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Simulation and Experimental Analysis of a Brushless Electrically Excited Synchronous Machine With a Hybrid Rotor

机译:混合转子无刷电励磁同步电机的仿真与实验分析

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Electrically excited synchronous machines with brushes and slip rings are popular but hardly used in inflammable and explosive environments. This paper proposes a new brushless electrically excited synchronous motor with a hybrid rotor. It eliminates the use of brushes and slip rings so as to improve the reliability and cost-effectiveness of the traction drive. The proposed motor is characterized with two sets of stator windings with two different pole numbers to provide excitation and drive torque independently. This paper introduces the structure and operating principle of the machine, followed by the analysis of the air-gap magnetic field using the finite-element method. The influence of the excitation winding’s pole number on the coupling capability is studied and the operating characteristics of the machine are simulated. These are further examined by the experimental tests on a 16 kW prototype motor. The machine is proved to have good static and dynamic performance, which meets the stringent requirements for traction applications.
机译:带电刷和滑环的电励磁同步电机很受欢迎,但几乎没有在易燃易爆的环境中使用。本文提出了一种新型的带有混合转子的无刷电励磁同步电动机。它消除了电刷和滑环的使用,从而提高了牵引驱动器的可靠性和成本效益。所提出的电动机的特征在于,两组定子绕组具有两个不同的极数,以独立提供励磁和驱动转矩。本文介绍了电机的结构和工作原理,然后使用有限元方法分析了气隙磁场。研究了励磁绕组极数对耦合能力的影响,并模拟了电机的运行特性。通过在16 kW原型电机上进行的实验测试进一步检查了这些内容。事实证明,该机器具有良好的静态和动态性能,可以满足牵引应用的严格要求。

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