从实验数据确定磁阻同步电动机有效气隙长度

P. Neti, S. Nandi
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引用次数: 6

摘要

由于磁阻同步电机(RSM)比其他电机具有许多优点,因此在交流驱动中的应用在许多工业应用中越来越重要。RSM的性能很大程度上取决于机床沿d轴和q轴的有效气隙长度。本文尝试在考虑磁导率较高和绕组空间谐波的情况下,由直轴和正交轴电抗的实验值求得电机的有效气隙长度。然后将这些电抗与用绕组函数法(WFA)得到的定子绕组磁化电感系数进行比较,以确定气隙。对不同磁导率和绕组空间谐波进行了对比研究。与d轴气隙长度相比,q轴气隙长度似乎对工作点和漏感更为敏感。考虑到空载附近的实验值可以最小化磁通屏障效应,因为如果不改变极弧长度,WFA无法模拟这些效应。测定了另一种带阻尼杆的凸极同步电机在无励磁时的有效气隙,并与各磁导率和绕组空间谐波进行了比较。这台机器没有通量障碍,因此结果似乎更准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of effective air-gap length of reluctance synchronous motors from experimental data
Because of many advantages of reluctance synchronous motors (RSM) over other motors, their usage in AC drives have been gaining importance for many industry applications. The performance of RSM is greatly dependent on the effective air-gap lengths of the machine along its d and q axes. In this paper, an attempt has been made to obtain the effective air-gap lengths of the machine from the experimental values of direct and quadrature axis reactances by considering the higher permeance and winding space harmonics of a RSM. These reactances are then compared with the coefficients of the magnetizing inductances of the stator windings, obtained by using winding function approach (WFA), to determine the air-gaps. A comparative study has been carried out with different permeance and winding space harmonics. The q-axis air-gap length seems to be much more sensitive to the operating point and the leakage inductance compared to the d-axis air-gap length. Experimental values near no-load have been considered to minimize flux barrier effects, as WFA cannot simulate these effects without changing the length of the pole arc. The effective air-gaps of another salient pole synchronous machine with damper bars have also been determined and compared with various permeance and winding space harmonics, when run as a RSM (without field excitation). This machine did not have flux barriers and hence the results seem to be more accurate.
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