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Field Simulation Approach for Computing the Commutation Angle Error of EC Motors

机译:电动马达换向角误差的现场仿真方法

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摘要

Electronically commutated motors produce a mechanical torque by switching the currents in their stator winding system according to the instantaneous rotor position during rotation. The rotor position is determined by Hall sensors capturing the magnetic field of the rotor's permanent magnets. In operation, the Hall sensors are exposed not only to the rotor field, but also to the field of stator windings. This inevitably leads to a certain commutation angle error (CA error) and a reduced motor performance. This paper presents a general 3-D magnetic field simulation approach for computing the CA error and for finding an optimal position of the Hall sensors. The obtained numerical results and their verification by measurements are presented in detail.
机译:电子换向电动机通过在旋转过程中根据转子的瞬时位置切换其定子绕组系统中的电流来产生机械转矩。转子位置由霍尔传感器确定,该传感器捕获转子永磁体的磁场。在运行中,霍尔传感器不仅暴露于转子磁场,而且还暴露于定子绕组的磁场。这不可避免地导致一定的换向角误差(CA误差)并降低电机性能。本文提出了一种通用的3-D磁场模拟方法,用于计算CA误差并找到霍尔传感器的最佳位置。详细介绍了获得的数值结果及其通过测量的验证。

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