基于自抗扰的变换器双闭环控制

Hongyi Peng, Ruoyan Pan, Zhimin Zhang, Zhen Li, X. Zhu, Zhenxiong Zhou
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引用次数: 0

摘要

针对传统双馈感应发电机并网变换器控制复杂、鲁棒性差、输出电压不稳定等缺点,设计了一种基于自抗扰控制(ADRC)的直流母线电压外环和基于PID的电流内环的双闭环控制系统。通过控制变换器的输出电流,达到保持电网侧PWM变换器直流母线电压恒定,同时保持定子侧输出单元功率因数不变的目的。不仅可以达到良好的控制效果,而且可以降低系统的硬件复杂度,提高双馈感应发电机的利用效率。仿真结果表明,双闭环控制策略能有效保持电网侧变流器直流母线电压稳定,保证直流电压波动小,降低电压畸变率,具有较强的抗干扰能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Double closed-loop control of converter based on active disturbance rejection
To overcome the disadvantages of complex control, poor robustness and unstable output voltage of traditional doubly-fed induction generator grid-side converter, a double closed-loop control system of DC bus voltage outer loop based on active disturbance rejection control (ADRC) and current inner loop based on PID is designed. By controlling the output current of the converter, the purpose of maintaining the constant DC bus voltage of the PWM converter on the grid-side and keeping the output unit power factor of the stator side is achieved. Not only can good control effect be achieved, but also the hardware complexity of the system can be reduced and the utilization efficiency of the doubly-fed induction generator can be improved. The simulation results show that the double closed-loop control strategy can effectively maintain the DC bus voltage stability of the grid-side converter, ensure that the DC voltage fluctuation is small, reduce the voltage distortion rate, and have a strong anti-interference ability.
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