Magnetic equivalent circuit – based optimal design code of high torque density and efficiency small power claw pole stator PM motor

Lucian Nicolae Tutelea, T. Staudt, I. Boldea
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引用次数: 1

Abstract

Ever larger torque density, efficiency at moderate costs are key requirements in energy cost critical power drives with applications like home appliances and robotics. In the search for better solutions the multipolar axial-flux PMSM and the multipolar-inner claw-pole stator PMSM evolved as major competitors very recently. In an effort to reduce computation time effort in the optimal design of the inner-claw-pole-stator PMSM for small power applications, to the end of using a single desktop competitive computer, the present paper develops a 3D-MEC (magnetic equivalent circuit model) for the case in point integrated into a dedicated MATLAB code with a unique multi-term objective function, with constraints on efficiency in 3 operation points (torque speed pairs), demagnetization avoidance at 2pu load, and the motor materials cost as the main term; all terms in USD. For a case study the output file provides numerical and graphical comprehensive data that are sufficient to approach the fabrication for four cases: round and slab copper or aluminum wire in ac coils Finally for one optimal design and main operation point key validation with 3D-FEM is offered. The computation time for one wire type with 30 runs from random starting points, on a typical desktop computer was 81.12 seconds, which is an order of magnitudes smaller than existing (arguably more precise) methods.
基于磁等效电路的高转矩密度高效小功率爪极定子永磁电机优化设计程序
在家用电器和机器人等应用中,更大的扭矩密度、中等成本下的效率是能源成本关键型电源驱动器的关键要求。在寻找更好的解决方案的过程中,多极轴向磁通永磁同步电机和多极内爪极定子永磁同步电机最近演变为主要的竞争对手。为了减少小功率应用中内爪极定子永磁同步电机优化设计的计算时间,到最后使用单个台式竞争计算机,本文开发了一个3D-MEC(磁等效电路模型),该模型集成到专用的MATLAB代码中,具有独特的多项目标函数,具有3个工作点(转矩速度对)的效率约束,2pu负载下的消磁避免,并以电机材料费为主要项;所有条款均以美元结算。对于一个案例研究,输出文件提供了数字和图形的综合数据,足以接近四种情况的制造:圆形和板状交流线圈中的铜或铝线。最后,为一个优化设计和主要操作点提供了3D-FEM关键验证。在一台典型的台式计算机上,从随机起点运行30次的一种导线类型的计算时间为81.12秒,这比现有的(可以说更精确的)方法要小一个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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20
审稿时长
24 weeks
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