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首页> 外文期刊>IEEE Transactions on Industry Applications >Innovative Low-Cost Sub-Fractional HP BLDC Claw-Pole Machine Design for Fan Applications
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Innovative Low-Cost Sub-Fractional HP BLDC Claw-Pole Machine Design for Fan Applications

机译:用于风扇应用的创新低成本分数HP BLDC爪机设计

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摘要

As for mass-produced sub-fractional horsepower drives, non-optimal motor behavior (e.g., high cogging torque, output torque ripple, and noise) is often accepted when cost can be reduced, provided reliability is not compromised. This paper proposes an innovative claw-pole motor design for a low-cost single-phase brushless direct current fan drive, improvingmotor behavior with no increase to the manufacturing cost: 1) reducing cogging torque by proposing unconventional claw-pole skewing and 2) ensuring self-starting capability by implementing air-gap asymmetry. Both measures help reduce the total output torque ripple. The goal is to reduce fan drive noise, especially at low-speed operation, where cogging torque is often the dominating noise source. The design of stator claw skewing and air-gap asymmetry is presented; their effects onmotor quantities are studied via simulations and experiments. With the exception of a small reduction of about 1.8% in the back electromotive force fundamental, skewing the stator claws by 30. can reduce the cogging torque by 23% in the simulations and by 28% in the experiments.
机译:对于大规模生产的亚分数马力驱动器,当成本可以减少成本时通常接受不最佳的电机行为(例如,高齿槽扭矩,输出扭矩脉动和噪声),提供可靠性不会受到损害。本文提出了一种用于低成本单相无刷直流风扇驱动器的创新爪极电机设计,即通过提出非传统爪极偏斜和2)减少了制造成本的改善电机行为,不增加制造成本:1)减少齿轮杆偏斜和2)确保通过实施空气间隙不对称性的自启动能力。这两项措施都有助于减少总输出扭矩纹波。目标是减少风扇驱动噪声,尤其是在低速操作,其中齿槽扭矩通常是主导噪声源。提出了定子爪偏斜和空隙不对称的设计;它们的效果通过模拟和实验研究了对数量的数量。除了背部电动势的基础上的小约1.8%的小约1.8%外,将定子爪偏置为30.可以将齿槽扭矩降低23%,在实验中达到28%。

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