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Journal article ยท Ahead of Print article

Observer-Based Backstepping Sliding Mode Control Design for Microgrids Feeding a Constant Power Load

From

Shiraz University of Technology1

University of Windsor2

Power and Energy Systems, Department of Wind and Energy Systems, Technical University of Denmark3

E-mobility and Prosumer Integration, Power and Energy Systems, Department of Wind and Energy Systems, Technical University of Denmark4

Department of Wind and Energy Systems, Technical University of Denmark5

This paper deals with the problem of controller design for DC microgrids that feed constant power loads. To design the proposed controller, first by the use of the exact feedback linearization approach, the linear model of Brunovsky's canonical representation of the system has been obtained to address the nonlinearity problem of the system.

Then, the desired control technique is developed by a combination of sliding mode and backstepping control approaches in which a nonlinear disturbance observer is utilized to estimate the disturbance. The overall stability of the system is analyzed based on the Lyapunov approach. A suitable and practical sliding surface is one of the controller strengths that allow the bus voltage to track the reference voltage with high accuracy and fast transient response.

Finally, to prove the mentioned claims, an experimental setup has been constructed and the proposed controller is implemented. The experimental results have been analyzed and error analysis is performed. The results confirm the superiority of the proposed controller compared to state-of-the-art controllers.

Language: English
Publisher: IEEE
Year: 2023
Pages: 465-473
ISSN: 15579948 and 02780046
Types: Journal article and Ahead of Print article
DOI: 10.1109/TIE.2022.3152028
ORCIDs: Mijatovic, Nenad , Dragicevic, Tomislav , 0000-0002-0135-8173 , 0000-0002-4330-3656 and 0000-0002-7587-4189

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