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Bearing dynamic parameters identification of a flexible rotor-bearing system based on transfer matrix method

机译:基于传递矩阵法的柔性转子轴承系统轴承动力学参数辨识

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摘要

Bearing dynamic parameters are important factors governing the vibration characteristics of rotating machinery; however, they are difficult to determine due to limited experimentation, and inaccurate in modelling. In this paper, a parameter identification method is presented to identify the bearing dynamic parameters of a flexible rotor-bearing system. In this method, the parameter identification problem is formulated as an inverse problem. The bearing dynamic parameters have been characterized through minimizing the error squared of the rotor-bearing system unbalance response between the experiment results and the computational ones. The intergeneration projection genetic algorithm is used to minimize the error squared. As an efficient method for analysing the dynamic behaviour of a rotor-bearing system, an improved transfer matrix method has been employed to calculate the unbalance response. This approach has been applied to identify the bearing dynamic parameters of a test rig supported by two anisotropic bearings, according to the unbalance response experimental data. Results indicated that this method could identify the bearing dynamic parameters. It is also robust to the noise effects.
机译:轴承动态参数是控制旋转机械振动特性的重要因素。但是,由于实验有限以及建模不准确,很难确定它们。本文提出了一种参数识别方法来识别柔性转子轴承系统的轴承动态参数。在该方法中,将参数识别问题表述为反问题。通过最小化转子轴承系统的不平衡响应的误差平方来表征轴承动态参数,实验结果与计算结果之间的不平衡响应。代间投影遗传算法用于最小化误差平方。作为分析转子轴承系统动态行为的有效方法,已采用一种改进的传递矩阵方法来计算不平衡响应。根据不平衡响应实验数据,该方法已应用于识别由两个各向异性轴承支撑的试验台的轴承动态参数。结果表明,该方法可以识别轴承动力学参数。它对噪声影响也很强健。

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