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Predictive Control of Bidirectional Voltage Source Converter With Reduced Current Harmonics and Flexible Power Regulation Under Unbalanced Grid

机译:电网不平衡下电流谐波减小和功率调节灵活的双向电压源变换器的预测控制

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摘要

This paper proposes a simplified and improved model predictive current control (MPCC) scheme for grid-connected bidirectional voltage source converter (GC-BVSC) when the unbalanced grid voltages occur. In conditions of unbalanced grid voltage, the current harmonic components of the GC-BVSC increase significantly, and twice grid-frequency ripple exist in both active power and reactive power, which influence the output power quality. To reduce harmonic currents and power fluctuations, an improved MPCC (IMPCC) method is proposed, and a two-step predictive model of GC-BVSC is put forward. The current compensation values are expressed by grid voltages and their quadrature signals that lag 90 electrical degrees in thenαβnstationary coordinates system. The cost function reducing both the power ripple and current distortion is designed. Compared to conventional methods, phase-locked loop, pulse width modulation, and complex positive and negative sequence extraction of grid voltage are not required. In addition, IMPCC presents a better performance by reducing both grid-connected current harmonics and power ripple of GC-BVSC with flexible bidirectional power regulation capability. Simulation and experimental results on power electronics-professional (PE-PRO) platform verify the effectiveness of the proposed scheme under both single-phase and three-phase unbalanced grid voltages.
机译:针对电网电压不平衡时的并网双向电压源变换器(GC-BVSC),本文提出了一种简化和改进的模型预测电流控制(MPCC)方案。在电网电压不平衡的情况下,GC-BVSC的电流谐波分量显着增加,有功功率和无功功率中均存在两倍的电网频率纹波,从而影响输出功率质量。为了减少谐波电流和功率波动,提出了一种改进的MPCC(IMPCC)方法,并提出了GC-BVSC的两步预测模型。当前的补偿值由电网电压及其正交信号表示,其滞后于90电气度。 //www.w3.org/1999/xlink“>αβ静态坐标系。设计了降低电源纹波和电流失真的成本函数。与传统方法相比,不需要锁相环,脉宽调制以及电网电压的复杂正负序列提取。此外,IMPCC通过降低具有灵活的双向功率调节功能的GC-BVSC的并网电流谐波和功率纹波,从而表现出更好的性能。在电力电子专业(PE-PRO)平台上的仿真和实验结果证明了该方案在单相和三相不平衡电网电压下的有效性。

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