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Active Damping Stabilization Techniques for Cascaded Systems in DC Microgrids: A Comprehensive Review

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  • Ranjan Kumar

    (School of Electrical Science, Indian Institute of Technology Bhubaneswar, Argul, Khordha 752050, India)

  • Chandrashekhar N. Bhende

    (School of Electrical Science, Indian Institute of Technology Bhubaneswar, Argul, Khordha 752050, India)

Abstract

Microgrids have arisen as an alternate solution to the problem of power generation in distributed energy. Compared to ac microgrids, dc microgrids (DC MGs) are superior in terms of system efficiency, power quality, affordability, and ease of control. For the integration of renewable energy generation into microgrids, power electronic converters are required. When power electronics converters are tightly regulated, they behave as a constant power load (CPL) which exhibits a negative incremental impedance characteristic. As a result, oscillations occur in voltage response at a DC bus. To suppress the voltage oscillations in DC MGs, various damping stabilization techniques are proposed by researchers. This paper provides a comprehensive review on active damping stabilization techniques. To improve the system’s stability, active damping can be implemented in three distinct zones: source-side, load side or CPL side, and intermediate level. After analyzing each zone, their merits and drawbacks have been presented. Moreover, CPL modelling, performance of cascaded DC-DC systems, the effect of the load on the source subsystem, the effect of the source on the load converter, and stability analysis are discussed. Finally, concluding remarks and future research directions are highlighted.

Suggested Citation

  • Ranjan Kumar & Chandrashekhar N. Bhende, 2023. "Active Damping Stabilization Techniques for Cascaded Systems in DC Microgrids: A Comprehensive Review," Energies, MDPI, vol. 16(3), pages 1-25, January.
  • Handle: RePEc:gam:jeners:v:16:y:2023:i:3:p:1339-:d:1048038
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    References listed on IDEAS

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    1. Mohammed Kh. AL-Nussairi & Ramazan Bayindir & Sanjeevikumar Padmanaban & Lucian Mihet-Popa & Pierluigi Siano, 2017. "Constant Power Loads (CPL) with Microgrids: Problem Definition, Stability Analysis and Compensation Techniques," Energies, MDPI, vol. 10(10), pages 1-20, October.
    2. Ahmed Aldhaheri & Amir Etemadi, 2017. "Impedance Decoupling in DC Distributed Systems to Maintain Stability and Dynamic Performance," Energies, MDPI, vol. 10(4), pages 1-14, April.
    3. Maria Fotopoulou & Dimitrios Rakopoulos & Dimitrios Trigkas & Fotis Stergiopoulos & Orestis Blanas & Spyros Voutetakis, 2021. "State of the Art of Low and Medium Voltage Direct Current (DC) Microgrids," Energies, MDPI, vol. 14(18), pages 1-27, September.
    4. Teuvo Suntio & Tuomas Messo & Matias Berg & Henrik Alenius & Tommi Reinikka & Roni Luhtala & Kai Zenger, 2019. "Impedance-Based Interactions in Grid-Tied Three-Phase Inverters in Renewable Energy Applications," Energies, MDPI, vol. 12(3), pages 1-31, January.
    5. Haolan Liang & Zhangjie Liu & Hua Liu, 2019. "Stabilization Method Considering Disturbance Mitigation for DC Microgrids with Constant Power Loads," Energies, MDPI, vol. 12(5), pages 1-19, March.
    6. Jae-Suk Lee & Yeong-Jun Choi, 2021. "A Stability Improvement Method of DC Microgrid System Using Passive Damping and Proportional-Resonance (PR) Control," Sustainability, MDPI, vol. 13(17), pages 1-17, August.
    7. Ahmed Aldhaheri & Amir Etemadi, 2018. "Adaptive Stabilization and Dynamic Performance Preservation of Cascaded DC-DC Systems by Incorporating Low Pass Filters," Energies, MDPI, vol. 11(2), pages 1-19, February.
    8. Syam Kumar Pidaparthy & Byungcho Choi, 2015. "Control Design and Loop Gain Analysis of DC-to-DC Converters Intended for General Load Subsystems," Mathematical Problems in Engineering, Hindawi, vol. 2015, pages 1-10, July.
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    Cited by:

    1. Yangfan Chen & Yu Zhang, 2023. "DC Transformers in DC Distribution Systems," Energies, MDPI, vol. 16(7), pages 1-19, March.

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