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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Wide Operational Speed Range of Five-Phase Permanent Magnet Machines by Using Different Stator Winding Configurations
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Wide Operational Speed Range of Five-Phase Permanent Magnet Machines by Using Different Stator Winding Configurations

机译:通过使用不同的定子绕组配置,在五相永磁电机的宽运行速度范围内

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摘要

The winding changeover technique is an effective method for extending the operational speed range of permanent magnet synchronous machines (PMSMs). Unlike three-phase machines which could be wound in wye or delta connections, there are three possible connections, i.e., star, pentagon, and pentacle for five-phase electric machines. In this work, the effects of these three winding connections on a five-phase PMSM performance are studied. First, based on the mathematical model and finite-element analysis, the effects of different stator winding connections on torque–speed and efficiency characteristics are investigated. Then, the complete electric machine drive system including the winding changeover mechanism is simulated to present its dynamic performance. Finally, experimental results are provided to show the transient and steady-state operation of a five-phase PMSM with star, pentagon, and pentacle winding connections.
机译:绕组转换技术是扩展永磁同步电机(PMSM)的运行速度范围的有效方法。与可能以星形或三角形连接方式缠绕的三相电机不同,存在五种可能的连接方式,即五相电机的星形,五边形和五角形。在这项工作中,研究了这三个绕组连接对五相PMSM性能的影响。首先,基于数学模型和有限元分析,研究了不同定子绕组连接对转矩-速度和效率特性的影响。然后,对包括绕组切换机构的完整电机驱动系统进行仿真,以显示其动态性能。最后,提供的实验结果显示了星形,五边形和五角形绕组连接的五相PMSM的瞬态和稳态工作。

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