首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >PROCESSING OF AMBIENT VIBRATION RESPONSE FOR MODAL PARAMETERS IDENTIFICATION OF A JACKET-TYPE OFFSHORE PLATFORM: SEA TEST STUDY
【24h】

PROCESSING OF AMBIENT VIBRATION RESPONSE FOR MODAL PARAMETERS IDENTIFICATION OF A JACKET-TYPE OFFSHORE PLATFORM: SEA TEST STUDY

机译:用于夹克式离岸平台的模态参数识别环境振动响应的处理:海测试研究

获取原文

摘要

Modal parameters identification of offshore structures is important for many engineering applications, such as damage detection, structural health monitoring, etc. Operational modal analysis has been widely used for large structures. However, measured signals are inevitably contaminated with noise and may not be clean enough for identifying the modal parameters with proper accuracy. The traditional methods to estimate modal parameters in noisy situation are based on over-determined system to absorb the "noise modes" firstly, and then using the stability diagrams to distinguish the true modes from the "noise modes". However, it is difficult to sort out true modes when the signal noise ratio is low, especially, the "noise modes" will also tend to be stable as the model order increases. This study develops a noise reduction procedure for polyreference complex exponential (PRCE) modal analysis based on ambient vibration responses. In the procedure, natural excitation technique (NExT) is firstly applied to get free decay responses (auto- and cross-correlation functions) from measured (noisy) ambient vibration data, and then the noise reduction method based on solving the partially described inverse singular value problem (PDISVP) is implemented to reconstruct a filtered data matrix from the measured data matrix. In our case, the measured data matrix is block Hankel structured, which is constructed based on the free decay responses. The filtered data matrix should maintain the block Hankel structure and be lowered in rank. When the filtered data matrix is obtained, the PRCE method is applied to estimate the modal parameters. The proposed NExT-PDISVP-PRCE scheme is applied to field test of a jacket type offshore platform. Results indicate that the proposed method can improve the accuracy of operational modal analysis.
机译:近海结构的模态参数对于许多工程应用是重要的,例如损坏检测,结构健康监测等。操作模态分析已广泛用于大型结构。然而,测量信号不可避免地被噪声污染,并且可能不足以以适当的精度识别模态参数。传统方法来估计嘈杂情况下的模态参数是基于过度确定的系统,以首先吸收“噪声模式”,然后使用稳定图来区分来自“噪声模式”的真实模式。然而,当信号噪声比低时,难以整理真正的模式,特别是,随着模型顺序的增加,“噪声模式”也将趋于稳定。该研究基于环境振动响应,对多次增长复杂指数(PRCE)模态分析产生了降噪过程。在该过程中,首先应用自然激励技术(下一个)以获得从测量(嘈杂)环境振动数据的自由衰减响应(自动和互相关函数),然后基于求解部分描述的逆奇异的降噪方法实现价值问题(PDISVP)以从测量的数据矩阵重建滤波的数据矩阵。在我们的情况下,测量的数据矩阵是块Hankel结构化,其基于自由衰减响应构造。过滤的数据矩阵应维持块Hankel结构并降低等级。当获得滤波的数据矩阵时,应用PRCE方法来估计模态参数。所提出的下一个PDISVP-PRCE方案适用于夹克式离岸平台的现场测试。结果表明,该方法可以提高操作模态分析的准确性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号