LAPSE:2023.30288v1
Published Article
LAPSE:2023.30288v1
Power Management of a Hybrid Micro-Grid with Photovoltaic Production and Hydrogen Storage
April 14, 2023
Abstract
To deal with energy transition due to climate change and a rise in average global temperature, photovoltaic (PV) conversion appears to be a promising technology in sunny regions. However, PV production is directly linked with weather conditions and the day/night cycle, which makes it intermittent and random. Therefore, it makes sense to combine it with Energy Storage Systems (ESS) to ensure long-term energy availability for non-interconnected micro-grids. Among all technological solutions, electrolytic hydrogen produced by renewable energies seems an interesting candidate. In this context, this paper proposes a control strategy dedicated to hydrogen storage integration in micro-grids for a better use of PV production. The objective is to optimize the management of the micro-grid with proton exchange membrane Fuel Cell (FC), alkaline Electrolyzer (El), lithium-ion Batteries Energy Storage System (BESS) and PV, according to the system state and PV production intermittency. First, a control strategy based on a Distributed explicit Model Predictive Control (DeMPC) is developed to define current references for FCs, Els and batteries. Secondly, the performance of the control strategy is validated in simulation and confirmed on a Power-Hardware-in-the-Loop test bench.
Keywords
distributed explicit model predictive control, electrolyzer, fuel cell, hybridization, Hydrogen, power management system, power-hardware-in-the-loop
Suggested Citation
K/bidi F, Damour C, Grondin D, Hilairet M, Benne M. Power Management of a Hybrid Micro-Grid with Photovoltaic Production and Hydrogen Storage. (2023). LAPSE:2023.30288v1
Author Affiliations
K/bidi F: Laboratoire d’Energétique, d’Electronique et Procédés (LE2P)—Energy Lab, University of La Réunion, 15, Avenue René Cassin CS 92003, CEDEX 9, 97744 Saint-Denis, France [ORCID]
Damour C: Laboratoire d’Energétique, d’Electronique et Procédés (LE2P)—Energy Lab, University of La Réunion, 15, Avenue René Cassin CS 92003, CEDEX 9, 97744 Saint-Denis, France [ORCID]
Grondin D: Laboratoire d’Energétique, d’Electronique et Procédés (LE2P)—Energy Lab, University of La Réunion, 15, Avenue René Cassin CS 92003, CEDEX 9, 97744 Saint-Denis, France [ORCID]
Hilairet M: FEMTO-ST Institute, University of Bourgogne Franche-Comte, CNRS, Rue Ernest Thierry Mieg, 90010 Belfort, France; FCLAB, University of Bourgogne Franche-Comte, CNRS, Rue Ernest Thierry Mieg, 90010 Belfort, France [ORCID]
Benne M: Laboratoire d’Energétique, d’Electronique et Procédés (LE2P)—Energy Lab, University of La Réunion, 15, Avenue René Cassin CS 92003, CEDEX 9, 97744 Saint-Denis, France
Journal Name
Energies
Volume
14
Issue
6
First Page
1628
Year
2021
Publication Date
2021-03-15
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14061628, Publication Type: Journal Article
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LAPSE:2023.30288v1
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https://doi.org/10.3390/en14061628
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Apr 14, 2023
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