刚度和阻尼参数。

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