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首页> 外文期刊>Industry Applications, IEEE Transactions on >Cogging Torque Minimization in PM Motors Using Robust Design Approach
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Cogging Torque Minimization in PM Motors Using Robust Design Approach

机译:采用稳健设计方法的永磁电动机齿槽转矩最小化

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摘要

Cogging torque minimization is necessary for low torque ripple applications such as precision tooling, robotics, etc. Various techniques are available but few techniques are proved to be effective in mass production under manufacturing tolerances/variations. The research provides a design approach to minimize cogging torque by making the motor robust to manufacturing variations and dimensional tolerances. Several control and noise factors are identified to apply the robust design technique. The quality of robustness is judged by the signal-to-noise ratio. A tradeoff is exercised to maximize output torque in selecting the control parameters. The research shows the effectiveness of such design techniques in designing motors for mass production without adding cost or complexity. Experimentation by modeling has been chosen using finite element analysis. Motors using the optimized parameters are built and tested thus verifying the design approach.
机译:齿槽转矩最小化对于低转矩脉动应用(例如精密工具,机器人等)而言是必需的。可以使用多种技术,但在制造公差/变化条件下,很少有技术被证明对批量生产有效。这项研究提供了一种设计方法,通过使电动机对制造偏差和尺寸公差具有鲁棒性,从而使齿槽转矩最小化。确定了几种控制和噪声因素以应用稳健的设计技术。鲁棒性的质量取决于信噪比。在选择控制参数时要进行权衡以使输出扭矩最大化。研究表明,这种设计技术在设计用于批量生产的电动机时是有效的,而不会增加成本或复杂性。使用有限元分析选择了通过建模进行的实验。使用优化参数的电动机经过制造和测试,从而验证了设计方法。

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