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首页> 外文期刊>Electric Power Applications, IET >Fault-tolerant permanent magnet synchronous machine – phase, pole and slot number selection criterion based on inductance calculation
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Fault-tolerant permanent magnet synchronous machine – phase, pole and slot number selection criterion based on inductance calculation

机译:容错永磁同步电机–基于电感计算的相数,极数和槽数选择准则

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摘要

Interest in permanent magnet synchronous machines for safety-critical applications has been increasing over the years. One of the most common methods for providing fault tolerance to a permanent magnet machine is the active control from the drive side. This method requires designing machines with the lowest possible mutual coupling between phases and a self-inductance that is high enough to limit the fault currents. Fractional-slot concentrated windings have been proposed as the most advantageous solution to meet these requirements. When comparing the numerous combinations of phases, poles and slots that give rise to a fractional-slot concentrated winding, the usual criteria only focus on obtaining a single-layer winding and do not actually consider the relationship between the self-inductance and the mutual inductance between phases. Moreover, they give no recommendations regarding the optimal number of phases from a magnetic point of view. The present work aims to cover this gap by obtaining analytical expressions for the calculation of the inductances in a permanent magnet machine. The derived expressions are investigated regardless of the geometry of the machine, and the criteria for selecting the most promising combinations in terms of the machine's fault tolerance are extracted.
机译:多年来,对于安全关键型应用的永磁同步电机的兴趣一直在增长。用于为永磁电机提供容错能力的最常见方法之一是从驱动器侧进行主动控制。这种方法要求设计的机器之间的相间耦合度最低,并且自感必须足够高以限制故障电流。已经提出了分数槽集中绕组是满足这些要求的最有利解决方案。当比较产生分数槽集中绕组的相,极和槽的众多组合时,通常的标准仅集中于获得单层绕组,而实际上并未考虑自感和互感之间的关系在阶段之间。而且,从磁性的观点来看,他们没有给出关于最佳相数的建议。本工作旨在通过获得用于计算永磁电机中电感的解析表达式来弥补这一差距。不管机器的几何形状如何,都对派生的表达式进行了研究,并提取了根据机器的容错性选择最有希望的组合的标准。

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