牵引用变磁阻同步电机每安培最大转矩控制策略分析

M. Ruba, F. Jurca, C. Martis, R. Martis, P. F. Piglesan
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引用次数: 6

摘要

现在有一个重要的趋势是设计尽可能便宜的推进装置的电机。不含永磁体但性能接近嵌入永磁体的机器是目前该领域的主要兴趣。这样的机器就是变磁阻同步机。由同步电机家族衍生而来的是场定向控制。在本文中,详细介绍了为汽车应用而设计的一种特殊的这种机器。本文还提出了一个分析模型,用于实现每安培最大转矩的控制,认为该策略适合于此类应用。在Matlab Simulink中建立了仿真程序,并给出了控制策略和结果。机器的模型考虑了饱和损耗和铁损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of maximum torque per ampere control strategy for variable reluctance synchronous machines for traction applications
Nowadays there is a serious trend to design electrical machines for propulsion units as cheep as possible. Machines that lack the permanent magnets having performances close to those that embed permanents magnets represent now the main interest in this field. Such a machine is the variable reluctance synchronous machine. Being derived from the family of synchronous machines is field oriented controlled. In the present paper one particular such machine is presented in detail designed for automotive applications. An analytical model is also presented used later to implement the maximum torque per ampere control, considering this strategy as being the one suitable for such applications. The simulation program is built in Matlab Simulink presented together with the control strategy and the results. The model of the machine takes into account both saturation and iron losses.
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