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Adaptive Decentralized Output-Constrained Control of Single-Bus DC Microgrids

         

摘要

A single-bus DC microgrid can represent a wide range of applications. Control objectives of such systems include high-performance bus voltage regulation and proper load sharing among multiple distributed generators(DGs) under various operating conditions. This paper presents a novel decentralized control algorithm that can guarantee both the transient voltage control performance and realize the predefined load sharing percentages. First, the output-constrained control problem is transformed into an equivalent unconstrained one. Second, a two-step backstepping control algorithm is designed based on the transformed model for bus-voltage regulation. Since the overall control effort can be split proportionally and calculated with locally-measurable signals, decentralized load sharing can be realized. The control design requires neither accurate parameters of the output filters nor load measurement. The stability of the transformed systems under the proposed control algorithm can indirectly guarantee the transient bus voltage performance of the original system. Additionally, the high-performance control design is robust, flexible, and reliable. Switch-level simulations under both normal and fault operating conditions demonstrate the effectiveness of the proposed algorithm.

著录项

  • 来源
    《自动化学报:英文版》 |2019年第2期|P.424-432|共9页
  • 作者单位

    [1]the Smart Microgrid and Renewable Technology(SMRT)Research Laboratory;

    Department of Electrical and Computer Engineering;

    Lehigh University;

    Bethlehem;

    PA 18015 USA;

    [4]IEEE;

    [3]the State Key Laboratory of Industrial Control Technology;

    College of Control Science and Engineering;

    Zhejiang University;

    Hangzhou 310027;

    China;

    [4]IEEE;

    [2]the GEIRI North America;

    San Jose;

    CA 95134 USA;

    [4]IEEE;

    [3]the State Key Laboratory of Industrial Control Technology;

    College of Control Science and Engineering;

    Zhejiang University;

    Hangzhou 310027;

    China;

    [4]IEEE;

    [1]the Smart Microgrid and Renewable Technology(SMRT)Research Laboratory;

    Department of Electrical and Computer Engineering;

    Lehigh University;

    Bethlehem;

    PA 18015 USA;

    [4]IEEE;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 电力网;
  • 关键词

    DC microgrids; decentralized control; paralleled converters; output constraint;

    机译:直流微电网;分散控制;并联变换器;输出约束;
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