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Predictive current control for SynRM drives under low dc link voltage

机译:低直流链路电压下SynRM驱动器的预测电流控制

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Although it has an excellent steady performance, traditional proportion integration (PI) current control still needs PI parameters tuning, which is a time-consuming. In addition, because there are no permanent magnets in synchronous reluctance motor (SynRM) drives, the large stator inductance will affect the stator current variation, which actually limits the response of the current controller. This problem gets worse if dc link of an inverter is low. To deal with these problems, other current control strategies for SynRM will be introduced, namely deadbeat predictive current control (DPCC) and model predictive current control (MPCC). In addition, this paper analyzes the advantages and drawback about the PI current control and predictive control in SynRM drives. Simulation results are demonstrated to verify the effectiveness of the four control strategies.
机译:尽管它具有出色的稳定性能,但传统的比例积分(PI)电流控制仍需要对PI参数进行调整,这非常耗时。另外,由于同步磁阻电机(SynRM)驱动器中没有永磁体,因此较大的定子电感会影响定子电流变化,这实际上限制了电流控制器的响应。如果逆变器的直流母线很低,这个问题将变得更加严重。为了解决这些问题,将介绍SynRM的其他电流控制策略,即无差拍预测电流控制(DPCC)和模型预测电流控制(MPCC)。此外,本文还分析了SynRM驱动器中PI电流控制和预测控制的优缺点。仿真结果证明了四种控制策略的有效性。

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