Optimal Design of Six-phase Permanent Magnet Synchronous Generator for directdrive Small-Scale Wind Turbines

Mohammad Ebrahim Moazzen, S. Gholamian
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引用次数: 1

Abstract

Permanent Magnet (PM) generators are widely employed in directly coupled wind turbines. Therefore, optimal design of these generators is quite necessary to improve their overall performance. In this paper, single/multi-objective design optimization of six-phase permanent magnet synchronous generator (PMSG) for directly coupled wind turbines is carried out. The studied PM generator in this paper is the radial-flux surface mounted PM generator. The aim of optimal design is to reduce the cost of PMSG manufacturing and generator losses. For this purpose, the main equations of PM generator design are extracted. Therefore, the generator design steps are developed and then imperialist competitive algorithm is used to optimize the design variables of the generator. To find the best design for this generator, the cost and losses, separately, are optimized and are then optimized simultaneously. Finally, the optimum results are presented. Comparison between optimum results shows that simultaneous optimization of the cost and losses leads to suitable design for PM wind generator.
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直驱小型风力发电机组六相永磁同步发电机优化设计
永磁发电机广泛应用于直接耦合风力发电机组中。因此,对该类发电机进行优化设计,提高其整体性能是十分必要的。本文对直接耦合风力机用六相永磁同步发电机(PMSG)进行了单/多目标优化设计。本文所研究的永磁发电机为径向磁通面装式永磁发电机。优化设计的目的是降低PMSG的制造成本和发电机的损耗。为此,提取了永磁发电机设计的主要方程。因此,开发了发电机的设计步骤,然后使用帝国主义竞争算法对发电机的设计变量进行优化。为了找到该发电机的最佳设计,分别对成本和损耗进行优化,然后同时进行优化。最后给出了优化结果。优化结果的比较表明,同时优化成本和损失,可以得到合适的永磁风力发电机设计。
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