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首页> 外文期刊>Industry Applications, IEEE Transactions on >Impact of Rotor Design on Interior Permanent-Magnet Machines With Concentrated and Distributed Windings for Signal Injection-Based Sensorless Control and Power Conversion
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Impact of Rotor Design on Interior Permanent-Magnet Machines With Concentrated and Distributed Windings for Signal Injection-Based Sensorless Control and Power Conversion

机译:转子设计对带有集中绕组和分布式绕组的基于信号注入的无传感器控制和功率转换的内部永磁电机的影响

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摘要

This paper examines the relationship between rotor design, saliency-based signal injection sensorless control, and power conversion properties for four industrially relevant interior permanent-magnet machine configurations: a 36-slot 6-pole stator with v bar rotor, a 36-slot 6-pole stator with flat bar rotor, a 9-slot 6-pole stator with v bar rotor, and a 9-slot 6-pole stator with flat bar rotor. The influence of rotor geometric design variables over the range of current densities at the maximum torque per ampere angle was found using a design of experiments' methodology and standardized regression coefficients. Tradeoffs between sensorless control and power conversion properties are found using a Monte Carlo methodology. Power conversion and sensorless control properties were analyzed using hybrid static and time-stepping finite-element simulations.
机译:本文研究了四种工业上相关的内部永磁电机配置的转子设计,基于显着性的信号注入无传感器控制和功率转换属性之间的关系:36槽6极带V杆转子的定子,36槽6的定子带扁棒转子的1极定子,带v棒转子的9槽6极定子和带扁棒转子的9槽6极定子。使用实验方法设计和标准化回归系数,可以发现转子几何设计变量在最大电流每安培角转矩范围内对电流密度的影响。使用蒙特卡洛方法在无传感器控制和功率转换属性之间进行权衡。使用混合静态和时步有限元模拟分析了功率转换和无传感器控制特性。

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