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Optimization of a 3-kW axial flux permanent magnet generator with variable air gap

机译:一种具有可变气隙的3-kW轴向磁通永磁发电机的优化

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摘要

An air gap optimization study of a 3-kW axial flux three-phase permanent magnet generator has been performed. The machine has two rotors sandwiching a stator with 12 separated laminated cores under an innovative flux morphology circulating over the back-iron components. The rotor component has 16 rare earth magnets with an innovative self-cooling blade structure. According to the air gap parametric magnetostatic analyses under the finite element method (FEM) between the range of 0.8 and 7 mm, the spatial magnetic flux distribution and cogging torque values have been determined. Besides, following the magnetostatic analyses, time-dependent FEM simulations over the generated voltage and power values have been studied in detail. Then, after the implementation of the designed machine, the experiments have been performed for various air gap values. The generated power is observed to be dependent on the air gap, the efficiency is measured as 85%, and power density is measured as 111.7 kW/m(3), which is a promising value compared to the literature. A scaling effect study is performed as functions of air gap and rotor speed for the first time to our knowledge. The maximum cogging torque is measured as 3.12 Nm. The other superiority of the present prototype is its low total harmonic distortion value within 2%; thereby, it generates nearly an ideal sinusoidal waveform. Consequently, the novel machine is recommended for both off-grid and on-grid operations with its low harmonic distortion and high efficiency.
机译:已经进行了3 kW轴向磁通三相永磁发电机的气隙优化研究。该机器有两个转子在通过背铁组件上循环的创新助焊剂形态下夹着具有12个分离的层叠芯的定子。转子部件具有16个稀土磁铁,具有创新的自冷却叶片结构。根据在0.8和7mm的有限元法(FEM)下的空气间隙参数静静压分析,已经确定了空间磁通量分布和齿槽扭矩值。此外,在静静压分析之后,已经详细研究了所产生的电压和功率值上的时间相关的有限元模拟。然后,在实施设计的机器之后,已经对各种气隙值进行了实验。观察到产生的功率取决于气隙,测量效率为85%,并且测量功率密度为111.7 kW / m(3),与文献相比是一个有效的值。缩放效果研究是作为空气隙和转子速度的第一次进行的函数,这是我们的知识。最大齿槽扭矩被测量为3.12nm。当前原型的其他优势是其低总谐波失真值在2%以内;由此,它产生几乎是理想的正弦波形。因此,推荐新型机器,用于偏离电网和栅极操作,具有低谐波失真和高效率。

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