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Performance evaluation of grid-forming battery energy storage systems for stability enhancement in solar PV plants
Lina Alhmoud1, Moath Bani Fayyad2, Mohammad Tamimi3
1Electrical Power Engineering Department, Hijjawi Faculty for Engineering Technology, Yarmouk University, Irbid, 21163, Jordan. lina.hmoud@yu.edu.jo.
Abstract:
High-penetration solar photovoltaic (PV) systems pose challenges for grid stability and reliability due to low inertia and voltage support. Battery energy storage systems (BESS) with grid-forming (GFM) control can emulate synchronous generators and provide fast frequency and voltage support. This paper evaluates a 100 MW PV plant co-located with a 60 MWh BESS (35 MW power), corresponding to an approximate discharge duration of 1.7 h at full power, under a range of operating and contingency scenarios (normal operation, large PV power fluctuations, load steps, grid outages, and faults). Time-domain simulations evaluate the dynamic response of the BESS inverter in GFM modes under different grid strengths. The analysis assesses compliance with IEEE Std. 2800-2022 performance requirements (fault ride-through, reactive support, frequency response, etc.). In all cases, the grid-forming control provided immediate active/reactive support, mitigated voltage sags, and met IEEE-2800 fault-ride-through requirements. These results demonstrate that the proposed GFM BESS significantly enhances transient stability and ride-through performance in high-PV plants, especially under weak-grid conditions.
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