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A double concentric wound rotor brushless doubly fed generator

机译:双同心伤口转子无刷双喂发器的发电机

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The rotor structure is one of the key factors affecting the performance of the brushless doubly fed generator (BDFG). So far, three types of rotor structure have been developed, namely the reluctance rotor, the special cage rotor, and the double sine wound rotor. However, there still exist some problems, such as the high harmonic content of the rotor winding, resulting in large losses and low efficiency of the machine, and the complex winding design and manufacturing process. These problems restrict the industrial application of the BDFG. To solve these drawbacks, a double concentric wound rotor structure is proposed and presented in this paper for a 100-kW BDFG. The proposed rotor structure can improve the conductor utilization ratios of the rotor winding and largely reduce the harmonic contents. The steady-state performance of a 100-kW prototype generator with the double concentric wound rotor structure is analyzed by finite element model simulation and experimental tests. The experimental results on the prototype show that the BDFG with the double concentric wound rotor structure gives good performance. (c) 2018 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:转子结构是影响无刷双饲料发电机(BDFG)性能的关键因素之一。到目前为止,已经开发了三种类型的转子结构,即不情愿转子,特殊的笼子转子和双正弦伤口转子。但是,仍然存在一些问题,例如转子绕组的高谐波内容,导致机器的损失和低效率以及复杂的绕组设计和制造过程。这些问题限制了BDFG的工业应用。为了解决这些缺点,提出了双同心伤口转子结构,并在本文中以100 kW的BDFG呈现。提出的转子结构可以改善转子绕组的导体利用率,并大大减少谐波内容物。通过有限元模型模拟和实验测试,分析了具有双同心伤口转子结构的100 kW原型发生器的稳态性能。原型上的实验结果表明,具有双同心伤口转子结构的BDFG可提供良好的性能。 (c)2018年日本电气工程师研究所。由John Wiley&Sons,Inc。出版

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