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A new outer-rotor flux switching permanent magnet generator for wind farm applications

机译:新型风电场外转子磁通切换永磁发电机

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摘要

In this paper a 1.5kW flux switching permanent magnet (FSPM) generator is presented for direct drive small scale wind turbine applications. For maximizing induced voltage and the output torque while minimizing cogging torque and unbalanced radial magnetic force (UMF), the proposed machine exhibits a new 6/19 stator pole/rotor teeth number and an outer rotor configuration. At first, in the paper an analytical design has been developed, then a finite element method (FEM) analysis is carried out for validating the analytical procedure and for design improvement. The simulation results extracted by FEM confirm the theoretical analysis procedure and help in the understanding of the performance analysis of the machine against the variations of the design variables. Furthermore, an experimental laboratory prototype of the proposed FSPM is implemented to confirm the analytical design and FEM modelling approaches. A comparison of induced voltage, torque, UMF and cogging torque produced by different FSPM configurations present in literature respect to the proposed generator has been developed. The results show the goodness of the adopted methodology and prove that, because of suitable electromagnetic performance of the proposed FSPM generator, it could be counted as a proper candidate for small scale wind turbine applications. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:本文提出了一种1.5kW磁通量切换永磁(FSPM)发电机,用于直接驱动的小型风力涡轮机应用。为了使感应电压和输出扭矩最大化,同时使齿槽转矩和不平衡径向磁力(UMF)最小,建议的电机具有新的6/19定子极/转子齿数和外转子配置。首先,本文开发了一种分析设计,然后进行了有限元方法(FEM)分析,以验证分析程序并进行设计改进。有限元法提取的仿真结果证实了理论分析程序,并有助于理解针对设计变量变化而引起的机器性能分析。此外,实施了建议的FSPM的实验实验室原型,以确认分析设计和FEM建模方法。已经开发了关于所提出的发电机的由文献中存在的不同FSPM配置产生的感应电压,转矩,UMF和齿槽转矩的比较。结果表明了所采用方法的优越性,并证明了由于所提出的FSPM发电机具有合适的电磁性能,可以认为它是小型风力涡轮机应用的合适候选者。版权所有(C)2016 John Wiley&Sons,Ltd.

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