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Dual-Loop Power Control for Single-Phase Grid-Connected Converters with LCL Filter

机译:具有LCL滤波器的单相并网转换器的双环路功率控制

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摘要

Grid-connected converters have widely adopted LCL filters to acquire high harmonic suppression. However, the LCL filter increases the system order so that the design of the system stability would be complicated. Recently, sole-loop control strategies have been used for grid-connected converters with L or LC filters. But if the sole-loop control is directly transplanted to grid-connected converters with LCL filters, the systems may be unstable. This paper presents a novel dual-loop power control strategy composed of a power outer loop and a current inner loop. The outer loop regulates the grid-connected power. The inner loop improves the system stability margin and suppresses the resonant peak caused by the LCL filter. To obtain the control variables, a single-phase current detection is proposed based on PQ theory. The system transfer function is derived in detail and the influence of control gains on the system stability is analyzed with the root locus. Simulation and experimental results demonstrate the feasibility of the proposed control. 【Keywords】Grid-connected converter, LCL filter, Power control, Power electronics, PQ theory, Root locus, Transfer function;
机译:并网转换器已广泛采用LCL滤波器来获得高谐波抑制。但是,LCL滤波器会增加系统阶数,因此系统稳定性的设计会很复杂。最近,单回路控制策略已用于具有L或LC滤波器的并网转换器。但是,如果将单回路控制直接移植到具有LCL滤波器的并网转换器中,则系统可能会不稳定。本文提出了一种由电源外环和电流内环组成的新型双环功率控制策略。外环调节并网电源。内部环路提高了系统稳定性,并抑制了由LCL滤波器引起的谐振峰值。为了获得控制变量,提出了一种基于PQ理论的单相电流检测方法。详细推导了系统传递函数,并从根源分析了控制增益对系统稳定性的影响。仿真和实验结果证明了该控制方法的可行性。 【关键词】并网变换器LCL滤波器功率控制电力电子PQ理论根轨迹传递函数

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  • 来源
    《Journal of power electronics 》 |2011年第4期| p.456-463| 共8页
  • 作者单位

    College of Electrical and Information Engineering, Hunan University, Changsha, China;

    College of Electrical and Information Engineering, Hunan University, Changsha, China;

    College of Electrical and Information Engineering, Hunan University, Changsha, China;

    College of Electrical and Information Engineering, Hunan University, Changsha, China;

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