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Neural network- fuzzy adaptive PID controller based on VIENNA rectifier

机译:基于VIENNA整流器的神经网络模糊自适应PID控制器。

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After establishing the Vienna rectifier mathematical model, we set the PID parameters through the intelligent algorithm to overcome the poor effect of the traditional voltage and current double closed loop PI controller when it encountered disturbance. In this paper, the single neuron adaptive PID controller is used to control the DC side voltage so that the output voltage can suppress the disturbance. The current inner loop uses a fuzzy-PI controller to control the current component in the dq coordinate system so that the current can quickly respond to disturbance when the load is disturbed and track the voltage of the grid.
机译:建立了维也纳整流器数学模型后,我们通过智能算法设置PID参数,克服了传统电压电流双闭环PI控制器在遇到干扰时的不良影响。在本文中,单神经元自适应PID控制器用于控制直流侧电压,以便输出电压可以抑制干扰。电流内部回路使用模糊PI控制器控制dq坐标系中的电流分量,以便当负载受到干扰时电流可以快速响应干扰并跟踪电网电压。

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