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首页> 外文期刊>Electric Power Applications, IET >Design and iron loss analysis of sensorless-controlled interior permanent magnet synchronous motors with concentrated winding
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Design and iron loss analysis of sensorless-controlled interior permanent magnet synchronous motors with concentrated winding

机译:集中绕组无传感器控制内部永磁同步电动机的设计与铁损分析

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摘要

This study investigates the influence of the stator configuration of low-speed sensorless-controlled interior permanent magnet synchronous motors (IPMSMs) with concentrated winding on the sensorless drive feasibility and iron loss. To evaluate the sensorless controllability of the motors, a mathematical and simulation process of estimating the rotor position error is proposed. In addition, the harmonic iron loss under a load condition is analysed via two-dimensional non-linear finite element analysis. Considering both the sensorless drive feasibility and iron loss, the four different IPMSMs, which have different tooth tip configurations in the stator, are examined. It is shown that the machine with a relatively short and thin stator tooth tip has better sensorless drive controllability and lower harmonic iron loss than the others. Based on the analysis result, a final model applied with stator chamfer for electric vehicle traction is proposed and manufactured. The validity of the simulations and the design method are verified by the experiments.
机译:这项研究调查了低速无传感器控制的内部永磁同步电动机(IPMSMs)的定子配置对无传感器驱动可行性和铁损的影响。为了评估电动机的无传感器可控性,提出了估算转子位置误差的数学和仿真过程。另外,通过二维非线性有限元分析,分析了载荷条件下的谐波铁损。考虑到无传感器驱动的可行性和铁损,研究了在定子中具有不同齿尖配置的四种不同IPMSM。结果表明,定子齿尖相对较短且较薄的电机与其他电机相比,具有更好的无传感器驱动控制能力和更低的谐波铁损。基于分析结果,提出并制造了带有定子倒角的电动汽车牵引力最终模型。实验验证了仿真和设计方法的有效性。

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