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A dynamic adaptive observer for speed sensorless intelligent control of PMSM drives

机译:动态自适应观测器,用于PMSM驱动器的无速度智能控制

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This paper presents an evaluation and investigation of a dynamic adaptive observer for the surface permanent magnet synchronous motor (PMSM) drive performance under the speed sensorless intelligent control. Sensorless speed control of PMSM as a more robust, smaller size and less expensive solution is presented. A Luenberger statebased adaptive (LSA) observer is proposed here to estimate the rotor position and angular speed of the motor. These estimated values are the feedback for vector control in the current loop and for speed control in the speed loop. The rotor angular speed is regulated by using speed fuzzy logic controller (FLC). This paper presents a contribution in eliminating the need for three voltage sensors which measure the three-phase voltages. These voltage sensors increase the system cost and reduce the system reliability. However, these costs can be eliminated by proper calculation. The system mathematical modeling and the experimental verifications of the proposed LSA observer and the speed FLC for the PMSM are introduced. A 850 w PMSM drive test setup is designed and constructed including a dSPACE 1104 as the control heart of the proposed system. The simulation and experimental results are demonstrated to verify the validity of the proposed LSA dynamic observer for sensorless fuzzy-based speed controller of PMSMs.
机译:本文对无速度传感器智能控制下的表面永磁同步电动机(PMSM)驱动性能的动态自适应观测器进行了评估和研究。提出了PMSM的无传感器速度控制,它是一种更强大,更小的尺寸和更便宜的解决方案。在此提出一种基于Luenberger状态的自适应(LSA)观察器,以估计电动机的转子位置和角速度。这些估计值是电流回路中矢量控制和速度回路中速度控制的反馈。转子角速度通过使用速度模糊逻辑控制器(FLC)进行调节。本文提出了对消除对用于测量三相电压的三个电压传感器的需求的贡献。这些电压传感器增加了系统成本并降低了系统可靠性。但是,可以通过适当的计算来消除这些成本。介绍了所提出的LSA观测器和PMSM的速度FLC的系统数学建模和实验验证。设计并构建了一个850 w PMSM驱动测试设置,其中包括dSPACE 1104作为所建议系统的控制核心。仿真和实验结果证明了所提出的LSA动态观测器对永磁同步电机无传感器模糊速度控制器的有效性。

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