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A comparative design study and analysis of inner and outer rotor permanent magnet synchronous machine for power generation in vertical axis wind turbine using GSA and GSA-PSO

机译:使用GSA和GSA-PSO的垂直轴风力发电机内外转子永磁同步电机的对比设计研究与分析

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摘要

In wind energy conversion system, an electric generator is coupled with a wind turbine. The wind turbine is either vertical axis or horizontal axis wind turbine. To increase the efficiency the gear driven generator has been replaced by directly driven generator. This paper recounts the design optimization of inner and outer rotor permanent magnet synchronous machine of rating 500 KVA, 3.3 kV, 3-phase, and 600 rpm. The weight of the generator has been taken as an objective function. The gravitational search algorithm and its hybridization with particle swarm optimization have been used as tools for optimization. The temperature rise, efficiency, regulation and maximum flux density in stator teeth are taken as constraints for design problem. The results of both types of generator configurations are obtained and compared. It is found that the efficiency of outer rotor permanent magnet synchronous generator is improved by 2.19% and regulation by 2.83% as compared to inner rotor permanent magnet synchronous generator. Lower temperature rise as 22.61 °C is observed for outer rotor permanent magnet synchronous generator whereas it is 31.18 °C in case of outer rotor permanent magnet synchronous machine. Further, the sensitivity analysis has been performed over design parameters using local sensitivity method for both generators.
机译:在风能转换系统中,发电机与风力涡轮机耦合。风力涡轮机是垂直轴风力涡轮机或水平轴风力涡轮机。为了提高效率,齿轮驱动发电机已由直接驱动发电机代替。本文阐述了额定功率为500 KVA,3.3 kV,三相和600 rpm的内,外转子永磁同步电机的设计优化。发电机的重量已作为目标函数。重力搜索算法及其与粒子群算法的混合已被用作优化工具。定子齿中的温度上升,效率,调节和最大磁通密度被视为设计问题的约束。获得并比较了两种类型的发电机配置的结果。发现与内转子永磁同步发电机相比,外转子永磁同步发电机的效率提高了2.19%,调节率提高了2.83%。外转子永磁同步发电机的温升较低,为22.61°C,而外转子永磁同步电机的温升为31.18°C。此外,已经使用两个发电机的局部灵敏度方法对设计参数进行了灵敏度分析。

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