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MODELING AND CONTROL OF AN AXIAL MAGNETIC BEARING FOR A PROTOTYPE OF ELECTRIC MOTOR SUPPORTED BY RADIAL MAGNETIC BEARINGS

机译:径向磁轴承支撑电动机原型的轴向磁轴承的建模与控制

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Research on magnetic bearings is being conducted in universities and research centers all over the world. Among the main advantages of the use of these devices are the reduction of friction losses and their corresponding necessity for maintenance. Magnetic bearings can already be found in rotating machines in medical, food, oil, and military industries. As to electric machines, the use of such electromagnets provides a natural instability to the system. Therefore, controllers become necessary to hold the rotor in an equilibrium position, without contact with the stator. In this work, modeling, implementation, and practical results of an axial position controller is presented. An axial controller has been designed to be implemented on an experimental prototype that consists of an induction motor, arranged in the horizontal position, already supported by radially controlled magnetic bearings. Different from other approaches, the experimental stiffness and damping observed along the axial direction, when only the radial magnetic bearings are acting, was taken into account for the controller design.
机译:磁性轴承的研究正在世界各地的大学和研究中心进行。这些装置的使用的主要优点是减少摩擦损失及其相应的维护必要性。磁性轴承已经在医疗,食品,石油和军事行业的旋转机器中找到。关于电机,使用这种电磁铁提供对系统的自然不稳定性。因此,控制器必须在平衡位置保持转子,而不与定子接触。在这项工作中,提出了轴向位置控制器的建模,实现和实际结果。轴向控制器被设计成在实验原型上实现,该实验原型包括由径向控制的磁轴承支撑的已经支撑的水平位置的感应电动机组成。考虑到控制器设计,考虑到仅当仅径向磁轴承作用时观察到的其他方法,沿轴向观察的实验刚度和阻尼。

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