基于复矢量形式的三相四脚并网逆变器双电流控制回路

Ming Yang, W. Cao, Jianfeng Zhao, Jing Song, Li Wei
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引用次数: 1

摘要

三相四腿逆变器是电能质量控制、电压/无功支撑和电力传输等广泛应用的能量转换结构。本文提出了三相四脚并网逆变器的双电流控制回路,采用复矢量形式优化控制计算,实现了电网不平衡和谐波条件下的零稳态误差和快速调节。双电流控制回路分别为相abc和相N的控制回路。双电流控制回路采用统一的复矢量形式输入。采用多复矢量谐振控制器实现快速零稳态误差控制。并通过电流控制仿真验证了所提控制方法的调节效果和分析的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual Current Control Loops for Three-Phase Four-Leg Grid-Connected Inverter using Complex-Vector Form
Three-phase four-leg inverter is the widely utilized energy conversion structure for power quality control, voltage/reactive power supporting and power transmission. This paper proposes dual current control loops for three-phase four-leg grid-connected inverter using complex-vector form to optimize the control calculation and realize zero steady-state error and fast regulation in the grid conditions with unbalance and harmonics. The dual current control loops are the control loops for phase abc and phase N respectively. The dual current control loops adopt the unified complex-vector form inputs. The multi complex vector resonant controllers are used to realize fast zero steady-state error control. And the regulation effect of the proposed control method and the correctness of the analysis are verified through current control simulation.
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