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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Optimum design for CW-SynRM with loss and efficiency evaluations, using coupled Preisach model and FEM and experimentation
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Optimum design for CW-SynRM with loss and efficiency evaluations, using coupled Preisach model and FEM and experimentation

机译:使用耦合的Preisach模型,FEM和实验对具有损失和效率评估的CW-SynRM进行优化设计

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摘要

This paper deals with the optimum design criteria necessary to minimize the torque ripple of a concentrated winding Synchronous Reluctance Motor (CW-SynRM) using Response Surface Methodology (RSM). The suitability of using RSM with the finite element method (FEM) in practical engineering problems is investigated with computational examples and comparisons between the fitted response and the results obtained from analytical solutions, according to the design variables of stator and rotor in a concentrated winding SynRM (6slot). This research presents efficiency evaluations for a normal synchronous reluctance motor (SynRM) and for a concentrated SynRM (CW-SynRM) using both the coupled transient finite element method (FEM) and Preisach modeling. These evaluations are used to analyze characteristics under the effects of saturation and hysteresis loss. The focus of this research is on an optimum design relative to torque density, ripple characteristics on the basis of stator, rotor shape in a CW-SynRM and efficiency evaluation relative to hysteresis loss, copper loss, etc. on the basis of rated load conditions in a SynRM and CW-SynRM. Computer simulation and experimental results for the efficiency using dynamometer show both the propriety of the proposed design method and the high performance of the CW-SynRM.
机译:本文使用响应表面方法(RSM)来解决使集中绕组同步磁阻电机(CW-SynRM)的转矩脉动最小化的最佳设计标准。根据集中绕组SynRM中定子和转子的设计变量,通过计算示例研究了RSM和有限元方法(FEM)在实际工程问题中的适用性,并比较了拟合响应和解析解决方案获得的结果。 (6个插槽)。这项研究使用耦合瞬态有限元方法(FEM)和Preisach建模方法,对普通同步磁阻电机(SynRM)和集中式SynRM(CW-SynRM)进行了效率评估。这些评估用于分析饱和度和磁滞损耗影响下的特性。这项研究的重点是相对于转矩密度的最佳设计,基于定子的纹波特性,CW-SynRM中的转子形状以及基于额定负载条件的相对于磁滞损耗,铜损的效率评估等。在SynRM和CW-SynRM中。使用测功机的效率的计算机仿真和实验结果表明,所提设计方法的恰当性和CW-SynRM的高性能。

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