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Sensitivity Analysis and Design Optimization of a New Hybrid-Excited Dual-PM Generator With Relieving-DC-Saturation Structure for Stand-Alone Wind Power Generation

机译:新型单励风力发电机混合励磁-直流饱和结构的灵敏度分析与设计优化

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摘要

This article proposes a new hybrid-excited dual-permanent-magnet generator with the relieving-dc-saturation (RDCS) structure for stand-alone wind power generation. The proposed generator integrates the stator dc source and rotor permanent-magnet (PM) source in a single brushless structure, which enables coordinated power generation and flexible power adjustment. Moreover, considering the parasitic saturation effect in the stator core caused by the dc field source, a constant PM bias is introduced at the stator side to construct an RDCS structure, so that the core utilization ratio is improved as well as the generator power density. In this article, the generator structure and the operation principle are introduced. Some leading design parameters are determined based on the sensitivity analysis. A finite element and genetic algorithm combined method is further adopted to realize a multi-objective design optimization, and the optimal design of the proposed topology is verified to be a potential generator candidate for stand-alone wind power generation.
机译:本文提出了一种新型的混合励磁双永磁发电机,其具有缓解直流饱和(RDCS)结构,用于独立风力发电。拟议中的发电机将定子直流电源和转子永磁(PM)电源集成在单个无刷结构中,从而实现了协调发电和灵活的功率调节。此外,考虑到由直流场源在定子铁心中产生的寄生饱和效应,在定子侧引入恒定的PM偏置以构建RDCS结构,从而提高了铁心利用率,并提高了发电机的功率密度。本文介绍了发电机的结构和工作原理。根据灵敏度分析确定一些领先的设计参数。进一步采用有限元和遗传算法相结合的方法来实现多目标设计优化,并验证了所提出拓扑的优化设计是独立风力发电的潜在发电机候选。

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