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Optimal Design of Coreless Axial Flux Permanent Magnet Synchronous Generator with Reduced Cost Considering Improved PM Leakage Flux Model

机译:考虑改进的永磁漏磁模型的低成本无芯轴向磁通永磁同步发电机的优化设计

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摘要

This paper presents an optimal design of coreless axial flux permanent magnet (AFPM) synchronous generator using particle swarm optimization method based on sizing equations of the machine. The design optimization is performed in order to reduce the active material cost of the generator. General practical and mechanical limitations are considered as optimization constraints. A magnetic circuit model based on quasi three-dimensional (3-D) model of the coreless AFPM machine is taken into account to calculate the permanent magnet leakage flux (PMLF) accuracy. A computer-aided program is evaluated according to the proposed optimized design procedure that is used to design a 2-kW, 16-pole AFPM generator with two rotors and one coreless stator. Finally, the 3-D finite-element model (FEM) of the machine is prepared to confirm the validity of the proposed PMLF model and proposed optimized design algorithm.
机译:本文提出了一种基于电机尺寸方程的粒子群优化方法,对无芯轴向磁通永磁同步发电机进行了优化设计。进行设计优化是为了减少发电机的活性材料成本。一般的实际和机械限制被视为优化限制。考虑了基于无铁芯AFPM机器的准三维(3-D)模型的磁路模型,以计算永磁漏磁通(PMLF)精度。根据建议的优化设计程序评估计算机辅助程序,该程序用于设计具有两个转子和一个无铁芯定子的2kW,16极AFPM发电机。最后,准备了机器的3-D有限元模型(FEM),以确认所提出的PMLF模型和所提出的优化设计算法的有效性。

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