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Application of Mn-Zn Ferrite in Permanent Magnet Brushless DC Motor with High Speed

机译:锰锌铁氧体在永磁高速无刷直流电动机中的应用

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In this paper, the application of Mn-Zn ferrite in permanent brushless DC motor (BLDCM) with high speed is introduced. Comparing with the materials commonly used in motors, Mn-Zn ferrite has many advantages, such as low specific weight, low iron loss, low magnetic permeability, low cost and so on. For that, Mn-Zn ferrite material's properties including magnetic flux density, magnetic field intensity, iron power loss vs. temperature are analyzed, based on which the appropriate operating temperature is selected. Some parameters such as leakage coefficient and iron loss are also calculated. Then, a motor model based on Ansoft software is built to verify the assumption of the impacts of Mn-Zn ferrite on the magnetic properties. Besides, a motor with 50W/25000rpm is analyzed and optimized with the aim of reducing torque ripple. Furthermore, a field-circuit combined model is constructed in Matlab/Simulink to analyze the working characteristics and motor efficiency.
机译:介绍了锰锌铁氧体在高速永磁无刷直流电动机(BLDCM)中的应用。锰锌铁氧体与电动机常用的材料相比,具有比重低,铁损低,磁导率低,成本低等优点。为此,分析了Mn-Zn铁氧体材料的性能,包括磁通密度,磁场强度,铁功率损耗与温度的关系,并据此选择了合适的工作温度。还计算了一些参数,例如泄漏系数和铁损。然后,建立了一个基于Ansoft软件的电机模型,以验证Mn-Zn铁氧体对磁性能的影响的假设。此外,还对50W / 25000rpm的电动机进行了分析和优化,以减少转矩波动。此外,在Matlab / Simulink中构建了一个场电路组合模型,以分析其工作特性和电动机效率。

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