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Review on Reactive Power and Voltage Optimization of Active Distribution Network with Renewable Distributed Generation and Time-Varying Loads

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Listed:
  • Xingmin Li
  • Hongwei Li
  • Shuaibing Li
  • Ziwei Jiang
  • Xiping Ma

Abstract

With a high proportion of renewable distributed generation and time-varying load connected to the distribution network, great challenges have appeared in the reactive power optimization control of the active distribution networks. This paper first introduces the characteristics of active distribution networks, the mechanism and research status of wind power, photovoltaic, and other renewable distributed generators, and time-varying loads participating in reactive power and voltage optimization. Then, the paper summarizes the methods of reactive power optimization and voltage regulation of active distribution network, including multi-timescale voltage optimization, coordinated optimization of network reconfiguration and reactive power optimization, coordinated optimization of active and reactive power optimization based on model predictive control, hierarchical and zoning control of reactive power, and voltage and power electronic switch voltage regulation. The pros and cons of the reactive power optimization algorithms mentioned above are summarized. Finally, combined with the development trend of the energy Internet, the future directions of reactive power and voltage control technology in the active distribution network are discussed.

Suggested Citation

  • Xingmin Li & Hongwei Li & Shuaibing Li & Ziwei Jiang & Xiping Ma, 2021. "Review on Reactive Power and Voltage Optimization of Active Distribution Network with Renewable Distributed Generation and Time-Varying Loads," Mathematical Problems in Engineering, Hindawi, vol. 2021, pages 1-18, November.
  • Handle: RePEc:hin:jnlmpe:1196369
    DOI: 10.1155/2021/1196369
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    Cited by:

    1. Quan’e Zhang & Zhigang Song & Qiushi Ru & Jiangwei Fan & Lihui Qiao & Mingche Li & Licheng Wang & Shuaibing Li, 2023. "Coordinated Control of Distributed Energy Storage Systems for DC Microgrids Coupling Photovoltaics and Batteries," Energies, MDPI, vol. 16(2), pages 1-14, January.
    2. Fang Yao & Xinan Zhang & Tat Kei Chau & Herbert Ho-ching Iu, 2023. "Robustly Cooperative Control of Transient Stability for Power System Considering Wind Power and Load Uncertainty by Distribution Preserving Graph Representation Learning (DPG)," Energies, MDPI, vol. 16(5), pages 1-16, March.
    3. Yuriy Sayenko & Ryszard Pawelek & Tetiana Baranenko, 2023. "Analysis of Reactive Power in Electrical Networks Supplying Nonlinear Fast-Varying Loads," Energies, MDPI, vol. 16(24), pages 1-13, December.
    4. Omar Makram Kamel & Ahmed A. Zaki Diab & Mohamed Metwally Mahmoud & Ameena Saad Al-Sumaiti & Hamdy M. Sultan, 2023. "Performance Enhancement of an Islanded Microgrid with the Support of Electrical Vehicle and STATCOM Systems," Energies, MDPI, vol. 16(4), pages 1-19, February.

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