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Simultaneous identification of residual unbalances and bearing dynamic parameters from impulse responses of rotor-bearing systems

机译:从转子轴承系统的脉冲响应中同时识别残余不平衡量和轴承动态参数

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摘要

An identification algorithm for simultaneous estimation of residual unbalances and bearing dynamic parameters by using impulse response measurements is presented for multi-degree-of-freedom (mdofs) flexible rotor-bearing systems. The algorithm identifies speed-dependent bearing dynamic parameters for each bearing and residual unbalances at predefined balancing planes. Bearing dynamic parameters consist of four stiffness and four damping coefficients and residual unbalances contain the magnitude and phase information. Timoshenko beam with gyroscopic effects are included in the system finite element modelling. To overcome the practical difficulty of number of responses that can be measured, the standard condensation is used to reduce the number of degrees of freedom (dofs) of the model. For illustration, responses in time domain are simulated due to impulse forces in the presence of residual unbalances from a rotor-bearing model and transformed to frequency domain. The identification algorithm uses these responses to estimate bearing dynamic parameters along with residual unbalances. The proposed algorithm has the flexibility to incorporate any type and any number of bearings including seals. The identification algorithm has been tested with the measurement noise in the simulated response. Identified parameters match quite well with assumed parameters used for the simulation of responses. The response reproduction capability of identified parameters has been found to be excellent.
机译:针对多自由度(mdofs)柔性转子轴承系统,提出了一种利用脉冲响应测量同时估算剩余不平衡量和轴承动态参数的识别算法。该算法识别每个轴承的速度相关轴承动态参数以及预定义平衡平面上的残余不平衡量。轴承动态参数包括四个刚度和四个阻尼系数,剩余不平衡量包含大小和相位信息。在系统有限元建模中包括具有陀螺效应的蒂莫申科梁。为了克服可测量的响应数的实际困难,标准缩合用于减少模型的自由度(dofs)数。为了说明起见,在时域响应是由于存在来自转子轴承模型的残余不平衡而产生的脉冲力而模拟的,并转换到频域。识别算法使用这些响应来估计轴承动态参数以及残余不平衡。提出的算法可以灵活地合并任何类型和任何数量的轴承,包括密封件。识别算法已通过模拟响应中的测量噪声进行了测试。识别出的参数与用于模拟响应的假定参数非常匹配。已经发现,所识别的参数的响应再现能力是极好的。

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