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Advanced Distributed Cooperative Secondary Control of Islanded DC Microgrids

Anuoluwapo Aluko, Elutunji Buraimoh, Oluwafemi Emmanuel Oni, Innocent E. Davidson

2022Energies27 citationsDOIOpen Access PDF

Abstract

In an islanded DC microgrid with multiple distributed generators (DGs), the droop control is employed to realize proportional current sharing among the DGs in the microgrid. The action of the droop control causes a deviation in the DC bus voltage which is exacerbated by the line impedance between the DG and the DC bus. In this paper, an advanced distributed secondary control scheme is proposed to simultaneously achieve accurate voltage regulation and cooperative current sharing in the islanded DC microgrid system. The proposed distributed secondary controller is introduced in the cyber layer of the system, and each controller shares information with neighbouring controllers via a communication network. The distributed technique maintains the reliability of the overall system if some part of the communication link fails. The proposed controller uses the type-II fuzzy logic scheme to adaptively select the secondary control parameters for an improved response of the controller. The sufficient conditions to guarantee the stability of the proposed controller are derived using the Lyapunov method. Comprehensive tests under different operating scenarios are conducted to demonstrate the robustness of the proposed control scheme.

Topics & Concepts

MicrogridVoltage droopControl theory (sociology)Controller (irrigation)Robustness (evolution)Distributed generationComputer scienceDecentralised systemEngineeringControl engineeringVoltageControl (management)Voltage sourceRenewable energyBiologyGeneArtificial intelligenceChemistryBiochemistryAgronomyElectrical engineeringMicrogrid Control and OptimizationFrequency Control in Power SystemsIslanding Detection in Power Systems
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