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Analysis and Validation of a Population-Based Design of a Wound-Rotor Synchronous Machine

机译:绕线同步电机基于总体设计的分析与验证

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摘要

In recent research, a new magnetic equivalent circuit model and solution technique were developed to enable rapid calculation of the performance of wound-rotor synchronous machines. Herein, the development of a population-based design tool that utilizes the MEC is first described. The design tool is then applied to perform multiobjective optimization of a 2-kW portable power generator. Validation has been achieved through construction of a machine that was selected from the Pareto-optimal front (POF) of mass versus loss. Comparisons are made between designed and measured torque (instantaneous and average), open-circuit voltage, efficiency, and $q$- and $d$-axis flux linkages. This comparison is done in light of observations that the anhysteretic $BH$ curve for the steel material obtained prior to and subsequent to machine construction have significant differences. Despite the variance, the measured and expected performances match reasonably well. Finally, an analysis of the machines on the POF is used to shed light on several interesting trends in design variables.
机译:在最近的研究中,开发了一种新的磁等效电路模型和求解技术,以能够快速计算绕线转子同步电机的性能。在此,首先描述利用MEC的基于人群的设计工具的开发。然后将设计工具应用于执行2 kW便携式发电机的多目标优化。通过构造一种从质量与损失的帕累托最优前沿(POF)中选择的机器来实现验证。比较设计扭矩和测量扭矩(瞬时和平均),开路电压,效率以及$ q $和$ d $轴磁链的影响。根据观察结果进行比较,观察结果表明,在机器制造之前和之后获得的钢材的无滞后$ BH $曲线存在显着差异。尽管存在差异,但测得的和预期的性能相当匹配。最后,通过对POF上机器的分析来阐明设计变量中的一些有趣趋势。

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