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An air-gap-flux-oriented vector controller for stable operation of bearingless induction motors

机译:面向气隙通量的矢量控制器,用于无轴承感应电动机的稳定运行

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摘要

A bearingless induction machine has combined characteristics of an induction motor and magnetic bearings. It is known that the magnetic suspension of the rotor becomes unstable at overload operation, particularly in transient conditions. A novel air-gap-flux-oriented vector control scheme has been proposed to operate the bearingless induction motor during the high torque acceleration period. It has been found that there is an optimal flux orientation for complete decoupling in radial force generation. Test results in a laboratory bearingless induction motor validates the performance efficacy of proposed controller at overload conditions.
机译:无轴承感应电机具有感应电动机和磁性轴承的组合特性。已知的是,转子的磁悬浮在过载运行时,特别是在瞬态条件下变得不稳定。提出了一种新颖的面向气隙通量的矢量控制方案,以在高转矩加速期间运行无轴承感应电动机。已经发现在径向力产生中存在用于完全去耦的最佳通量取向。实验室无轴承感应电动机的测试结果验证了所提出的控制器在过载条件下的性能功效。

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