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An Optimization Procedure for a Synchronous Reluctance Machine with Fluid Shaped Flux Barriers

机译:具有流体形状磁通屏障的同步磁阻机的优化过程

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A novel procedure to optimize the rotor design of a synchronous reluctance machine is proposed. The rotor geometry is symmetrical and based on “fluid-shaped” barriers. The optimization procedure is founded on the parametrization principle, which performs changes in the rotor configuration by varying position, shape and thickness of the flux barriers. Then, through the communication between MATLAB and Flux 2D, this procedure modifies and analyses different configurations by means of finite element simulations. During the post-processing phase the best design which optimizes average torque, torque ripple, efficiency and power factor is chosen.
机译:提出了一种优化同步磁阻机的转子设计的新方法。转子几何形状是对称的,并且基于“流体形”屏障。优化程序是在参数化原理上创立的,其通过变化的位置,形状和磁屏的厚度来执行转子配置的变化。然后,通过MATLAB和FLUX 2D之间的通信,通过有限元模拟来修改和分析不同的配置。在后处理阶段期间,选择优化平均扭矩,扭矩脉动,效率和功率因数的最佳设计。

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