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Design Optimisation and Performance Evaluation of Flux Switching Machines for Geared Medium-Speed Wind Generator Drives

机译:齿轮中速风力发电机驱动用磁通开关机的设计优化和性能评估

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In this paper, a novel Ph.D. research process leading to the multi-objective design optimisation (MDO) of geared medium-speed flux switching machine (FSM) for wind generator drives is rehashed. The highlights of the study include, among other things, the electromagnetic design of two preferred FSM topologies based on an in-house two-dimensional finite element analyses tool, the MDO of key generator design and performance data, and the evaluation of different FSM drivetrain variants such as rare-earth versus none-rare-earth designs, as well as their characterisation at different small-and large-scale power levels. The major findings of the study include the superior performance of the proposed generator brands at multi-megawatts power levels, as well as the feasibility of the MDO procedure yielding a cocktail of multiple designs options with some useful data relating to torque density, torque ripple and power factor of the studied machines. Lastly, a practical demonstration based on a 10 kW none-rare-earth prototype as undertaken to validate the design approach, displayed good confidence.
机译:本文是一部新颖的博士学位。重新研究了用于风力发电机驱动的齿轮中速磁通切换机(FSM)的多目标设计优化(MDO)的研究过程。该研究的重点包括基于内部二维有限元分析工具的两种首选FSM拓扑的电磁设计,关键发生器设计的MDO和性能数据以及对不同FSM传动系统的评估。诸如稀土与非稀土设计之类的变体,以及它们在不同大小功率水平下的特性。该研究的主要发现包括建议的发电机品牌在数兆瓦的功率水平下的卓越性能,以及MDO程序产生多种设计选择的可行性,并提供了一些与转矩密度,转矩脉动和转矩相关的有用数据。被研究机器的功率因数。最后,为验证设计方法而进行的基于10 kW无稀土原型的实际演示,显示出良好的信心。

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