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Performance of series hybrid excitation synchronous machine in comparison with wound field synchronous machine

机译:串联混合励磁同步电机与绕线励磁同步电机的性能比较

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This paper explores some of the characteristics and limitations of the series configuration of hybrid excitation synchronous machine (HESM) compared to the wound field synchronous machine (WFSM). It also explores the influence of magnet excitation to field excitation ratio on their performances. The WFSM is a conventional salient pole synchronous motor, and the HESM consists of conventional salient pole synchronous motor with additional surface mounted permanent magnets. The performances of the motors are investigated using finite element analysis (FEA). All machines share a similar stator, power rating and operate at unity power factor. All simulations are performed at 120°C, which is the highest allowable machine operating temperature. This is to demonstrate HESM better performance, compared to the WFSM, even at high temperatures. An increase of magnet excitation to field excitation ratio is shown to reduce air-gap flux distortion, copper losses, and active mass of the machine. However, these improvements come at a significant increase in costs due to the use of permanent magnet material. Design challenges of the considered HESMs are discussed.
机译:本文探讨了混合励磁同步电机(HESM)与绕线励磁同步电机(WFSM)串联配置的一些特点和局限性。它还探讨了磁体励磁对励磁比的影响对其性能的影响。 WFSM是常规的凸极同步电动机,而HESM由常规的凸极同步电动机和附加的表面安装永磁体组成。使用有限元分析(FEA)研究了电动机的性能。所有机器都具有相似的定子,额定功率,并以统一的功率因数运行。所有模拟都是在120°C(机器允许的最高工作温度)下进行的。这是为了证明HESM与WFSM相比,即使在高温下也具有更好的性能。磁铁励磁与磁场励磁比的增加显示出可减少气隙磁通畸变,铜损和电机的有效质量。但是,由于使用了永磁体材料,这些改进显着增加了成本。讨论了所考虑的HESM的设计挑战。

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