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Robust control based on linear matrix inequalities criterion of single phase distributed electrical energy systems operating in islanded and grid-connected modes

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  • Bouzid, Allal El Moubarek
  • Chaoui, Hicham
  • Zerrougui, Mohamed
  • Ben Elghali, Seifeddine
  • Benbouzid, Mohamed

Abstract

In this paper, a control strategy of a voltage source inverter with LCL filter in distributed electrical energy systems in both operation modes is proposed for microgrids environment. This robust control strategy considers a state feedback controller based on proportional resonant controller using linear matrix inequalities. The controller is able to ensure a good tracking of sinusoidal references and to suppress low order harmonics. It allows to ensure simultaneously a robust stability of the system in front of external disturbances (grid disturbances, load variations), parametric uncertainty (grid inductance) and smooth transition (with no hazardous transients) between grid connected and islanded mode operation. In order to demonstrate the efficiency and performance of the proposed control strategy, a real time simulation using OP5600 from OPAL-RT is used. Several case studies are verified in real time and the results are analyzed and discussed.

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  • Bouzid, Allal El Moubarek & Chaoui, Hicham & Zerrougui, Mohamed & Ben Elghali, Seifeddine & Benbouzid, Mohamed, 2021. "Robust control based on linear matrix inequalities criterion of single phase distributed electrical energy systems operating in islanded and grid-connected modes," Applied Energy, Elsevier, vol. 292(C).
  • Handle: RePEc:eee:appene:v:292:y:2021:i:c:s0306261921002804
    DOI: 10.1016/j.apenergy.2021.116776
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    1. Kang, Feel-soon & Park, Sung-Jun & Cho, Su Eog & Kim, Jang-Mok, 2005. "Photovoltaic power interface circuit incorporated with a buck-boost converter and a full-bridge inverter," Applied Energy, Elsevier, vol. 82(3), pages 266-283, November.
    2. Dong, Chaoyu & Gao, Qingbin & Xiao, Qian & Yu, Xiaodan & Pekař, Libor & Jia, Hongjie, 2018. "Time-delay stability switching boundary determination for DC microgrid clusters with the distributed control framework," Applied Energy, Elsevier, vol. 228(C), pages 189-204.
    3. Mahdavyfakhr, Mohammad & Rashidirad, Nasim & Hamzeh, Mohsen & Sheshyekani, Keyhan & Afjei, Ebrahim, 2017. "Stability improvement of DC grids involving a large number of parallel solar power optimizers: An active damping approach," Applied Energy, Elsevier, vol. 203(C), pages 364-372.
    4. Liu, Chuang & Li, Xuejiao & Zhi, Yuemei & Cai, Guowei, 2018. "New breed of solid-state transformer mainly combing hybrid cascaded multilevel converter with resonant DC-DC converters," Applied Energy, Elsevier, vol. 210(C), pages 724-736.
    5. Yuan, Minghan & Fu, Yang & Mi, Yang & Li, Zhenkun & Wang, Chengshan, 2019. "Hierarchical control of DC microgrid with dynamical load power sharing," Applied Energy, Elsevier, vol. 239(C), pages 1-11.
    6. Ferreira, Willian M. & Meneghini, Ivan R. & Brandao, Danilo I. & Guimarães, Frederico G., 2020. "Preference cone based multi-objective evolutionary algorithm applied to optimal management of distributed energy resources in microgrids," Applied Energy, Elsevier, vol. 274(C).
    7. Sampaio, Leonardo P. & de Brito, Moacyr A.G. & de A. e Melo, Guilherme & Canesin, Carlos A., 2016. "Grid-tie three-phase inverter with active power injection and reactive power compensation," Renewable Energy, Elsevier, vol. 85(C), pages 854-864.
    8. Dehghani, Moslem & Kavousi-Fard, Abdollah & Niknam, Taher & Avatefipour, Omid, 2021. "A robust voltage and current controller of parallel inverters in smart island: A novel approach," Energy, Elsevier, vol. 214(C).
    9. Zia, Muhammad Fahad & Elbouchikhi, Elhoussin & Benbouzid, Mohamed, 2018. "Microgrids energy management systems: A critical review on methods, solutions, and prospects," Applied Energy, Elsevier, vol. 222(C), pages 1033-1055.
    10. Wang, Qin & Yao, Wei & Fang, Jiakun & Ai, Xiaomeng & Wen, Jinyu & Yang, Xiaobo & Xie, Hailian & Huang, Xing, 2020. "Dynamic modeling and small signal stability analysis of distributed photovoltaic grid-connected system with large scale of panel level DC optimizers," Applied Energy, Elsevier, vol. 259(C).
    11. Wang, Shuoqi & Lu, Languang & Han, Xuebing & Ouyang, Minggao & Feng, Xuning, 2020. "Virtual-battery based droop control and energy storage system size optimization of a DC microgrid for electric vehicle fast charging station," Applied Energy, Elsevier, vol. 259(C).
    12. e Silva, Danilo P. & Félix Salles, José L. & Fardin, Jussara F. & Rocha Pereira, Maxsuel M., 2020. "Management of an island and grid-connected microgrid using hybrid economic model predictive control with weather data," Applied Energy, Elsevier, vol. 278(C).
    Full references (including those not matched with items on IDEAS)

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    1. Guilherme V. Hollweg & Shahid A. Khan & Shivam Chaturvedi & Yaoyu Fan & Mengqi Wang & Wencong Su, 2023. "Grid-Connected Converters: A Brief Survey of Topologies, Output Filters, Current Control, and Weak Grids Operation," Energies, MDPI, vol. 16(9), pages 1-31, April.
    2. Hassani, Hossein & Razavi-Far, Roozbeh & Saif, Mehrdad, 2022. "Real-time out-of-step prediction control to prevent emerging blackouts in power systems: A reinforcement learning approach," Applied Energy, Elsevier, vol. 314(C).
    3. López-Alcolea, Francisco Javier & Molina-Martínez, Emilio J. & Parreño Torres, Alfonso & Vázquez, Javier & Roncero-Sánchez, Pedro, 2023. "2DOF-based current controller for single-phase grid-connected voltage source inverter applications," Applied Energy, Elsevier, vol. 342(C).

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