六相感应电动机的设计与实际实现

Samuel E. Iduh, Silas E. Omugbe
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引用次数: 1

摘要

本文提出了一种将传统的三相5马力鼠笼式4极48槽异步电动机重新设计为六相异步电动机(SPIM)。本文还深入介绍了将三相电机的单层绕组重新设计为六相分割绕组布局的方法,并实际地解释了工程师和技术人员对电机绕组的理解。在MATLAB/Simulink环境中给出了优化后的重新设计的SPIM,并对六相健康情况和常规三相感应电动机的六相配置的不同失相情况进行了比较评估。结果表明,六相感应电机优于三相感应电机;因此,在不久的将来,由于其在缺相/缺相条件下提供更高可靠性和可持续性的有效方法,它将实际应用于电力驱动设备/机器,如电动汽车等领域。
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The design and practical implementation of a six-phase induction motor
This thesis presents a re-designed conventional three phase 5-hp squirrel cage, 4-pole, 48 slots induction motor to a six-phase induction motor (SPIM). It also presents the in-depth of a single layer winding of a three-phase motor that was re-design to the six-phase split winding layout which was practically explained to the understanding of both the engineers and the technicians who normally find it difficult with windings of electrical machines. The optimized re-designed SPIM is presented in the MATLAB/Simulink environment to perform a comparative assessment of the different phase loss scenarios of the six-phase configuration with respect to the six-phase healthy case and its conventional three-phase induction motor. The result shows a comparative benefit of the six-phase induction motor over the three-phase induction motor; in such that in the near future because of its effective way to provide a higher reliability and sustainability under the loss of phase/phases condition it will be practically applied in the power driven devices/machines like in the area of Electric Vehicles, etc.
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