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首页> 外文期刊>IEEE Transactions on Power Electronics >Robust Deadbeat Predictive Power Control With a Discrete-Time Disturbance Observer for PWM Rectifiers Under Unbalanced Grid Conditions
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Robust Deadbeat Predictive Power Control With a Discrete-Time Disturbance Observer for PWM Rectifiers Under Unbalanced Grid Conditions

机译:电网不平衡情况下具有PWM整流器的离散时间扰动观测器的鲁棒无差拍预测功率控制

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摘要

This paper presents a robust deadbeat predictive power control (DPPC) for pulsewidth modulation (PWM) rectifiers with the consideration of parameter mismatches under unbalanced grid conditions. First, conventional DPPC is modified to extend its application to both ideal and unbalanced grid conditions. Second, a tracking error of the modified DPPC with inaccurate grid-side impedance is analyzed. Third, a discrete-time power disturbance observer (DPDO) is designed to achieve accurate power control with mismatched parameters. The designed DPDO can predict complex power at the next sampling instant and estimate system disturbance simultaneously. Therefore, the DPDO can contribute to eliminate the steady-state tracking error resulting from disturbances caused by inaccurate parameters and compensate one-step delay in digital implementation. Although satisfactory steady-state performance can be obtained with modified DPPC and DPDO, transient performance still deteriorates significantly with an inaccurate value of the grid-side inductance. Thus, an online adaptive method to estimate mismatched inductance is finally developed based on the proposed DPDO. Both DPPC and DPDO are implemented in the stationary reference frame without coordinate transformation. Theoretical analysis confirms that the proposed DPDO can track disturbance without phase lag or magnitude error. Experimental tests and comparative studies with a prior DPPC on a two-level PWM rectifier validate the effectiveness of the proposed scheme.
机译:本文提出了一种用于脉宽调制(PWM)整流器的鲁棒无差拍预测功率控制(DPPC),其中考虑了不平衡电网条件下的参数失配。首先,对传统的DPPC进行了修改,以将其应用扩展到理想和不平衡的电网条件下。其次,分析了具有不正确的电网侧阻抗的改进型DPPC的跟踪误差。第三,设计了离散时间电源干扰观测器(DPDO),以实现参数不匹配的精确功率控制。设计的DPDO可以在下一个采样时刻预测复杂功率,并同时估算系统干扰。因此,DPDO可以消除由于参数不准确引起的干扰而导致的稳态跟踪误差,并可以补偿数字实现中的一步延迟。尽管使用改进的DPPC和DPDO可以获得令人满意的稳态性能,但是由于电网侧电感的值不正确,瞬态性能仍然会大大降低。因此,基于所提出的DPDO,最终开发了一种在线自适应方法来估计失配电感。 DPPC和DPDO都在固定参考框架中实现,而无需进行坐标转换。理论分析证实,提出的DPDO可以跟踪扰动而没有相位滞后或幅度误差。在两级PWM整流器上使用先前的DPPC进行的实验测试和比较研究验证了该方案的有效性。

著录项

  • 来源
    《IEEE Transactions on Power Electronics》 |2019年第1期|287-300|共14页
  • 作者单位

    Faculty of Engineering and Information Technology, University of Technology Sydney, Ultimo, NSW, Australia;

    Inverter Technologies Engineering Research Center of Beijing, North China University of Technology, Beijing, China;

    Faculty of Engineering and Information Technology, University of Technology Sydney, Ultimo, NSW, Australia;

    Inverter Technologies Engineering Research Center of Beijing, North China University of Technology, Beijing, China;

    Faculty of Engineering and Information Technology, University of Technology Sydney, Ultimo, NSW, Australia;

    Faculty of Engineering and Information Technology, University of Technology Sydney, Ultimo, NSW, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Power control; Reactive power; Pulse width modulation; Disturbance observers; Voltage control; Robustness;

    机译:功率控制;无功功率;脉宽调制;干扰观测器;电压控制;坚固性;

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