Design and performance investigation of small-scale wind turbine system based on hybrid excited flux switching machine

H. Cherif, Safa Affi, J. Belhadj, S. Hlioui, M. Gabsi
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引用次数: 2

Abstract

In this study, a new design of a hybrid excited flux switching machine is developed for small-scale wind turbine power generation in rural and/or urban context. The hybrid excited flux switching machine uses double excitations (permanent magnets and excitation coils) to control the flux linkage and the DC bus voltage. The design and the investigation of the electromagnetic performances have been effectuated on a 3 kW wind turbine equipped with hybrid excited flux switching machine. It is shown that the produced power can be easily controlled using the excitation current which is very interesting for wind turbine applications. According to the particular stator and rotor design, this presented machine is intrinsically safe in case of fault since no flux weakening is required. The integration of unconventional electric machine in a small-scale wind turbine system appears as a good solution and meets additional criteria such as improving reliability.
基于混合励磁开关机的小型风力发电系统设计与性能研究
在这项研究中,开发了一种新的混合励磁开关机,用于农村和/或城市环境下的小型风力发电。混合励磁开关机采用双激励(永磁体和励磁线圈)来控制磁链和直流母线电压。对安装混合励磁开关机的3kw风力发电机组进行了电磁性能的设计和研究。结果表明,利用励磁电流可以很容易地控制产生的功率,这对于风力发电机的应用是非常有趣的。根据特殊的定子和转子设计,该电机在故障时本质安全,不需要磁链减弱。在小型风力涡轮机系统中集成非常规电机似乎是一个很好的解决方案,并且满足诸如提高可靠性等附加标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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