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Application of Standard Three-Phase Stator Frames in Prime Phase Order Multiphase Machine Construction

机译:标准三相定子机架在原相有序多相电机结构中的应用

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摘要

The application of multiphase machines in high-power applications is now a recognized alternative, thanks to their higher fault-tolerance when compared with standard three-phase systems. Although multiphase machines with multiples of three-phase winding sets have been favored in many applications, literature has shown that machines with a prime number of phases, such as five-phase machines, generally outperform other phase orders, especially in terms of machine torque density. One of the major problems when dealing with a prime number of phases either in academic research or industrial applications is the special stator design. This paper provides a general technique to rewind standard off-the-shelf three-phase stator frames with any general prime phase order while preserving the same copper volume. The proposed winding layout is derived using the star of slots theory and the concept of stator winding shifting. Finite-element simulations are used to investigate examples with different phase orders, while experimental investigation is carried out to corroborate the proposed concept by rewinding a standard three-phase stator as a five-phase machine.
机译:多相电机在大功率应用中的应用现已成为公认的替代方案,这是由于与标准三相系统相比,它们具有更高的容错能力。尽管具有许多三相绕组组的多相电机在许多应用中受到青睐,但文献表明,具有质数相的电机(例如五相电机)通常优于其他相序,尤其是在电机转矩密度方面。在学术研究或工业应用中处理主要相数时的主要问题之一是特殊的定子设计。本文提供了一种通用技术,可在保持相同铜体积的情况下,以任何一般的主相阶数倒带标准的现成三相定子机架。提出的绕组布局是使用缝隙之星理论和定子绕组移位的概念得出的。有限元模拟用于研究具有不同相序的示例,而实验研究则通过将标准三相定子重绕为五相电机来证实所提出的概念。

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