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References

1 
S. H. Jung, S. Y. Hong, J. S. Park, S. W. Choi, 2015, A 3.3kW Bi-directional EV Charger with V2G and V2H function, The Transactions of korean institute of power electronics, Vol. 20, No. 1, pp. 31-37DOI
2 
L. Gill, T. Ikari, T. Kai, B. Li, K. Ngo, D. Dong, 2019, Medium Voltage Dual Active Bridge Using 3.3 kV SiC MOSFETs for EV Charging Application, 2019 IEEE Energy Conversion Congress and Exposition (ECCE), pp. 1237-1244DOI
3 
S. Semsar, T. Soong, P. W. Lehn, 2022, On-board single- phase integrated electric vehicle charger with V2G functionality, IEEE Trans. Power Electron., Vol. 35, No. 11, pp. 12072-12084DOI
4 
S. A. Assadi, H. Matsumoto, M. Moshirvaziri, M. Nasr, M. S. Zaman, O. Trescases, 2020 April, Active Saturation Mitigation in High Density Dual Active Bridge DC-DC Converter for On-Board EV Charger Applications, IEEE Transactions on Power Electronics, Vol. 35, No. 4, pp. 4376-4387DOI
5 
M. Nasr, K. Gupta, C. da Silva, C. H. Amon, O. Trescases, 2018 Mar, SiC based on-board EV power-hub with high- efficiency dc transfer mode through ac port for vehicle- to-vehicle charging, in Proc. IEEE Appl. Power Electron. Conf. Expo., Vol. , No. , pp. 3398-3404DOI
6 
J. Hiltunen, V. Vaisanen, R. Juntunen, P. Silventoinen, 2015, Variable frequency phase shift modulation of a dual active bridge converter, IEEE Trans. Power Electron., Vol. 30, No. 12, pp. 7138-7148DOI
7 
K. S. Kim, H. Y. Cha, 2020, Novel Voltage Balancer for Half-Bridge Configuration DAB Converter, The transactions of The Korean Institute of Electrical Engineers, Vol. 69, No. 6, pp. 887-894Google Search
8 
M. N. Kheraluwala, R. W. Gascoigne, D. M. Divan, E. D. Baumann, 1992, Performance characterization of a high-power dual active bridge DC-to-DC converter, in IEEE Transactions on Industry Applications, Vol. 28, No. 6, pp. 1294-1301DOI
9 
F. Krismer, J. W. Kolar, July 2012, Efficiency-Optimized High- Current Dual Active Bridge Converter for Automotive Applications, in IEEE Transactions on Industrial Electronics, Vol. 59, No. 7, pp. 2745-2760DOI
10 
S. Shao, H. Chen, X. Wu, J. Zhang, K. Sheng, 2019, Circulating Current and ZVS-on of a Dual Active Bridge DC-DC Converter: A Review, IEEE Access, Vol. 7, pp. 50561-50572DOI
11 
B. Zhao, Q. Yu, W. Sun, 2012, Extended-phase-shift control of isolated bidirectional DC-DC converter for power distribution in micro-grid, IEEE Trans. Power Electron., Vol. 27, No. 11, pp. 4667-4680DOI
12 
A. Tong, L. Hang, G. Li, X. Jiang, S. Gao, 2018, Modeling and analysis of a dual active bridge isolated bidirectional DC/DC converter to minimize RMS current with whole operating range, IEEE Trans. Power Electron., Vol. 33, No. 6, pp. 5302-5316DOI
13 
H. Shi, H. Wen, J. Chen, Y. Hu, L. Jiang, G. Chen, 2017, Minimum-reactive power scheme of dual-active-bridge DC–DC converter with three-level modulated phase- shift control, IEEE Trans. Ind. Appl., Vol. 53, No. 6, pp. 5573-586DOI
14 
X. Huang, Z. Liu, Q. Li, F. C. Lee, 2014, Evaluation and Application of 600 V GaN HEMT in Cascode Structure, in IEEE Transactions on Power Electronics, Vol. 29, No. 5, pp. 2453-2461DOI
15 
H. J. Choi, W. B. Lee, J. H. Jung, 2017, Practical Design Methodology of Dual Active Bridge Converter as Isolated Bi-directional DC-DC Converter for Solid State Transformer, The Transactions of korean institute of power electronics, Vol. 22, No. 2, pp. 102-108DOI