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Communication-less Control Strategy of Adaptive Harmonic Sharing and Power Quality Control Under Various Working Conditions in Islanded Microgrid

  • Xiao Zhang
  • , Hao Yi
  • , Ya Wen
  • , Yueqian Bai
  • , Zhenxiong Wang
  • , Zebin Yang
  • , Yichen Wang
  • , Fang Zhuo
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

In islanded microgrid, nonlinear loads lead to harmonic sharing and power quality issues, which make designing a proper control strategy considering both two aspects significant. Impedance-reshaping-based methods are intuitive and effective solutions, where the inherent tradeoff between power quality and harmonic sharing accuracy must be designed properly. The most of existing methods share harmonic power according to the rated power of converters, lacking the full use of residual capacity. Besides, the fixed tradeoff results in the limited power quality improvement. Faced with these issues, an adaptive communication-less control strategy under different working conditions is proposed in this paper. A nonlinear droop scheme, between virtual impedance and residual capacity, is proposed to dynamically adjust the inherent tradeoff under different working conditions. The proposed strategy can render an optimal utilization of the converter capacity and optimize the power quality to the greatest extent while avoiding overload. In addition, the communication line is not needed, leading to high flexibility. The experimental results based on three converters have verified the feasibility and effectiveness of the proposed method.

Translated title of the contribution孤岛微电网多工况下自适应谐波分配与电能质量治理无通信控制策略
Original languageEnglish
Pages (from-to)83-95
Number of pages13
JournalZhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering
Volume45
Issue numberzk
DOIs
StatePublished - 31 Aug 2025

Keywords

  • communication-less control
  • harmonic sharing and current limiting
  • islanded microgrid
  • nonlinear droop
  • power quality control
  • residual capacity

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