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Fractional Slot Concentrated Windings: A New Method to Manage the Mutual Inductance between Phases in Three-Phase Electrical Machines and Multi-Star Electrical Machines

机译:分数槽集中绕组:一种用于管理三相电机和多星电机中各相之间互感的新方法

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Mutual inductance is a phenomenon caused by the circulation of the magnetic flux in the core of an electrical machine. It is the result of the effect of the current flowing in one phase on the other phases. In conventional three-phase machines, such an effect has no influence on the electrical behaviour of the device. Although these machines are powered by power inverters, no problem should occur. The result is not the same for multi-star machines. If these machines are using a conventional winding structure, namely distributed windings, and are powered by voltage source converters, current ripples appear in the power supply lines. These current ripples are related to magnetic couplings between the stars. Designers should check these current ripples in order to stay within the limits imposed by the specifications. These electric current disturbances also provide torque ripples. With concentrated windings, a new degree of freedom appears; the configuration—number of slotsumber of poles—can have a positive impact. The circulation of the magnetic flux is the initial phenomenon that produces the mutual inductance. The main goal of this discussion is to describe a design method that is able to produce not only a machine with low mutual inductance between phases, but also a multi-star machine where the stars and the phases are magnetically decoupled or less coupled. This discussion only takes into account the machines that use permanent magnets mounted on the rotor surface. This article is part of a study aimed at designing a high efficiency generator using fractional-slot concentrated-windings (FSCW).
机译:互感是由电机铁心中的磁通量循环引起的现象。这是电流在一个相中流过另一相的结果。在传统的三相电机中,这种影响不会影响设备的电气性能。尽管这些机器由电源逆变器供电,但不会出现任何问题。对于多星级计算机,结果是不同的。如果这些机器使用常规绕组结构(即分布式绕组)并由电压源转换器供电,则电流纹波会出现在电源线中。这些电流纹波与恒星之间的磁耦合有关。设计人员应检查这些电流纹波,以使其保持在规范规定的范围内。这些电流干扰也会产生转矩波动。绕组集中时,出现了新的自由度。配置(插槽数/极数)可能会产生积极影响。磁通量的循环是产生互感的初始现象。讨论的主要目的是描述一种设计方法,该方法不仅能够生产一种相之间互感低的电机,而且能够生产一种多星电机,在该多星电机中,恒星和各相是磁解耦的或耦合较少的。该讨论仅考虑了使用安装在转子表面上的永磁体的电机。本文是旨在使用分数槽集中绕组(FSCW)设计高效发电机的研究的一部分。

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