Systematic Decoupling Grid-Forming Control for Utility-Scale Inverter-Based Distributed Energy Resources in Weak Distribution Grids

被引:0
|
作者
He, Lina [1 ]
Yu, Shiwen [1 ]
机构
[1] Univ Illinois, Dept Elect & Comp Engn, Chicago, IL 60607 USA
来源
IEEE OPEN ACCESS JOURNAL OF POWER AND ENERGY | 2024年 / 11卷
关键词
Decoupling control; grid-forming; utility-scale DERs; weak distribution grids; frequency and voltage regulation; DROOP CONTROL METHOD; VOLTAGE; IMPEDANCE;
D O I
10.1109/OAJPE.2024.3360854
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Existing grid-forming inverter control schemes for distributed energy resources (DERs) primarily rely on active power (P)-frequency (f) and reactive power (Q)-voltage (V) droop mechanisms that are tailored for highly inductive transmission grids. However, in weak distribution grids where P and Q are highly coupled due to their resistive network characteristics, these control schemes cannot provide independent and accurate f and V regulation. This will further deteriorate the dynamic and stability performance, potentially resulting in inverter and load tripping during disturbances. To address this challenge, this paper proposes an innovative decoupling grid-forming control scheme, which is designed based on a systematic perspective that considers the inherent coupling characteristic of the entire distribution grid. The small-signal stability of the proposed controller is analyzed by varying controller parameters and the grid strength. The effectiveness of this controller is comprehensively verified using both MATLAB and OPAL-RT platforms by comparing it with existing grid-forming control strategies. The results show that the proposed controller can effectively decouple P and Q regulation in weak distribution grids. It enables DERs to provide independent, accurate, and autonomous f and V regulation, thus improving grid stability and dynamics. The proposed control strategy is cost-effective, communication-free, and can be easily commercialized due to its straightforward and robust circuit design.
引用
收藏
页码:27 / 39
页数:13
相关论文
共 9 条
  • [1] Dynamics of Inverter-Based Resources in Weak Distribution Grids
    Dozein, Mehdi Ghazavi
    Pal, Bikash Chandra
    Mancarella, Pierluigi
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2022, 37 (05) : 3682 - 3692
  • [2] Grid-Forming Control: Advancements towards 100% Inverter-Based Grids-A Review
    Ebinyu, Emmanuel
    Abdel-Rahim, Omar
    Mansour, Diaa-Eldin A.
    Shoyama, Masahito
    Abdelkader, Sobhy M.
    ENERGIES, 2023, 16 (22)
  • [3] Robust Optimal Control of Inverter-Based Resources Under Grid-Forming Operation
    Ameli, Sina
    Anubi, Olugbenga Moses
    Peng, Fang
    IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY, 2025,
  • [4] Dynamics of Inverter-Based Resources in Weak Distribution Grids
    Dozein, Mehdi Ghazavi
    Pal, Bikash C.
    Mancarella, Pierluigi
    2023 IEEE BELGRADE POWERTECH, 2023,
  • [5] Modeling of Grid-Forming Inverters for Transient Stability Simulations of an all Inverter-based Distribution System
    Du, Wei
    Schneider, Kevin P.
    Tuffner, Francis K.
    Chen, Zhe
    Lasseter, Robert H.
    2019 IEEE POWER & ENERGY SOCIETY INNOVATIVE SMART GRID TECHNOLOGIES CONFERENCE (ISGT), 2019,
  • [6] Model Predictive Control-Based Load-Frequency Regulation of Grid-Forming Inverter-Based Power Systems
    Qi, Xiaojing
    Zheng, Jianyong
    Mei, Fei
    FRONTIERS IN ENERGY RESEARCH, 2022, 10
  • [7] Grid-forming assisted based power management of AC microgrid system comprising multiple battery energy storage units, DFIG-based wind turbines and inverter-based resources
    Ghadiriyan, Sajjad
    Rahimi, Mohsen
    JOURNAL OF ENERGY STORAGE, 2024, 97
  • [8] Dual Grid-Forming Control With Energy Regulation Capability of MMC-HVDC System Integrating Offshore Wind Farms and Weak Grids
    Zhang, Haobo
    Xiang, Wang
    Wen, Jinyu
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2024, 39 (01) : 261 - 272
  • [9] Decentralized Virtual Impedance- Conventional Droop Control for Power Sharing for Inverter-Based Distributed Energy Resources of a Microgrid
    Buraimoh, Elutunji
    Aluko, Anuoluwapo O.
    Oni, Oluwafemi E.
    Davidson, Innocent E.
    ENERGIES, 2022, 15 (12)