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Hybrid Model Reference Adaptive Speed Control for Vector Controlled Permanent Magnet Synchronous Motor Drive

机译:用于矢量控制永磁同步电动机驱动的混合模型参考自适应速度控制

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This paper investigates new form of a hybrid model reference adaptive speed control (HIMRASC) for vector controlled permanent magnet synchronous motor (PMSM) drive. In the proposed scheme, a direct fuzzy logic controller (FLC) is employed as the main controler, and model reference based proportional integral (PI) controller as the adaptation controller. The design and optimization of the FLC and the adaptation mechanism are presented. The efficiency and performance of the HMRASC is examined, by simulation at different operating conditions. The operating condtions studied include various step speed commands from standstill with nominal and changes in motor parameters and load torque. The results obtained are evaluated and compared with direct FLC without the adaptation mechanism. The results achieved show the superior of HMRASC over direct FLC especially for load disturbances and load inertia variations.
机译:本文研究了用于矢量控制永磁同步电动机(PMSM)驱动器的混合模型参考自适应速度控制(HIMRASC)的新形式。在所提出的方案中,直接模糊逻辑控制器(FLC)用作主控制器,以及基于模型基于比例积分(PI)控制器作为适配控制器。介绍了FLC的设计和优化和适应机构。通过在不同的操作条件下模拟来检查HMRASC的效率和性能。所研究的操作支柱包括具有静止的各种步进速度命令,具有标称和电机参数和负载扭矩的变化。获得的结果得到评估,并与直接FLC进行比较而没有适应机制。实现的结果展示了直接FLC的HMRASC的优越,特别是对于负载障碍和负载惯量变化。

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