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Case Study of Backup Application with Energy Storage in Microgrids

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  • Rafaela Nascimento

    (Polytechnic School of Pernambuco, University of Pernambuco (UPE), Recife 50720-001, PE, Brazil)

  • Felipe Ramos

    (Polytechnic School of Pernambuco, University of Pernambuco (UPE), Recife 50720-001, PE, Brazil)

  • Aline Pinheiro

    (Energy Storage Division, Edson Mororó Moura Institute of Technology (ITEMM), Recife 51020-280, PE, Brazil)

  • Washington de Araujo Silva Junior

    (Polytechnic School of Pernambuco, University of Pernambuco (UPE), Recife 50720-001, PE, Brazil)

  • Ayrlw M. C. Arcanjo

    (Energy Storage Division, Edson Mororó Moura Institute of Technology (ITEMM), Recife 51020-280, PE, Brazil)

  • Roberto F. Dias Filho

    (Polytechnic School of Pernambuco, University of Pernambuco (UPE), Recife 50720-001, PE, Brazil)

  • Mohamed A. Mohamed

    (Department of Electrical Engineering, Faculty of Engineering, Minia University, Minia 61519, Egypt)

  • Manoel H. N. Marinho

    (Polytechnic School of Pernambuco, University of Pernambuco (UPE), Recife 50720-001, PE, Brazil)

Abstract

The reliability of energy supply is an important factor for end-users of electricity. Although many advances and efforts have been made by distribution companies to guarantee energy quality, weak feeders and grids are still usually found. As an alternative to minimize such problems, Battery Energy Storage Systems (BESSs) can be used to supply energy to users in the case of power outages or major energy quality problems. This paper presents test results on a real application scenario in a microgrid with different load configurations in the moment of interruption. The tests were compared to each other to analyze the impact found in each scenario. In addition to those, real unpremeditated cases of power quality problems were also discussed, and the performance of the utilized BESS was evaluated.

Suggested Citation

  • Rafaela Nascimento & Felipe Ramos & Aline Pinheiro & Washington de Araujo Silva Junior & Ayrlw M. C. Arcanjo & Roberto F. Dias Filho & Mohamed A. Mohamed & Manoel H. N. Marinho, 2022. "Case Study of Backup Application with Energy Storage in Microgrids," Energies, MDPI, vol. 15(24), pages 1-12, December.
  • Handle: RePEc:gam:jeners:v:15:y:2022:i:24:p:9514-:d:1004332
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    References listed on IDEAS

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    Cited by:

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    3. Diego Jose da Silva & Edmarcio Antonio Belati & Jesús M. López-Lezama, 2023. "A Mathematical Programming Approach for the Optimal Operation of Storage Systems, Photovoltaic and Wind Power Generation," Energies, MDPI, vol. 16(3), pages 1-24, January.
    4. Xianyang Cui & Yulong Liu & Ding Yuan & Tao Jin & Mohamed A. Mohamed, 2023. "A Hierarchical Coordinated Control Strategy for Power Quality Improvement in Energy Router Integrated Active Distribution Networks," Sustainability, MDPI, vol. 15(3), pages 1-20, February.
    5. Xianyang Cui & Yulong Liu & Ding Yuan & Tao Jin & Mohamed A. Mohamed, 2023. "A New Five-Port Energy Router Structure and Common Bus Voltage Stabilization Control Strategy," Sustainability, MDPI, vol. 15(4), pages 1-20, February.
    6. Joelton Deonei Gotz & João Eustáquio Machado Neto & José Rodolfo Galvão & Taysa Millena Banik Marques & Hugo Valadares Siqueira & Emilson Ribeiro Viana & Manoel H. N. Marinho & Mohamed A. Mohamed & Ad, 2023. "Studying Abuse Testing on Lithium-Ion Battery Packaging for Energy Storage Systems," Sustainability, MDPI, vol. 15(15), pages 1-18, July.
    7. Antonio Venancio M. L. Filho & Andrea S. M. Vasconcelos & Washington de A. S. Junior & Nicolau K. L. Dantas & Ayrlw Maynyson C. Arcanjo & Amanda C. M. Souza & Amanda L. Fernandes & Kaihang Zhang & Kun, 2023. "Impact Analysis and Energy Quality of Photovoltaic, Electric Vehicle and BESS Lead-Carbon Recharge Station in Brazil," Energies, MDPI, vol. 16(5), pages 1-18, March.
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