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Compensation for the Radial Forces in an Electric Motor Drive with a Field-Regulated Reluctance Machine

机译:磁场调节磁阻电机对电动机驱动中的径向力的补偿

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摘要

Ways to reduce radial loads on the bearings of electric machines with an electric traction drive are considered. An idea of compensation for radial loads is proposed, and a mathematical model of the electric motor drive with the controlled radial forces in the vertical direction is developed on the basis of a field-regulated reluctance machine. The model takes into account the influence of the vertical forces that are generated by various machine windings and wear in the mechanical part of the electric motor. Additional winding is used to appropriately assess the influence of the radial force. The maximum vertical force acting on the machine is calculated from the obtained waveforms. This fact allowed us to identify the future direction of research. Methods of mathematical modeling construct the dependence of the vertical force from the currents flowing in the windings of the electric machine. The minimum force is created when the field current changes, and the maximum force is created when the armature circuit current is varied. This indicates that the winding provides maximum compensation for the radial force.
机译:考虑了减小具有电牵引驱动的电机轴承上的径向载荷的方法。提出了一种补偿径向载荷的想法,并在磁场调节磁阻电机的基础上,建立了在垂直方向上具有受控径向力的电动机驱动器的数学模型。该模型考虑了各种电机绕组产生的垂直力的影响以及电动机机械部分的磨损。附加绕组用于适当评估径向力的影响。根据获得的波形计算作用在机器上的最大垂直力。这一事实使我们能够确定研究的未来方向。数学建模的方法构造了垂直力与电机绕组中流动的电流之间的关系。当励磁电流变化时,将产生最小的力,而在电枢电路电流变化时,将产生最大的力。这表明绕组为径向力提供了最大的补偿。

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