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Bearingless PM-synchronous machine with axial active magnetic bearing fed by zero-sequence current

机译:无轴承的PM-同步机,具有零序电流供给的轴向主动磁轴承

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A novel inverter supply for bearingless PM-synchronous motors with magnetic suspension allows the reduction of the number of power electronic switches. Hence, all six motional degrees of freedom of bearingless AC machines may be controlled via 3-phase inverter topologies. In this paper, instead of a bearingless motor consisting of two half motors, one bearingless motor with an additional radial active magnetic bearing is treated. Bearingless machines with cylindrical rotors in contrast to double cone rotors generate - apart from the electromagnetic torque - only radial magnetic forces. Hence, an axial magnetic bearing is used. For this bearing, there is no need for a feeding converter bridge as the bearing coil is fed by the zero-sequence current of the feeding 3-phase inverters. The bearing coil is placed between the two star points of the motor winding. The zero-sequence current amplitude is adjusted by the 3-phase inverters via pulse width modulation. The feasibility of this kind of axial position control is proven by simulation as well as with an experiment with a 1 kW prototype motor up to 60000 min~(-1).
机译:具有磁悬浮具有磁悬浮的无轴别PM同步电动机的新型逆变器供应允许减少电力电子开关的数量。因此,可以通过三相逆变器拓扑控制无承重AC机器的所有六个动机自由度。在本文中,代替由两个半电动机组成的无轴承电动机,处理一个带有额外的径向主动磁轴承的无轴承电动机。与圆柱形转子的无轴承机器与双锥转子产生相比,从电磁扭矩 - 仅产生径向磁力。因此,使用轴向磁轴承。对于该轴承,由于轴承线圈通过供给的3相逆变器的零序电流供给轴承线圈,不需要进料转换器桥。轴承线圈放置在电机绕组的两个星点之间。通过脉冲宽度调制由3相逆变器调节零序电流幅度。通过仿真证明这种轴向位置控制的可行性以及高达60000分钟〜(-1)的1 kW原型电机的实验。

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