首页> 外文期刊>International Journal of Fuzzy Systems >Deadbeat Predictive Power Control with Fuzzy PI Compound Controller and Power Predictive Corrector for PWM Rectifier Under Unbalanced Grid Conditions
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Deadbeat Predictive Power Control with Fuzzy PI Compound Controller and Power Predictive Corrector for PWM Rectifier Under Unbalanced Grid Conditions

机译:在不平衡网格条件下使用模糊PI复合控制器和PWM整流器的电源预测校正器的Deadbeat预测功率控制

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摘要

Under unbalanced grid conditions, the DC side voltage of pulse width modulation (PWM) rectifier will overshoot during start-up and reference voltage transients, which may lead to system instability. In this paper, a dead-beat predictive power control (DPPC) with fuzzy PI compound controller (FPCC) and power predictive corrector (PPC) is proposed to solve that problem. Firstly, the parameters of the PI controller are adjusted online by the fuzzy control rule of the FPCC to eliminate the overshoot of the DC side voltage and contribute to faster dynamic responses, which thereby could correct the reference active power. Secondly, the static error between the reference and system active powers is reduced by accumulative predictive errors in the PPC. The simulation is carried out under ideal and unbalanced grid conditions. The result shows that the proposed control scheme can effectively eliminate the overshoot of DC voltage, reduce the static error of active power, and improve the dynamic response and anti-interference ability of the rectifier.
机译:在不平衡的电网条件下,脉冲宽度调制(PWM)整流器的直流侧电压将在启动和参考电压瞬变期间过冲,这可能导致系统不稳定性。在本文中,提出了一种具有模糊PI复合控制器(FPCC)和功率预测校正器(PPC)的死区节拍预测功率控制(DPPC)以解决该问题。首先,PI控制器的参数通过FPCC的模糊控制规则在线调整,以消除直流侧电压的过冲,并有助于更快的动态响应,从而可以校正参考有效功率。其次,通过PPC中的累积预测误差减少了参考和系统主动功率之间的静态误差。模拟在理想和不平衡的网格条件下进行。结果表明,所提出的控制方案可以有效地消除直流电压的过冲,降低有功功率的静态误差,提高整流器的动态响应和抗干扰能力。

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