A Grid-following and Grid-forming Energy Storage Co-planning Method for Enhancing Renewable Energy Accommodation and Small-signal Stability of Power Systems
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A Grid-following and Grid-forming Energy Storage Co-planning Method for Enhancing Renewable Energy Accommodation and Small-signal Stability of Power Systems
FENG Jianzhou, HU Zechun. A Grid-following and Grid-forming Energy Storage Co-planning Method for Enhancing Renewable Energy Accommodation and Small-signal Stability of Power Systems[J]. 2025, 49(10): 4103-4113.
DOI:
FENG Jianzhou, HU Zechun. A Grid-following and Grid-forming Energy Storage Co-planning Method for Enhancing Renewable Energy Accommodation and Small-signal Stability of Power Systems[J]. 2025, 49(10): 4103-4113. DOI: 10.13335/j.1000-3673.pst.2025.0672.
A Grid-following and Grid-forming Energy Storage Co-planning Method for Enhancing Renewable Energy Accommodation and Small-signal Stability of Power Systems
Many wind and photovoltaic power sources are integrated into the grid via grid-following power electronic converters
which may induce small-signal oscillations and threaten the secure operation of power systems. Emerging energy storage systems not only mitigate the volatility of renewable energy but also enhance system stability through grid-forming control. This paper first derives the generalized operational short-circuit ratio (gOSCR) and its critical value for the coordinated planning of grid-following and grid-forming energy storage systems
serving as indicators of small-signal stability. To address the highly nonlinear characteristics of gOSCR and its critical threshold
a machine learning-based surrogate model is developed and embedded into a multi-type energy storage planning model that simultaneously considers the integration of renewable energy. Furthermore
the proposed joint planning model is reformulated as a mixed-integer linear programming (MILP) problem to improve computational efficiency. Finally
simulations on a 4-bus system and the IEEE 39-bus system validate the effectiveness of the proposed method.