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首页> 外文期刊>Advances in Mechanical Engineering >Design and Analysis of a Linear Hybrid Excitation Flux-Switching Generator for Direct Drive Wave Energy Converters
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Design and Analysis of a Linear Hybrid Excitation Flux-Switching Generator for Direct Drive Wave Energy Converters

机译:直接驱动波能量转换器的线性混合励磁磁通开关发生器的设计与分析

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摘要

Linear generators have the advantage of a simple structure of the secondary, which is suitable for the application of wave energy conversion. Based on the vernier hybrid machines (VHMs), widely used for direct drive wave energy converters, this paper proposes a novel hybrid excitation flux-switching generator (LHEFSG), which can effectively improve the performance of this kind of generators. DC hybrid excitation windings and multitooth structure were used in the proposed generator to increase the magnetic energy and overcome the disadvantages of easily irreversible demagnetization of VHMs. Firstly, the operation principle and structure of the proposed generator are introduced. Secondly, by using the finite element method, the no-load performance of the proposed generator is analyzed and composed with ones of conventional VHM. In addition, the on-load performance of the proposed generator is obtained by finite element analysis (FEA). A dislocation of pole alignments method is implemented to reduce the cogging force. Lastly, a prototype of the linear flux-switching generator is used to verify the correctness of FEA results. All the results validate that the proposed generator has better performance than its counterparts.
机译:线性发电机具有次级结构简单的优点,适用于波能转换的应用。在广泛应用于直接驱动波能量转换器的游标混合动力机(VHM)的基础上,提出了一种新型的混合励磁通量切换发电机(LHEFSG),可以有效地改善此类发电机的性能。提出的发电机中使用了直流混合励磁绕组和多齿结构,以增加磁能并克服了VHM易于不可逆退磁的缺点。首先,介绍了所提出的发电机的工作原理和结构。其次,通过有限元方法,对提出的发电机的空载性能进行了分析,并采用常规的VHM方法进行了组合。此外,通过有限元分析(FEA)获得了拟议发电机的有载性能。实施磁极对准的错位方法以减小齿槽力。最后,使用线性通量切换发生器的原型来验证有限元分析结果的正确性。所有结果都证明拟议的发电机具有比同类发电机更好的性能。

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