混合励磁开关风力发电机组参数灵敏度分析

Safa Affi, H. Cherif, J. Belhadj
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摘要

混合励磁开关同步电机(HE-FSM)在高速和低速系统的变速应用中具有几个特性。通过定子槽数和转子极数的定义,所研究的机器是风力发电系统的一个有吸引力的候选者。he - fsm有多种类型;然而,由于励磁场的调整增加了转子的鲁棒性,因此所提出的具有完全主动定子和被动转子的机器拓扑结构在风力涡轮机应用中是有利的。针对一个城乡应用的风能转换系统,建立了24槽/20极HE-FSM的参数敏感性分析。研究目标是利用有限元分析方法对该机床进行参数敏感性研究,以探索其在低速范围内的运行行为和局限性。特别强调的是一些基本的设计变量,因为它们对目标目标有直接影响。采用该设计方法对几个相关的设计参数进行处理,以达到发电功率最大化和基本转速最小化的目标性能。
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Parametric Sensitivity Analysis of a hybrid excitation flux switching wind turbine generator
The hybrid excited flux switching synchronous machines (HE-FSM) have several properties used in variable speed applications for both high and low-speed systems. Defined by the number of stator slots and the number of rotor poles, the studied machine is an attractive candidate for wind turbine systems. There are various types of HE-FSMs; nevertheless, the presented machine's topology with a totally active stator and a passive rotor is advantageous in wind turbine applications thanks to the adjustment of the excitation field added to the robustness of the rotor. In this paper, a parametric sensitivity analysis of 24 slots/20 poles HE-FSM is developed for a wind energy conversion system in urban and rural application. The research target is to elaborate a parametric sensitivity study for this machine using finite element analysis method in order to explore its operational behavior and limitations which have to be in line with low-speed ranges. A particular emphasis was placed on some elementary design variables due to their direct impact on the target objectives. The design approach is used to treat several dependent design parameters to achieve the target performances: maximizing the generated power and minimizing the basic speed.
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