Mitigating Duty Cycle Limitation and Maximizing DC Voltage Gain in Switch Mode Power Supplies Utilizing Tapped-Inductor Topology: A Case Study with Buck Converter Analysis
Öz
Anahtar Kelimeler
Kaynakça
- [1] P. Azer, A. Emadi. "Generalized state space average model for multi-phase interleaved buck, boost and buck-boost DC-DC converters: Transient, steady-state and switching dynamics." IEEE Access, vol. 8, 2020, pp. 77735-77745.
- [2] F. Musavi, W. Eberle. "Overview of wireless power transfer technologies for electric vehicle battery charging." IET Power Electronics, vol. 7, 1, 2014, pp. 60-66.
- [3] Y. Wang, O. Lucia, Z. Zhang, Y. Guan, D. Xu. "Review of very high frequency power converters and related technologies." IET Power Electronics, vol. 13, 9, 2020, pp. 1711-1721.
- [4] P. Alavi, E. Babaei, P. Mohseni, V. Marzang. "Study and analysis of a DC-DC soft-switched buck converter." IET Power Electronics, vol. 13, 7, 2020, pp. 1456-1465.
- [5] G. M. Sung, C. T. Lee, Z. L. Chen. "Buck converter IC for brushless DC motor drive using voltage-mode PWM controller." IET Power Electronics, vol. 13, 12, 2020, pp. 2547–2554.
- [6] A. Chadha, A. Ayachit, D. K. Saini, M. K. Kazimierczuk. "Steady-state analysis of PWM tapped-inductor buck DC-DC converter in CCM." IEEE Texas Power Energy Conference (TPEC), College Station, TX, USA, 2018.
- [7] B. J. Tucker. "Understanding output voltage limitations of DC/DC buck converters." Analog Applications Journal, 2008, pp. 11–14.
- [8] V. Michal. "Dynamic duty-cycle limitation of the boost DC/DC converter allowing maximal output power operations." International Conference on Applied Electronics (AE), Pilsen, Czech Republic, 2016.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Elektrik Mühendisliği (Diğer)
Bölüm
Araştırma Makalesi
Erken Görünüm Tarihi
13 Ocak 2025
Yayımlanma Tarihi
7 Ocak 2025
Gönderilme Tarihi
29 Temmuz 2024
Kabul Tarihi
16 Ekim 2024
Yayımlandığı Sayı
Yıl 2024 Cilt: 12 Sayı: 4