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Multi-objective optimization of an axial-flux PM actuator with space mapping technique

机译:利用空间映射技术对轴流永磁执行器进行多目标优化

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This paper presents a quick and reliable methodology for machine design. The methodology is based on Magnetic Equivalent Circuit (MEC) and multi-level, multi-objective optimization. It is applied to design three phase axial flux actuator. The MEC is solved by computing meshes' magnetic flux. It allows taking into account nonlinear operating conditions and its network topology is generated automatically for each rotor position. Multilevel optimization is achieved by means of Space Mapping (SM) method in order to couple linear and non-linear models. Multi-objective optimization problem is solved by means of NSGA-II. This methodology combines final solution accuracy and fast computation/simulation time.
机译:本文提出了一种快速可靠的机器设计方法。该方法基于电磁等效电路(MEC)和多级,多目标优化。用于设计三相轴向磁通执行器。通过计算网格的磁通量可以解决MEC问题。它允许考虑非线性工作条件,并且其网络拓扑是针对每个转子位置自动生成的。为了耦合线性模型和非线性模型,通过空间映射(SM)方法实现了多级优化。利用NSGA-II解决了多目标优化问题。这种方法结合了最终解决方案的准确性和快速的计算/仿真时间。

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