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Optimization of high voltage geared permanent-magnet synchronous generator systems

机译:高压齿轮永磁同步发电机系统的优化

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This paper focuses on the Optimization of Medium Voltage Geared Permanent Magnet Synchronous Generator Systems in an attempt to reduce the amount of rare earth material used. The aim is to decrease the weight and cost of large scale Medium Voltage (MV) Permanent Magnet Synchronous Generators, to be used in a Medium Voltage system configuration. A genetic algorithm is used for the design optimization which minimizes the generator cost and permanent magnet material. The approach is used to optimize a range of PMSGs with power ratings of 3 MW, 5 MW and 10 MW. Finally, a detailed comparison is presented of each design. The comparative results show that a Medium Voltage single-stage Geared PMSG is more cost-effective than both the Low Voltage Direct-Drive and Low Voltage Geared concepts.
机译:本文侧重于中电压齿轮永磁同步发电机系统的优化,试图减少所用稀土材料的量。目的是降低大规模中电压(MV)永磁同步发电机的重量和成本,以便在中压系统配置中使用。遗传算法用于设计优化,最小化发电机成本和永磁材料。该方法用于优化一系列PMSG,电力额定值为3 MW,5 MW和10 MW。最后,提出了每个设计的详细比较。比较结果表明,中压单级齿轮PMSG比低压直接驱动和低压齿轮齿轮概念更具成本效益。

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