Multi-Objective Optimization of Autonomous Microgrids with Reliability Consideration

Author:

Riou Maël,Dupriez-Robin Florian,Grondin DominiqueORCID,Le Loup Christophe,Benne Michel,Tran Quoc T.

Abstract

Microgrids operating on renewable energy resources have potential for powering rural areas located far from existing grid infrastructures. These small power systems typically host a hybrid energy system of diverse architecture and size. An effective integration of renewable energies resources requires careful design. Sizing methodologies often lack the consideration for reliability and this aspect is limited to power adequacy. There exists an inherent trade-off between renewable integration, cost, and reliability. To bridge this gap, a sizing methodology has been developed to perform multi-objective optimization, considering the three design objectives mentioned above. This method is based on the non-dominated sorting genetic algorithm (NSGA-II) that returns the set of optimal solutions under all objectives. This method aims to identify the trade-offs between renewable integration, reliability, and cost allowing to choose the adequate architecture and sizing accordingly. As a case study, we consider an autonomous microgrid, currently being installed in a rural area in Mali. The results show that increasing system reliability can be done at the least cost if carried out in the initial design stage.

Funder

Association Nationale de la Recherche et de la Technologie

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference49 articles.

1. World Energy Outlook 2019,2019

2. WHO Tracking SDG 7: The Energy Progress Report;Iea,2021

3. Beyond Connections: Energy Access Redefined;Bhatia,2015

4. RE-Thinking Access to Energy Business Models: Ways to Walk the Water-Energy-Food Nexus Talk in Sub-Saharan Africa;Aresti,2019

5. Africa 2030: Roadmap for a Renewable Energy Future,2015

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