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Bridge Configured Winding for Polyphase Self-Bearing Machines

机译:多相自轴承电机的桥式绕组

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The self-bearing or bearingless machine is an electromagnetic device that supports its own rotor by way of magnetic forces generated by windings on its stator. Various winding configurations have been used to accomplish the task of force production. This paper proposes a winding based on a bridge connection for polyphase self-bearing rotating electrical machines with advantages such as: 1) requiring only one power supply for torque production; 2) lateral forces are produced using auxiliary power supplies of relatively low current and voltage ratings; 3) relatively low power loss; and 4) preserving the flexibility for extensions to other polyphase machines. The bridge connection has been verified to exhibit the characteristics of a self-bearing motor via an electrically coupled finite-element analysis. A comparison of power loss with conventional winding schemes and general applications of such a proposed scheme are also presented.
机译:自轴承或无轴承电机是一种电磁设备,它通过定子绕组上产生的磁力来支撑自己的转子。已经使用各种绕组构造来完成力产生的任务。本文提出一种用于多相自轴承旋转电机的基于桥式连接的绕组,其优点如下:1)仅需一个电源即可产生扭矩; 2)使用额定电流和电压相对较低的辅助电源产生横向力; 3)相对较低的功率损耗;和4)保留扩展到其他多相电机的灵活性。通过电耦合有限元分析,已验证桥连接具有自轴承电机的特性。还介绍了功率损耗与常规绕组方案的比较以及这种方案的一般应用。

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