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Dynamic Simulation of Radial Active Magnetic Bearing System for High Speed Rotor using ADAMS and MATLAB Co-simulation

机译:使用ADAMS和MATLAB共模的高速转子径向主动磁轴承系统动态仿真

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A co-simulation using ADAMS and MATLAB/Simulink is proposed for the dynamic simulation of high speed rotating flexible rotor supported by active magnetic bearings. The controller and actuator of AMBs are modeled in MATLAB/Simulink and the plant model of the rotor is implemented in ADAMS software. A decentralized proportional - integral -derivative (PID) control is used as main position regulator. The electromagnetic actuator is modeled as linearized spring with constant position stiffness and current stiffness. The current amplifier is modeled as proportional current controller which drives electromagnet coils with constant DC voltage. The rotor is modeled as flexible body in ANSYS software and the ADAMS gives motions and mechanical constraints to this body, finally completes rotating flexible rotor model supported AMBs. The ADAMS plant model is incorporated to MATLAB/Simulink as a s-function, and MATLAB do the simulations. In the co-simulation results, run-out values of the constantly rotating flexible rotor is calculated numerically, which is not reported in rigid body rotor dynamics.
机译:提出了使用ADAMS和MATLAB / SIMULINK的共模,用于通过主动磁轴承支撑的高速旋转柔性转子的动态模拟。 AMB的控制器和致动器在MATLAB / SIMULINK中建模,并且在ADAMS软件中实现了转子的工厂模型。分散的比例 - 积分 - 长期(PID)控制用作主位置调节器。电磁致动器被建模为具有恒定位置刚度和电流刚度的线性化弹簧。电流放大器被建模为比例电流控制器,其驱动具有恒定直流电压的电磁线圈。转子被建模为ANSYS软件中的柔性主体,并且亚当斯为该机构提供运动和机械约束,最后完成旋转柔性转子模型支持的AMB。 ADAMS工厂模型作为S函数并入MATLAB / SIMULINK,并且MATLAB执行模拟。在共模仿真结果中,数值上计算不断旋转的柔性转子的输出值,其在刚体转子动力学中未报告。

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