Acknowledgement
Funding was provided by the Hebei Province Science Fund for Distinguished Young Scholars [Garnt no. E2020202140], the Hebei Provincial Central Government Guided Local Science and Technology Development Fund Project [Grant no. 216Z4401G], the Support Program (III) for 100 Outstanding Innovative Talents in Universities of Hebei Province [Grant no. SLRC2019025].
References
- Amiri, M., Farzanehfard, H., Adib, E.: A nonisolated ultrahigh step down DC-DC converter with low voltage stress. IEEE Trans. Ind. Electron 65(2), 1273-1280 (2018) https://doi.org/10.1109/TIE.2017.2733478
- Cheshmdehmam, D., Adib, E., Farzanehfard, H.: Soft-switched nonisolated high step-down converter. IEEE Trans. Ind. Electron 66(1), 183-190 (2019) https://doi.org/10.1109/TIE.2018.2829471
- Amir Sayed Fatahi, S., Esteki, M., Farzanehfard, H.: A soft switching interleaved high step-down converter with low voltage stress. In: 2021 12th Power Electronics, Drive Systems, and Technologies Conference, pp. 1-6 (2021)
- Chiu, H., Chen, C., Tsai, M., Tseng, C.: A novel isolated buck converter with output voltage ripple reduction by a complementary square-wave scheme. In: 2011 6th IEEE conference on industrial electronics and applications, pp. 1786-1790 (2011)
- Li, W.H., Li, W.C., He, X.N.: Isolated interleaved flyback-buck converter with inherent clamp scheme. Electron. Lett. 45(16), 853-854 (2019)
- Xia, Y., Ma, J., Xing, Y., Ji, Y., Chen, B., Wu, H.: A soft-switching isolated Buck-Boost converter with semi-active rectifier for wide output range application. In: 2019 IEEE Applied Power Electronics Conference and Exposition, pp. 1668-1673 (2019)
- Badawy, M.O., Sozer, Y., De Abreu-Garcia, J.A.: A novel control for a cascaded Buck-Boost PFC converter operating in discontinuous capacitor voltage mode. IEEE Trans. Ind. Electron 63(7), 4198-4210 (2016) https://doi.org/10.1109/TIE.2016.2539247
- Aguilar-Najar, R., Perez-Pinal, F., Lara-Salazar, G., Herrera- Ramirez, C., Barranco-Gutierrez, A.: Cascaded buck converter: a reexamination. In: 2016 IEEE Transportation Electrification Conference and Expo, pp. 1-5 (2016)
- Bang, T., Park, J.: Development of a ZVT-PWM Buck cascaded Buck-Boost PFC converter of 2 kW with the widest range of input voltage. IEEE Trans. Ind. Electron 65(3), 2090-2099 (2018) https://doi.org/10.1109/TIE.2017.2739703
- Yau, Y.T., Jiang, W.Z., Hwu, K.I.: Step-down converter with wide voltage conversion ratio. IET Power Electronics. 8(11), 2136-2144 (2015) https://doi.org/10.1049/iet-pel.2014.0919
- Zhao, X., Yeh, C., Zhang, L., Lai, J.: A high-frequency high-stepdown converter with coupled inductor for low power applications. In: 2017 IEEE Applied Power Electronics Conference and Exposition, pp. 2436-2440 (2017)
- Hwu, K.I., Jiang, W.Z., Yau, Y.T.: Ultrahigh step-down converter with active clamp. In: 2017 IEEE 3rd International Future Energy Electronics Conference and ECCE Asia, pp. 1291-1296 (2017)
- Soleymani, B., Adib, E.: A high step-down Buck converter with self-driven synchronous rectifier. IEEE Trans. Ind. Electron 67(12), 10266-10273 (2020) https://doi.org/10.1109/TIE.2019.2959454
- Zhu, M., Luo, F.L.: Series SEPIC implementing voltage-lift technique for DC-DC power conversion. IET Power Electronics. 1(1), 109-121 (2008) https://doi.org/10.1049/iet-pel:20060494
- Takiguchi, T., Koizumi, H.: Quasi-Z-source dc-dc converter with voltage-lift technique. In: Industrial Electronics Society, IECON 2013-39th Annual Conference of the IEEE (2013)
- Bhaskar, M.S., SreeramulaReddy, N., Kumar, R.K.P., Gupta, Y.B.S.S.: A novel high step-up DC-DC multilevel buckboost converter using voltage-lift switched-inductor cell. In: Proceedings of IEEE International Conference on Computer Communication and Systems, pp. 271-275 (2014)
- Kurdkandi, N.V., Farhadi, M., Babaei, E.: Design and analysis of a switched-capacitor DC-DC converter with variable conversion ratio. Int J Circuit Theory Appl. 48(10), 1638-1657 (2020) https://doi.org/10.1002/cta.2849
- DallaVecchia, M., VandenBroeck, G., Ravyts, S., Tant, J., Driesen, J.: A family of DC-DC converters with high step-down voltage capability based on the valley-fill switched capacitor principle. IEEE Trans. Ind. Electron 68(7), 5810-5820 (2021) https://doi.org/10.1109/TIE.2020.2998760
- Biswas, M., Majhi, S., Nemade, H.B.: Two-phase high efficiency interleaved buck converter with improved step-down conversion ratio and low voltage stress. IET Power Electronics. 12(15), 3942-3952 (2019) https://doi.org/10.1049/iet-pel.2019.0547
- Zhang, Y., Zhang, W., Gao, F., Gao, S., Rogers, D.J.: A switched-capacitor interleaved bidirectional converter with wide voltage-gain range for super capacitors in EVs. IEEE Trans. Power Electron. 35(2), 1536-1547 (2020) https://doi.org/10.1109/TPEL.2019.2921585
- Syrigos, S.P., Tatakis, E.C.: An improved switching technique for a non-isolated high step-down voltage ratio DC-DC converter. In: 2018 20th European Conference on Power Electronics and Applications, pp. 1-10 (2018)
- Cornea, O., Dan, H., Muntean, N.: Step-down switched-inductor hybrid DC-DC converter for small power wind energy conversion systems with hybrid storage. IEEE Access. 99, 1-1 (2020)
- Cornea, O., Pelan, O., Muntean, N.: Comparative study of buck and hybrid buck "switched-inductor" DC-DC converters. In: International Conference on Optimization of Electrical and Electronic Equipment (2012)