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Mathematical optimization techniques for the design of permanent magnet synchronous machines based on numerical field calculation

机译:基于数值场计算的永磁同步电机设计数学优化技术

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摘要

Numerical field calculation and mathematical optimization methods are used to find the most appropriate design of synchronous machines with rare-earth permanent-magnet excitation. The efficiency of optimization procedures for the resulting constrained and unconstrained vector-optimization problems is examined. It is shown that for an efficient optimization procedure it is necessary to combine suitable methods for the transformation of vector optimization problems to scalar ones and methods for the transformation of constrained to unconstrained problems, and algorithms for unconstrained optimization. As a first attempt, it is recommended to use the preference-function method with a search algorithm such as Rosenbrock's algorithm. When the Marglin method is used, the combination of SUMT with a search algorithm, and the combination of the augmented Lagrange multiplier method with the conjugate gradient algorithm, are appropriate. The combination of this optimization procedure with numerical field calculations yields a powerful tool for the design of permanent-magnet machines.
机译:使用数值场计算和数学优化方法来找到最合适的稀土永磁励磁同步电机设计。检验了针对所产生的约束和非约束向量优化问题的优化过程的效率。结果表明,对于有效的优化过程,有必要将用于将向量优化问题转换为标量问题的合适方法与将约束转换为无约束问题的方法以及无约束优化算法相结合。作为首次尝试,建议将偏好函数方法与搜索算法(如Rosenbrock算法)一起使用。当使用Marglin方法时,将SUMT与搜索算法结合使用,以及将增强Lagrange乘数法与共轭梯度算法结合使用是合适的。这种优化程序与数值场计算的结合,为永磁电机的设计提供了强大的工具。

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