Aug 2026· Electrotehnică, electronică, automatică· 0 citations
Abstract
The integration of volatile renewable energy sources, such as photovoltaic (PV) systems, alongside battery energy storage systems (BESS) into DC micro-grids presents significant control challenges, primarily in ensuring DC bus voltage stability and optimizing long-term energy management. This paper introduces a novel synergistic dual-loop control architecture engineered to address these challenges. The inner control loop leverages the structural properties of differential flatness, with robust feedforward compensation, to achieve rapid and precise regulation of the DC bus voltage under disturbances. Complementing this, the outer loop employs a Q-learning-based reinforcement learning (RL) algorithm for adaptive energy resource management. The RL agent learns an optimal policy for BESS dispatch by considering real-time dynamics, including PV availability, fluctuating load profiles, battery state-of-charge (SOC), and voltage deviations, without requiring an explicit model. Validation through 24-hour simulations confirms the efficacy of the proposed architecture. The RL agent exhibits successful convergence with stable cumulative rewards. The integrated system demonstrates superior performance, maintaining tight voltage regulation with a standard deviation of 1.615 around the 120 V set-point, effective SOC management (average SOC 36.53 without limit violations), and efficient resource utilization enabling 51.49 % PV penetration. These results highlight the potential of combining nonlinear control with model-free RL to enhance hybrid micro-grid performance, resilience, and autonomy.
In grid- connected applications featuring a large share of renewable generation, the output fluctuations of photovoltaic (PV) generation deteriorate the power quality of grid-connected systems, and the improper power allocation within the hybrid energy storage system (HESS) further degrades the operational performance....
Yu-Yan Liu, Yi-Hua Zhu, Chao Luo et al.· International Conference on...· 0 citations
In battery energy storage systems (BESSs) in microgrids, traditional proportional–integral (PI) controllers remain a popular choice for management. The PI-based system often fails during sharp transients and under sudden shifts in solar irradiance or load demands. PI-based systems typically exhibit sluggish recovery ti...
Haider H. Ali, Basil H. Jasim, A. Alqurashi et al.· Engineer· 0 citations
Abstract A hybrid energy storage system (HESS) plays a crucial role in stabilizing DC microgrids against power fluctuations from renewable sources and loads. To mitigate severe bus voltage deviations under complex disturbances, this paper proposes a composite control method integrating a super-twisting sliding mode con...
Shu-Fan Wang, Bo Wei· International Journal of Eme...· 0 citations
The proposed DT-DRL framework establishes a closed-loop cyber–physical architecture in which continuously synchronized Digital Twin states are directly incorporated into a Proximal Policy Optimization (PPO)-based decision-making process to jointly minimize operating cost, voltage deviation, and battery degradation whil...
M. Le· International journal of res...· 0 citations
Most existing grid-tied PV-battery systems rely on static charge-discharge schedules, typically involving daytime battery charging and nighttime discharging, which lead to inefficient energy storage utilization and reduced overall economic performance. Traditional energy management techniques, primarily designed in...
Jin-Qi Du, Peng Ye, He-Jiang Qian et al.· Microelectronics internation...· 0 citations
Stringent ramp-rate constraints due to high solar photovoltaic (PV) penetration in power systems challenge conventional smoothing techniques, where capacity saturation and device degradation become critical bottlenecks. In this context, PV smoothing is posed as a constrained dispatch objective to shape the grid-facing...
Madiha Akbar, Mads R. Almassalkhi, Hamid R. Ossareh· Conference on Control Techno...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.