Aug 2026· Sustainability· Vol 18, pp. 8471· 0 citations· 10 references
Abstract
Modern power systems increasingly depend on energy storage devices to manage fluctuations in renewable generation and load demand. Coordinating multiple heterogeneous storage units in a grid-level system while enforcing individual state-of-charge (SoC) limits constitutes a complex, high-dimensional control problem that cannot be resolved by conventional proportional-sharing schemes. This work formulates the Distributed Optimal Energy Management (DOEM) problem for a grid comprising n parallel storage units with power-dependent efficiency and heterogeneous capacities. Optimality conditions are derived using Pontryagin’s Minimum Principle (PMP) and a smooth penalty function is introduced to handle hard SoC constraints without state-space discretisation. For the practically important class of lossless storage devices, an explicit closed-form control law is obtained, in which each unit is dispatched proportionally to its storage capacity. Numerical validation is performed on the Israeli power grid, modelling three pumped-hydro systems with a combined capacity of 8.0 GWh, using MATLAB/Simulink R2018b. Across the base net-load scenario and four additional load profiles, the cost achieved by the proposed method matches the dynamic programming (DP) benchmark within 1.1%, while the maximum state-of-charge violation is limited to 0.64% of total capacity at the default penalty setting. Computationally, the proposed update requires only 2.21 s for nine storage units compared to 59.30 s for DP, a 26.8-fold speedup, and scales with O(n) arithmetic operations per time step. The results confirm a clear pathway to optimal, safe, and scalable real-time control of large-scale heterogeneous energy storage ensembles.
Renewable energy power plants are increasingly expected to provide ancillary services to the grid. Yet, the variability of sources such as solar photovoltaics requires additional operational flexibility to deliver these services. In this context, hybrid energy storage systems (HESSs) offer an appropriate solution, beca...
J. D. Rios-Peñaloza, Milan Prodanović, Javier Roldán-Pérez· 0 citations
: The increasing penetration of renewable energy sources has made microgrids an important platform for local energy consumption, resilient power supply and flexible grid interaction. However, the variability of photovoltaic and wind generation, together with frequent changes in load demand and operating mode, places hi...
Guo-Ying Pan, Xue-Bin Li, Shi-Hao Wei et al.· Journal of Electrotechnology...· 0 citations
Background The increasing integration of renewable energy sources (RES) in power systems introduces operational challenges due to their intermittent and difficult-to-predict generation. Hybrid Energy Storage Systems (HESS) can mitigate these issues by providing flexibility and stability to microgrids. However, efficien...
Markel Azkue, A. Saez-de-Ibarra, Vincenzo Mascaro et al.· Open Research Europe· 0 citations
The large-scale integration of renewable energy generation into the grid has led to increased frequency fluctuations in the power grid. Distributed energy storage systems, with their rapid response times, serve as a critical resource for primary frequency regulation. Traditional constant-droop control cannot adjust the...
This study develops a conceptual architecture for a hybrid microgrid intended for energy-flow manage-ment under variable photovoltaic generation, limited energy storage, and possible utility-grid outages. The aim is to establish a consistent transition from the functional structure of the microgrid to a formalized simu...
D. Matushkin· Vidnovluvana energetika· 0 citations
Electrifying space heating with heat pumps (HP) and backup electric-resistance heaters (ERH) is incentivized to support decarbonization but increases voltage and thermal issues in distribution networks. Direct load control (DLC) of smart thermostats (ST) provide grid support, yet, to the best of our knowledge, existing...
Gustavo L. Aschidamini, G. Castiglio, M. Resener· 0 citations
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