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Model based analysis and identification of multiple fault parameters in coupled rotor systems with offset discs in the presence of angular misalignment and integrated with an active magnetic bearing

机译:基于模型的耦合转子系统中具有偏移圆盘的耦合转子系统中的多重故障参数的分析与识别,并用主动磁轴承集成

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In the present paper, the modelling, analysis and identification of various system faults in the presence of angular misalignment in coupled rotor-train systems integrated with an auxiliary AMB support has been presented. The method discussed in the paper quantifies the effect of misalignment by way of estimation of additive coupling stiffness (ACS). The novelty of the present paper lies in the modelling of a rotor-train-AMB system with two 4-dof simple rotors, each with an offset disc to have gyroscopic effects. With the combination of flexible coupling and weight dominance assumption the dynamic behaviour of rotorbearing-coupling-AMB system has been characterized by the eight generalized coordinates of the two rotors. The coupling's angular stiffness has been modelled as the sum of direct stiffness and a time varying ACS, whose magnitude is affected by the amount of angular misalignment. A steering function has been selected such that the forced reponse due to coupling misalignment yields both odd and even harmonics in full spectrum. An identification algorithm based on least-squares regression technique in frequency domain has been developed using the forward and backward harmonics of rotor vibration and AMB current for the estimation of coupling direct stiffness, coupling additive stiffness, unbalance magnitude and its phase, equivalent viscous damping in each rotor, current and displacement constants of AMB. The assessment of severity of angular misalignment from the magnitude of estimated ACS is a novel deviation that has potential for practical application. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,已经介绍了集成与辅助AMB支持的耦合转子串系统中角度未对准的各种系统故障的建模,分析和识别。纸张中讨论的方法通过估计添加剂耦合刚度(ACS)来量化未对准的效果。本文的新颖性在于具有两个4 DOF简单转子的转子列车-AMB系统的建模,每个转子具有偏移盘具有陀螺仪的效果。随着柔性耦合和重量优势假设的组合,滚球耦合-AMB系统的动态行为已经表征了两个转子的八个广义坐标。耦合的角度刚度已经被建模为直接刚度和时间变化的ACS的总和,其幅度受角度未对准的量影响。已经选择了转向功能,使得由于耦合未对准引起的强制响应产生全谱中的奇数甚至谐波。基于频域的最小二乘回归技术的识别算法已经使用转子振动的前后谐波和AMB电流开发了用于估计耦合直接刚度,耦合添加剂刚度,不平衡幅度及其相位,等效粘性阻尼的谐波每个转子,电流和位移常数的AMB。从估计的ACS幅度的角度未对准的严重程度评估是一种新的偏差,具有实际应用的潜力。 (c)2019 Elsevier Ltd.保留所有权利。

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