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Comparison of Unmodulated Current Control Characteristics of Permanent Magnet Synchronous Motor

机译:永磁同步电动机的非调制电流控制特性比较

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This paper discusses comparison of unmodulated current controls in PMSM, more specifically, on-off, sliding mode, predictive and hybrid controls. The purpose of this study is to select the most appropriate control technique to be adopted. The comparison method is preceded by modeling the motor and entering the values of the motor parameters. PI control is used for speed control and zero d-axis current is employed. Furthermore, performing simulation for each type ofthe selected current controls and analyzing their responses in terms of dq and abc currents, q-axis current response with step reference, as well as THD. Simulation results show that the on-off control gives the best overall performance based on its abc-axis current ripple and THD at large load torque. The hybrid control shows the best response occurring only at the fastest transient time of q-axis current but its response exhibits bad qualities compared with other controls. The predictive control yields the best responses offering the smallest d-axis ripple current and THD at small load torque condition. The sliding mode control, however, does not exhibit any prominent performance compared to the others. Results presented in this paper further indicate that for the PMSM used in the simulation the most appropriate control is the predictive control.
机译:本文讨论了PMSM中未调制电流控制的比较,更具体地说,是开-关,滑模,预测和混合控制。本研究的目的是选择最合适的控制技术。在比较方法之前,先对电动机建模并输入电动机参数的值。 PI控制用于速度控制,d轴电流为零。此外,对每种所选电流控制类型进行仿真,并根据dq和abc电流,带阶跃参考的q轴电流响应以及THD分析其响应。仿真结果表明,在大负载转矩下,开关控制基于其abc轴电流纹波和THD具有最佳的整体性能。混合控件显示最佳响应仅在q轴电流的最快瞬变时间发生,但与其他控件相比,其响应显示出较差的质量。预测控制产生最佳响应,在小负载转矩条件下提供最小的d轴纹波电流和THD。然而,与其他模式相比,滑动模式控制没有表现出任何突出的性能。本文介绍的结果进一步表明,对于仿真中使用的PMSM,最合适的控制是预测控制。

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