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Voltage Control of PM Synchronous Generator System Using Recurrent Wavelet Neural Network Controller

机译:PM同步发电机系统的电压控制使用反复间小波神经网络控制器

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A recurrent wavelet neural network (RWNN) controller is proposed to control output voltages for a permanent magnet synchronous motor (PMSM) direct drive three-phase permanent magnet synchronous generator (PMSG) system at stand-alone power application in this paper. First, the field-oriented mechanism is implemented for the control of the PMSG system. Then, a rectifier (AC/DC power converter) and an inverter (DC/AC power converter) are developed to convert the electric power generated by a three-phase PMSG system. Moreover, two online trained RWNNs using backpropagation learning algorithm are developed as the regulating controllers for both the DC-link voltage of the rectifier and the AC line voltage of the inverter. Finally, to show the effectiveness of the proposed controller, comparative studies with PI controller are demonstrated by experimental results.
机译:提出了一种经常性小波神经网络(RWNN)控制器,以控制永磁同步电动机(PMSM)直接驱动三相永磁同步发电机(PMSG)系统的输出电压在本文中的独立电力应用。首先,实现面向字段的机制以控制PMSG系统。然后,开发了整流器(AC / DC功率转换器)和逆变器(DC / AC电源转换器)以转换由三相PMSG系统产生的电力。此外,两个使用Backpropagation学习算法的在线训练RWNNS作为调节控制器,用于整流器的直流链路电压和逆变器的AC线电压。最后,为了表明所提出的控制器的有效性,通过实验结果证明了与PI控制器的比较研究。

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