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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Design of an Axial Flux Permanent Magnet Synchronous Machine Using Analytical Method and Evolutionary Optimization
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Design of an Axial Flux Permanent Magnet Synchronous Machine Using Analytical Method and Evolutionary Optimization

机译:轴向磁通永磁同步电机的解析和进化优化设计

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摘要

The design optimization of an axial flux permanent magnet synchronous machine with a coreless stator and double external rotor is accomplished by using evolutionary optimization with a genetic algorithm and an analytical evaluation of objective functions. On the basis of eight variable geometry parameters, five objective functions are optimized in order to determine the maximum volume torque density and weight torque density, the minimum volume and weight of permanent magnets per Newton–meter, and the minimum machine price per Newton–meter. Based on the geometric parameters for minimum machine price per Newton–meter, a prototype is built for the rated torque. Optimized and analytically evaluated machine characteristics are validated with a finite-element method (FEM) and the measurements of a prototype. Evolutionary optimization with the analytical evaluation of objective functions significantly shortens the computational time required for design optimization in comparison with the FEM.
机译:通过使用遗传算法的进化优化和目标函数的分析评估,实现了具有无铁芯定子和双外转子的轴向磁通永磁同步电机的设计优化。在八个可变几何参数的基础上,优化了五个目标函数,以确定最大体积扭矩密度和重量扭矩密度,每牛顿米的最小永磁体体积和重量,以及每牛顿米的最小机器价格。根据每牛顿米最低机器价格的几何参数,为额定扭矩构建了一个原型。通过有限元方法(FEM)和原型测量对经过优化和分析评估的机器特性进行验证。与FEM相比,具有目标函数分析评估的进化优化极大地缩短了设计优化所需的计算时间。

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