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September 12, 2025Processes9 citationsOpen Access

Real-Time Capable MPC-Based Energy Management of Hybrid Microgrid

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AAA. AmarZYZıyodulla Yusupov

Key Points

  • Simulation results indicate a 43% reduction in operational costs, showcasing the efficiency of the proposed approach.
  • The model predictive control method successfully decreased grid dependency by 35%, enhancing overall system resilience.
  • Under realistic conditions, critical loads remain below 3%, highlighting the system's reliability during faults and price fluctuations.
  • The proposed strategy demonstrates superior adaptability and scalability compared to traditional energy management methods.

Abstract

As hybrid microgrids become increasingly widespread in real-world applications, the need for intelligent energy management strategies that ensure reliability, economic efficiency, and robustness to uncertainties is growing. This study presents a real-time capable model predictive control (MPC)-based energy management for a medium-sized hybrid microgrid at the Karabuk University Demir Çelik campus. The system comprises 100 kW photovoltaic (PV) panels, a 500 Ah battery energy storage system (BESS), a 440 kW diesel generator, and a 75 MVA utility connection. The proposed MPC approach is evaluated under ten realistic operating scenarios, incorporating dynamic pricing and fault conditions. Simulation results show up to 43% reduction in operational costs and 35% decrease in grid dependency, while keeping unserved critical loads below 3%. Compared to conventional rule-based methods, the proposed strategy offers improved scalability, adaptability, and resilience, highlighting its practical potential for deployment in smart energy systems.

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Cite This Study

Amar et al. (2025) studied this question.

synapsesocial.com/papers/68d44c3431b076d99fa553bdhttps://doi.org/10.3390/pr13092883
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