不同冷却系统的室内永磁电机设计规则辨识

A. Fatemi, D. Ionel, N. Demerdash
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引用次数: 6

摘要

电机优化设计的传统标度规则最适合定子绕组电流密度小于4A/mm2的自然冷却电机。本文通过全面的灵敏度分析,首先证明了内部永磁电机的一些几何变量与性能指标之间的相关性随着定子绕组电流密度的变化而显著变化。为此,选择了三种电流密度,以便大致考虑自然冷却、风扇冷却和液冷机器。随后,通过大规模设计优化算法,通过评估总共20,000个候选设计,在这些电流密度下对参数化IPM电机进行优化。然后从每组中确定并提取100个最佳设计,以研究具有不同冷却系统的IPM电机最佳设计的缩放规则。研究结果符合自然冷却机器的传统设计原则。然而,由于增加了安培负载,并且在这种机器中磁芯的严重饱和,这些规则在风扇冷却和液冷机器中有所不同。本研究以50马力、48槽、8极IPM电机配置单层v型磁铁作为基准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of design rules for interior PM motors with different cooling systems
The conventional scaling rules for the optimal design of electric machines are best suited for naturally cooled machines with stator winding current densities less than 4A/mm2. In this paper, through a comprehensive sensitivity analysis, first, it is demonstrated that the correlations between some geometric variables and the performance metrics of interior permanent magnet (IPM) motors vary significantly with respect to the stator winding current density. For this purpose, three current densities are selected so as to approximately account for naturally cooled, fan-cooled and liquid-cooled machines. Subsequently, a parameterized IPM motor is optimized at these current densities through a large-scale design optimization algorithm by evaluating a total of 20,000 design candidates. The 100 best designs from each group are then identified and extracted to investigate the scaling rules for the optimal design of such IPM motors with different cooling systems. The outcomes of the study are in correspondence with the conventional design principles for naturally cooled machines. Nevertheless, it is illustrated that these rules vary for fan-cooled and liquid-cooled machines owing to the increased ampere loading, and also heavy saturation of the magnetic core in such machines. A configuration of a 50 hp, 48-slot, 8-pole IPM motor with a single-layer v-type magnet is used as the benchmark of this study.
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