Open Access
Issue |
Sci. Tech. Energ. Transition
Volume 80, 2025
|
|
---|---|---|
Article Number | 39 | |
Number of page(s) | 19 | |
DOI | https://doi.org/10.2516/stet/2025016 | |
Published online | 03 June 2025 |
- Gupta R.K., Shankar R., Kumar A. (2025) Sustainable energy optimization in dual-area systems: integrating floating solar with hydroelectric power using hCIGWO and advanced 2-DOF controllers, J. Renew. Sustain. Energy 17, 1, 016301. [CrossRef] [Google Scholar]
- Ang T.-Z., Salem M., Kamarol M., Das H.S., Nazari M.A., Prabaharan N. (2022) A comprehensive study of renewable energy sources: classifications, challenges and suggestion. Energy Strateg. Rev. 43, 100939–100939. [CrossRef] [Google Scholar]
- Xie W., Yuan Y., Zheng X., Chen H., Liu J., Zhang C. (2025) Application of voltage optimization strategy for rotary power flow controllers in loop closing of distribution networks, Electronics 14, 630. [CrossRef] [Google Scholar]
- Zhai J., Guo L., Wang Z., Li X., Liu Y., Wang C. (2025) Coordinated frequency regulation of active distribution networks considering dimension-augmented power flow constraints, IEEE Trans. Sustain. Energy 16, 138–148. [CrossRef] [Google Scholar]
- Mohamed A.A., Kamel S., Hassan M.H., Dominguez-Garcia J.L. (2024) Optimal power flow incorporating renewable energy sources and facts devices: a chaos game optimization approach, IEEE Access 12, 23338–23362. [CrossRef] [Google Scholar]
- Li X., Xie K., Shao C., Hu B., Huang W., Pan C., Du X. (2025) A sensitivity-based rolling operational reliability evaluation that follows the changing available generation capacity of renewable energies, IEEE Trans. Power Syst. 40, 166–177. [CrossRef] [Google Scholar]
- Mishra A., Chatterjee K. (2023) Flicker attenuation using FACTS device for DFIG-based WECS connected to distribution network, IEEE Syst. J. 17, 282–293. [CrossRef] [Google Scholar]
- Marrero-Vera S., Hernandez-Tejera M., Nuez-Pestana I. (2022) Pareto optimality for FACTS devices placement considering demand variations, Electr. Power Syst. Res. 211, 108177–108177. [CrossRef] [Google Scholar]
- Roy C., Chatterjee D., Bhattacharya T. (2023) Control of a hybrid shunt FACTS compensator for voltage collapse prevention in interconnected EHV power transmission systems, IEEE J. Emerg. Sele. Topics Ind. Electron. 4, 538–548. [Google Scholar]
- Mohamed A.A., Kamel S., Hassan M.H.H., Ibrahim A.A.A. (2023) Northern goshawk optimization algorithm for optimal power flow with FACTS devices in wind power integrated electrical networks, Electric Power Comp. Syst. 52, 1293–1315. [Google Scholar]
- Kamarposhti M.A., Colak I., Iwendi C., Band S.S., Ibeke E. (2022) Optimal coordination of PSS and SSSC controllers in power system using ant colony optimization algorithm, J. Circuits Syst. Comput. 31, 4, 2250060. [CrossRef] [Google Scholar]
- Gong C., Sou W.K., Lam C.S. (2023) Reinforcement learning based sliding mode control for a hybrid-STATCOM, IEEE Trans. Power Electron. 38, 6795–6800. [CrossRef] [Google Scholar]
- Rezaeian-Marjani S., Miralizadeh Jalalat S., Tousi B., Galvani S., Talavat V. (2023) A probabilistic approach for optimal operation of wind‐integrated power systems including UPFC, IET Renew. Power Gen. 17, 706–724. [CrossRef] [Google Scholar]
- Yao C., Zhang Y. (2024) Direct power flow controller with continuous full regulation range, IEEE Trans. Power Electron. 39, 5449–5461. [CrossRef] [Google Scholar]
- Halphen L., Panamá (2022) STATCOM in Panama – First application of this technology in Central America, in 2022 IEEE 40th Central America and Panama Convention (CONCAPAN), Panama, 9–12 November, IEEE. https://doi.org/10.1109/CONCAPAN48024.2022.9997695. [Google Scholar]
- Qiufan Y., Ting D., Hengxin H., Xia C., Fengbo T., Zhicheng Z., Yang X., C Shu. (2020) Model predictive control of MMC-UPFC under unbalanced grid conditions, Int. J. Elec. Power Energy Syst. 117, 105637. [CrossRef] [Google Scholar]
- Sen K.K., Mey L.S. (2021) Power flow control solutions for a modern grid using smart power flow controllers, IEEE Press, Piscataway, NJ, USA. [CrossRef] [Google Scholar]
- Gasim Mohamed S.E. (2020) Power flow control capability of the power transistor-assisted Sen transformer and the unified power flow controller: a close comparison, IET Gener. Transm. Distrib. 4, 15, 3033–3041. [CrossRef] [Google Scholar]
- Jerbić G. (2022) Application of phase shifting transformers in the Croatian power supply system, J. Energy Energija 56, 216–231. [CrossRef] [Google Scholar]
- Albrechtowicz P., Rozegnał B., Cisek P. (2022) Comparison of phase-shifting transformers properties, Energies 15, 17, 6224. https://doi.org/10.3390/en15176224 [CrossRef] [Google Scholar]
- Yu M., Yuan J., Li Z., Li F., Yang X., Zhang W., Xu S., Mei J. (2022) Power flow optimization and economic analysis based on high voltage phase shifting transformer, Energies 15, 2363. [CrossRef] [Google Scholar]
- Bu B., Han H., Zhou C., Feng J. (2021) Electromagnetic transient model of two-core Sen Transformer based on UMEC, Power Syst. Technol. 45, 3283–3290. [Google Scholar]
- Yang W., Pan Y., Qiu Z., Zhai G. (2023) Electromagnetic transient model and field-circuit coupling numerical calculation of Sen transformer based on finite-element method, Electr. Power Syst. Res. 214, 108941. [CrossRef] [Google Scholar]
- Bu L., Han S., Feng J., Pan Y. (2022) Unified magnetic equivalent circuit-based model of two-core Sen transformer for low-frequency electromagnetic transients and its numerical calculation, Int. J. Electrical Power Energy Syst. 141, 108184. [CrossRef] [Google Scholar]
- Li W., Han S., Guo X., Xie S., Rong N. (2023) A reluctance-based electromagnetic transient model for the Sen transformer with inter-turn fault, Int. J. Electrical Power Energy Syst. 155, 109606–109606. [Google Scholar]
- Zhang N., Li H., Jin X., Bi C., Wang J. (2025) Comparative study of voltage and control characteristics of two-core and single-core step-up/down thyristor-controlled phase-shifting transformers, Energies 18, 837. [CrossRef] [Google Scholar]
- Yan X., Peng W., Wang Y., Aslam W., Shao C., Li T. (2022) Flexible loop closing control method for an active distribution network based on dual rotary phase shifting transformers, IET Gener. Transm. Distrib. 16, 4204–4214. [CrossRef] [Google Scholar]
- Zhang J., Liu Y., Zhou J., Zang J., Shi G., Wang J., Li Y., Yang X. (2024) A novel multiport transformer-less unified power flow controller, IEEE Trans. Power Electron. 39, 4278–4290. [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.