Tie-Line Power Frequency Stability Control of an Interconnected Hybrid Power System Using a Virtual Inertia Controller by the GWO Algorithm
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-7216-6_29
Reference39 articles.
1. Rahman FS, Kerdphol T, Watanabe M, Mitani Y (2018) A study on the placement of virtual synchronous generator in a two-area system. In: Proceedings of IEEE innovative smart grid technologies Asia, pp 782–786
2. Kerdphol T, Rahman FS, Mitani Y, Hongesombut K, Küfeoğlu S (2017) Virtual inertia control-based model predictive control for microgrid frequency stabilization considering high renewable energy integration. Sustainability 9(5):773
3. Fang J, Li H, Tang Y, Blaabjerg F (2018) Distributed power system virtual inertia implemented by grid-connected power converters. IEEE Trans Power Electron 33(10):8488–8499
4. Gulzar MM, Iqbal M, Shahzad S, Muqeet HA, Shahzad M, Hussain MM (2022) Load frequency control (LFC) strategies in renewable energy-based hybrid power systems: a review. Energies 15(10):3488. https://doi.org/10.3390/en15103488
5. Gupta A, Manocha AK (2021) Designing of 2-degree of freedom load frequency controller for power system using novel improved pole clustering and genetic method of reduced-order modelling. Int Trans Electr Energy Syst 31:e13063
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