Field Weakening Methods for Axially Displaceable Brushless DC Machines

E. Bostanci
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Abstract

Brushless DC (BLDC) machines are known to have a high torque/power density but it is still a challenge to design a BLDC with a wide extended speed range while keeping its torque/power density high. A mechanical field weakening method, in which the active axial length of a BLDC machine is reduced on run by axially displacing its rotor with respect to its stator, was proposed to achieve a wider extended speed range with a limited DC-link voltage. However, its effectiveness and optimal application are not considered in detail. The aim of this study is to analyze the extended speed range of an axially displaceable rotor brushless DC (ADR-BLDC) machine. First of all, factors that limit the speed range of an ADR-BLDC machine are discussed. Afterwards, rotational speed limits of the analyzed ADR-BLDC machine are compared for different field weakening approaches. Based on these results a combined field weakening approach that combines both the electrical and mechanical field weakening methods is proposed.
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轴向可置换无刷直流电机的磁场弱化方法
众所周知,无刷直流(BLDC)电机具有高扭矩/功率密度,但在保持高扭矩/功率密度的同时,设计具有宽扩展速度范围的BLDC仍然是一个挑战。提出了一种机械磁场弱化方法,即通过转子相对于定子的轴向位移来减小无刷直流电机的主动轴向长度,从而在有限的直流电压下实现更大的扩展速度范围。然而,其有效性和最佳应用并没有得到详细的考虑。本研究的目的是分析轴向可置换转子无刷直流电机(ADR-BLDC)的扩展速度范围。首先,讨论了限制ADR-BLDC电机转速范围的因素。在此基础上,比较了不同弱磁场方式下ADR-BLDC电机的转速极限。在此基础上,提出了一种将电场削弱和机械削弱相结合的联合弱场方法。
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