感应电机弱磁场区矢量控制的磁化电感调谐

D. Choi, M. Shin, T.K. Lee, S. Cho, D. Hyun
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引用次数: 10

摘要

在基本转速以上,磁通水平必须与实际转子转速成反比降低。然后根据转子磁通基准改变磁化电感。在该区域,如果矢量控制器中存在不正确的磁化电感值,则难以正确获得磁化电流和去耦项。不适当的磁化电流使电压裕度减小,使转矩响应不稳定。此外,不当的去耦项使电压参考不正确。计算了定子和转子磁链参考系中的转矩。如果磁化电感正确,则两个转矩值相同。因此,如果两个值不同,则控制器的磁化电感与实际电机的磁化电感不同。本文通过对两种转矩值的比较,提出了一种新的磁化电感调谐方案。转子时间常数调谐和磁化电感调谐方案使矢量控制系统在较宽的转速范围内正常运行。特别说明了该方案在弱磁场区域对系统性能的改善。计算机仿真和实验结果验证了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vector control of an induction motor for the field weakening region with tuning of the magnetizing inductance
Above base speed, the flux level must be reduced in inverse proportion to the actual rotor speed. Then the magnetizing inductance is varied by rotor flux reference. In this region, if there is incorrect magnetizing inductance value in the vector controller, it is difficult to properly obtain the magnetizing current and the decoupling terms. The improper magnetizing current decreases the voltage margin, so that makes torque response unstable. Also, improper decoupling terms make voltage reference incorrect. The torques in the stator and rotor flux reference frame have been calculated. If the magnetizing inductance is correct, two torque values are the same. Therefore, if two values are different, the controller has different magnetizing inductance from that of the actual motor. This paper presents the new tuning scheme of the magnetizing inductance by comparing two torque values. The rotor time constant tuning and magnetizing inductance tuning scheme make the vector control system properly operating on the wide speed range. Especially, the improved system performance in the field weakening region by applying this scheme is illustrated. Computer simulation and experimental results demonstrate the efficacy of the proposed scheme.
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