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Design of High Performance Permanent-Magnet Synchronous Wind Generators

机译:高性能永磁同步风力发电机设计

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This paper is devoted to the analysis and design of high performance permanent-magnet synchronous wind generators (PSWGs). A systematic and sequential methodology for the design of PMSGs is proposed with a high performance wind generator as a design model. Aiming at high induced voltage, low harmonic distortion as well as high generator efficiency, optimal generator parameters such as pole-arc to pole-pitch ratio and stator-slot-shoes dimension, etc. are determined with the proposed technique using Maxwell 2-D, Matlab software and the Taguchi method. The proposed double three-phase and six-phase winding configurations, which consist of six windings in the stator, can provide evenly distributed current for versatile applications regarding the voltage and current demands for practical consideration. Specifically, windings are connected in series to increase the output voltage at low wind speed, and in parallel during high wind speed to generate electricity even when either one winding fails, thereby enhancing the reliability as well. A PMSG is designed and implemented based on the proposed method. When the simulation is performed with a 6 Ω load, the output power for the double three-phase winding and six-phase winding are correspondingly 10.64 and 11.13 kW. In addition, 24 Ω load experiments show that the efficiencies of double three-phase winding and six-phase winding are 96.56% and 98.54%, respectively, verifying the proposed high performance operation.
机译:本文致力于高性能永磁同步风力发电机(PSWG)的分析和设计。提出了一种采用高性能风力发电机作为设计模型的PMSG设计的系统和顺序方法。针对高感应电压,低谐波失真以及高发电机效率的问题,采用麦克斯韦二维技术,通过所提出的技术确定了最佳的发电机参数,例如极-弧-极距比和定子-槽-靴尺寸等。 ,Matlab软件和Taguchi方法。所提出的双三相和六相绕组配置(由定子中的六个绕组组成)可以为实际应用中考虑电压和电流需求的各种应用提供均匀分布的电流。具体地,绕组被串联连接以在低风速下增加输出电压,并且在高风速期间并联,即使当一个绕组发生故障时也发电,从而也提高了可靠性。基于提出的方法设计并实现了一个PMSG。当在6Ω负载下进行仿真时,双三相绕组和六相绕组的输出功率分别为10.64和11.13 kW。此外,24Ω负载实验表明,双三相绕组和六相绕组的效率分别为96.56%和98.54%,从而验证了所提出的高性能工作。

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