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Trade-off analysis and design of a high power density PM machine for flooded industrial pump

机译:淹没工业泵用高功率密度永磁电机的权衡分析与设计

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This paper presents the trade-off analysis and design of a high power-density machine for industrial pump applications. The developed permanent magnet synchronous machine drives an electric, oil flooded pump. Different slot/pole combination and winding configuration have been investigated in order to identify the optimal combination that satisfies the electromagnetic and thermal constraint while keeping the losses as small as possible. Several strategies such as the use of the Cobalt iron material for the stator core lamination and the adoption of Halbach array have been investigated in this work to improve the performance capabilities of the designed machine. The electromagnetic performances have been evaluated by using a finite element method. Thermal behaviour has been determined using a lumped parameter network. The outcome of the thermal analysis helped to identify the optimal cooling configurations. The final results are presented highlighting the achieved design targets.
机译:本文介绍了用于工业泵应用的高功率密度机器的权衡分析和设计。研发的永磁同步电机驱动油浸式电动泵。为了确定满足电磁和热约束并同时保持尽可能小的损耗的最佳组合,已经研究了不同的槽/极组合和绕组配置。在这项工作中,已经研究了几种策略,例如将钴铁材料用于定子铁心叠片以及采用Halbach阵列,以提高设计电机的性能。电磁性能已通过使用有限元方法进行了评估。已经使用集总参数网络确定了热行为。热分析的结果有助于确定最佳的冷却配置。最终结果将重点介绍已实现的设计目标。

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