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References

1 
J. Lim, K. Kim, 2025, Enhancement of maximum power transfer capability and voltage stability in urban metro station power system using reactive power compensation, The Transactions of the Korean Institute of Electrical Engineers, Vol. 74, No. 11, pp. 1763-1774DOI
2 
S. Das, D. Chatterjee, S. K. Goswami, 2018, A reactive power compensation scheme for unbalanced four-wire system using virtual Y-TCR model, IEEE Transactions on Industrial Electronics, Vol. 65, No. 4, pp. 3210-3219DOI
3 
S. Mukhopadhyay, D. Maiti, A. Banerji, S. K. Biswas, N. K. Deb, 2017, A new harmonic reduced three-phase thyristor-controlled reactor for static VAr compensators, IEEE Transactions on Industrial Electronics, Vol. 64, No. 9, pp. 6898-6907DOI
4 
S. Mukhopadhyay, D. Maiti, A. Banerji, S. K. Biswas, N. K. Deb, 2017, Dual delta bank TCR for harmonic reduction in three-phase static var controllers, IEEE Transactions on Industry Applications, Vol. 53, No. 6, pp. 5164-5172DOI
5 
J. Lee, G. Lee, 2025, Research on reactive power requirement compensation for offshore wind farm integration considering grid code, The Transactions of the Korean Institute of Electrical Engineers, Vol. 74, No. 6, pp. 1058-1064DOI
6 
H. Kim, H. Lee, Y. Kim, S. Kang, D. You, E. J. Hong, S. Kang, C. Han, 2024, Stochastic optimization-based coordinated operation strategy of MVDC and energy storage systems in distribution networks, The Transactions of the Korean Institute of Electrical Engineers, Vol. 73, No. 12, pp. 2165-2174DOI
7 
S. Mukhopadhyay, D. Maiti, S. K. Biswas, A. Banerji, N. K. Deb, 2018, A wide-range TCR with low-current THD by optimized combination of coupled reactors and thyristor switching and control, IEEE Transactions on Industrial Electronics, Vol. 65, No. 5, pp. 3657-3665DOI
8 
S. Das, D. Chatterjee, S. K. Goswami, 2016, A GSA-based modified SVC switching scheme for load balancing and source power factor improvement, IEEE Transactions on Power Delivery, Vol. 31, No. 5, pp. 2072-2082DOI