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Modeling and Analysis of Novel Star-Delta Winding Configuration with Odd Slot Numbers for Reduced Space Harmonics Using Winding Function

机译:使用绕组功能的奇数槽数的新型星六角洲绕组配置的建模与分析

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Existing literature on 3-phase combined star-delta winding topologies only focuses on even slot numbers or conventional multiples of 6, since they emulate a 6-phase configuration with a phase difference of 30° between the star and delta connected sets. Contrarily, if a turns ratio of √3 can be achieved with proper coil and turns distribution, unconventional odd slot numbers and non-multiples of 6 can be implemented resulting in various possible design solutions with minimum spatial harmonic contents. Therefore, this paper focuses on modeling and analysis of a novel star-delta winding configuration using unconventional odd slot numbers for fractional-slot wound machines towards maximum torque density and reduced space harmonic content. Initially, a generalized analytical model using winding function theory for any slot-pole combination is presented. Furthermore, a comprehensive comparative analysis of a novel odd slot-pole combination and a conventional topology is presented in terms of spatial harmonic contents, saliency, torque density, torque ripple, rated machine efficiency and overall operating speed range.
机译:在三相组合之星绕组拓扑上的现有文献仅侧重于偶数槽数或传统倍数6,因为它们模拟了6相配置,在星形和达达连接的组之间具有30°的相位差。相反,如果通过适当的线圈可以实现√3的转向比,并且可以实现具有最小空间谐波内容的各种可能的设计解决方案,因此可以实现具有适当线圈的匝数比和转动分布。因此,本文侧重于使用非传统奇数槽数的新型星倾绕配置对最大扭矩密度和降低空间谐波含量的非传统奇数槽组的建模和分析。最初,介绍了一种使用绕组函数理论的任何用于任何槽杆组合的广义分析模型。此外,在空间谐波含量,显着性,扭矩密度,扭矩脉动,额定机器效率和整体工作速度范围方面,提出了一种新的奇数槽极组合和传统拓扑的综合对比分析。

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