首页> 外文会议>ASME gas turbine India conference >ESTIMATION OF ACTIVE MAGNETIC BEARINGS (AMB) DYNAMIC PARAMETERS AND RESIDUAL MASS IMBALANCE USING FEM WITH PID CONTROLLER AND IDENTIFICATION ALGORITHM OF A FLEXIBLE ROTOR SYSTEM FULLY LEVITATED ON AMB
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ESTIMATION OF ACTIVE MAGNETIC BEARINGS (AMB) DYNAMIC PARAMETERS AND RESIDUAL MASS IMBALANCE USING FEM WITH PID CONTROLLER AND IDENTIFICATION ALGORITHM OF A FLEXIBLE ROTOR SYSTEM FULLY LEVITATED ON AMB

机译:基于有限元的PID控制器和辨识完整的柔性转子系统辨识算法,利用有限元估计有源电磁轴承(AMB)的动力学参数和剩余质量不平衡

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摘要

The dynamic analyses of rotating systems are always a testing task to obtain the definite results. This paper carries the dynamic modelling, analysis and identification of coupled flexible rotor system supported bv an auxiliary Active Magnetic Bearings (AMBs). An identification algorithm is used to estimate the dynamic parameters of AMB, and rotor residual mass imbalance. The proposed algorithm is a right method for the analysis of fully levitated rotor on AMBs. Finite element method is used to model the dynamic flexible rotor system with PID controller. A conventional dynamic condensation technique is implemented in the development of identification algorithm to overcome the difficulty in numerical simulation. The least-squares fit technique is deployed to estimate the dynamic parameters in frequency domain. Then the algorithm is extended to find the misalignment forces and moments at the coupling point. Numerical study is carried to check the correctness of the algorithm. The proposed algorithm is yet to be tested to experimental results from a fully levitated rotor test rig supported with AMBs.
机译:旋转系统的动态分析始终是获得确定结果的测试任务。本文对通过辅助主动电磁轴承(AMBs)支撑的耦合挠性转子系统进行了动力学建模,分析和识别。识别算法用于估计AMB的动态参数以及转子剩余质量不平衡。所提出的算法是分析AMBs上的全悬浮转子的正确方法。使用有限元方法对具有PID控制器的动态柔性转子系统进行建模。克服了数值模拟中的困难,在识别算法的发展中采用了传统的动态凝结技术。运用最小二乘拟合技术来估计频域中的动态参数。然后对该算法进行扩展,以找到耦合点处的偏心力和力矩。进行了数值研究,验证了算法的正确性。拟议的算法尚未从带有AMB的完全悬浮转子测试装置的实验结果中进行测试。

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