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Explicit Generalized Predictive Control of Speed and Position of PMSM Drives

机译:PMSM驱动器的速度和位置的显式广义预测控制

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This paper deals with a specific explicit design of Generalized Predictive Control (GPC) for speed and position of three-phase Permanent Magnet Synchronous Motors (PMSM). Predictive algorithms are designed with single and double integrations with respect to step and ramp reference signals. Needful field weakening and current limitation are solved by specific procedures based on a local indirect tuning/amplification of the relevant GPC parameters. The proposed solution due to low computational demands is suitable for real applications. Designed algorithms and procedures are demonstrated by figures and oscillogram screenshots of representative variables measured on the 10.7 kW PMSM drive.
机译:本文针对三相永磁同步电动机(PMSM)的速度和位置,针对广义预测控制(GPC)进行了具体的显式设计。预测算法是针对阶跃和斜坡参考信号进行单次和二次积分设计的。通过基于相关GPC参数的本地间接调整/放大的特定过程,可以解决需要的磁场减弱和电流限制。由于较低的计算需求而提出的解决方案适用于实际应用。通过在10.7 kW PMSM驱动器上测量的代表变量的图形和示波器屏幕截图展示了设计的算法和过程。

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