A simple soft-switched buck converter without implementing auxiliary switch

被引:0
作者
Iman Talebian
Peyman Alavi
Ebrahim Babaei
Arash Khoshkbar-Sadigh
机构
[1] University of Tabriz,Faculty of Electrical and Computer Engineering
[2] Near East University,Engineering Faculty
[3] Pennsylvania State University,School of Electrical Engineering and Computer Science
来源
Electrical Engineering | 2022年 / 104卷
关键词
Conventional buck converter; Soft-switching method; Zero voltage switching; Zero current switching;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, a simple auxiliary circuit is utilized to provide soft-switching condition for the conventional buck converter. The utilized auxiliary circuit contains no switches and without significant additional losses eliminates switching losses completely. This structure contains just one switch which is the conventional buck converter's main switch, and turns on under ZVS condition, and turns off under near to soft-switching condition. Furthermore, the only utilized power diode turns off under ZCS condition. Consequently, switching and reverse recovery losses have been approximately eliminated and the proposed structure operates with high power efficiency. Due to the mentioned features, this converter can be an optimal structure for high-efficiency required applications. In this paper, the operational modes, designing components, power efficiency, and comparison results are discussed in detail. In addition, in order to verify the claimed features, a laboratory prototype of the proposed converter at 175 W output power and 185 kHz frequency is assembled in the laboratory and the results have been investigated completely. In addition, in order to investigate the soft-switching operation of the analyzed structure at light loads, the soft-switching waveforms are achieved for 100 W and 50 W output powers under the same switching frequency.
引用
收藏
页码:3119 / 3135
页数:16
相关论文
共 46 条
  • [1] Thumma R(2018)A new high-voltage gain non-isolated zero-current-switching bidirectional DC–DC converter Arab J Sci Eng 43 2713-2723
  • [2] Bhajana VVSK(2020)A wide load range ZVS high voltage gain hybrid DC–DC boost converter based on diode-capacitor voltage multiplier circuit Int Trans Electr Energy Syst 30 e12171-2057
  • [3] Drabek P(2016)A novel active auxiliary circuit for efficiency enhancement integrated with synchronous buck converter Int J Circuit Theory Appl 44 2043-3605
  • [4] Jara M(2015)A new non-isolated ZCS bidirectional buck–boost DC–DC converter for energy storage applications in electric vehicles Arab J Sci Eng 40 3595-727
  • [5] Priyadarshi A(2019)An ultra-high step-up DC–DC converter with extendable voltage gain and soft switching capability IEEE Trans Ind Electron 9 719-95
  • [6] Kar PK(2016)Zero-voltage-switching buck converter with low-voltage stress using coupled inductor IET Power Electron 51 89-260
  • [7] Karanki SB(2004)An improved ZCT-PWM DC–DC converter for high-power and frequency applications IEEE Trans Ind Electron 10 251-4891
  • [8] Panda AK(2017)ZVT-PWM DC–DC boost converter with active snubber cell IET Power Electron 28 4885-190
  • [9] Sarode S(2013)An improved soft-switching buck converter with coupled inductor IEEE Trans Power Electron 66 183-597
  • [10] Tejavathu R(2019)Soft-switched nonisolated high step-down converter IEEE Trans Ind Electron 61 591-4815