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Design and Optimization of a New TFPM Generator with Improved Torque Profile

机译:具有改进转矩分布的新型TFPM发电机的设计和优化

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This paper aims to address the design, modelling and optimization procedure of electrical generators for direct drive wind turbine application by introducing a new transverse flux permanent magnet machine (TFPM). The proposed TFPM benefits from characteristics such as: using ferrite PMs instead of rare-earth PMs, fully utilization of PMs, employing only one PM per phase, and cancelling all the even order harmonics. Design algorithm of the TFPM for direct drive wind turbine application is proposed which employs 3-D magnetic equivalent circuit method instead of time consuming finite element analysis (FEA). The MEC method is developed by taking account of rotor movement, iron saturation effect and fringing flux. The MEC results are compared with FEA in terms of accuracy and processing time. In order to improve the TFPM torque characteristics, the Taguchi optimization method is employed and the rated torque along with torque ripple are improved significantly.
机译:本文旨在通过引入一种新型的横向磁通永磁电机(TFPM)来解决直接驱动风力发电机应用的发电机的设计,建模和优化程序。拟议的TFPM受益于以下特性:使用铁氧体PM代替稀土PM,充分利用PM,每相仅使用一个PM,并消除所有偶次谐波。提出了直接驱动风力发电机应用的TFPM设计算法,该算法采用3-D磁等效电路方法代替费时的有限元分析(FEA)。 MEC方法是通过考虑转子运动,铁饱和效应和边缘磁通量而开发的。在准确性和处理时间方面,将MEC结果与FEA进行比较。为了改善TFPM转矩特性,采用了Taguchi优化方法,额定转矩和转矩脉动得到了显着改善。

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