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An accurate and reliable operational transfer path analysis for transfer path contribution evaluation based on Landweber iterative method

机译:基于Landwober迭代方法的转移路径贡献评估准确可靠的操作转移路径分析

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摘要

To improve the accuracy and reliability of operational transfer path analysis (OTPA) in transfer path identification and path contribution evaluation, Landweber-iterative-method-based OTPA is proposed in this paper. Firstly, the vibration data at the reference points and the target points in the operating conditions are obtained. Secondly, the appropriate iteration model and the iterative termination criterion of the Landweber iterative method are designed to improve the fitting degrees of the transmissibility function matrix. Thirdly, the transmissibility function matrix is obtained using the data in experimental operating conditions. Finally, transfer path identification and contribution evaluation are carried out in practical operating conditions, and the major transfer paths are identified. Furthermore, the accuracy, reliability and noise tolerance capability of the proposed method are comparatively studied with truncated singular value decomposition and Tikhonov-regularization-based OTPA, according to typical numerical case studies and experimental case studies on a cylindrical test bed. Generally, the proposed method can obviously improve the accuracy and reliability of transfer path identification and path contribution evaluation, and provide significant evidence for vibration reduction and the control of mechanical systems.
机译:为了提高转移路径识别和路径贡献评估中操作转移路径分析(OTPA)的准确性和可靠性,本文提出了基于Landweer-Wererative方法的OTPA。首先,获得参考点处的振动数据和操作条件中的目标点。其次,设计了适当的迭代模型和Landwoer迭代方法的迭代终止标准,以改善传输功能矩阵的拟合度。第三,使用实验操作条件中的数据获得传输功能矩阵。最后,在实际操作条件下进行转移路径识别和贡献评估,并确定主要转移路径。此外,根据典型的数值案例研究和基于Tikhonov-Ralalization的OTPA的典型数字案例研究和圆柱试验床的实验案例研究,该方法的准确性,可靠性和噪音公差能力与基于圆柱形试验床的实验性案例研究相对较好地研究。通常,该方法可以显然可以提高转移路径识别和路径贡献评估的准确性和可靠性,并为振动减少和机械系统的控制提供显着证据。

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