基于虚拟磁通的三相AC/DC变换器预测直接功率控制

Y. Tao, L. Wang, Q. Wu, W. Tang
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引用次数: 4

摘要

本文提出了一种基于瞬时有功功率和无功功率直接调节的三相交/直流变换器预测直接功率控制策略。该策略通过引入虚磁通(VF)概念和基于瞬时功率的电网电压估计方法,实现了无线侧电压传感器的变流器运行。采用空间矢量调制实现了恒定的变换器开关频率,简化了线路滤波器的设计。仿真结果表明,在较低的开关频率下,所提出的PDPC在功率纹波消除和正弦线电流方面都有改善。对比研究表明,所提PDPC的稳态行为优于传统的查表DPC (LUTDPC)和PDPC,且瞬态过程比传统的LUTDPC更短。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual-flux-based predictive direct power control of three-phase AC/DC converters
In this paper, a novel predictive direct power control (PDPC) strategy is proposed for three-phase AC/DC converters, which is based on a straightforward regulation of instantaneous active and reactive power. The converter controlled by the proposed strategy realizes operations without line-side voltage sensors by introducing the virtual flux (VF) concept and a grid voltage estimation method based on the instantaneous power. A constant converter switching frequency is achieved by employing the space vector modulation, which simplifies the design of the line filter. Simulation results show that the improvement of power ripple elimination and sinusoidal line currents can be observed in the proposed PDPC at a lower switching frequency. Comparative studies reveal that the steady behaviors of the proposed PDPC are superior to that of the conventional look-up-table DPC (LUTDPC) and PDPC, moreover the transient process of which is more shorter compared with that of the conventional LUTDPC.
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