P-type non-isolated boost DC-DC converter with high voltage gain and extensibility for DC microgrid applications

被引:17
作者
Mohammadi, Farid [1 ]
Farhadi-Kangarlu, Mohammad [2 ]
Rastegar, Hassan [1 ]
Khorsandi, Amir [1 ]
Pichan, Mohammad [3 ]
机构
[1] Amirkabir Univ Technol, Fac Elect Engn, Tehran, Iran
[2] Urmia Univ, Fac Elect & Comp Engn, Orumiyeh, Iran
[3] Arak Univ Technol, Fac Elect Engn, Arak, Iran
关键词
continues current mode (CCM); discontinuous current mode (DCM); microgrids; non-isolated step-up DC-DC converter; voltage gain; PWM SWITCH; INDUCTOR; MODEL;
D O I
10.1002/cta.2701
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, the concept of converter design, using the least number of elements and achieving high voltage gain at the low duty cycle, is proposed for the microgrids. One of the important issues in the microgrids is boosting the low voltage output of sources to the utility voltage level. Therefore, the step-up DC-DC converters are widely used in these systems to attain the utility voltage. The benchmarking of the converters mainly in terms of the voltage gain, efficiency, the number of active and passive components, stresses on semiconductors, and simplicity is considered. In this paper, a new extendable non-isolated boost DC-DC converter is presented. Comparing the conventional boost converter, the basic structure of the proposed converter has a high voltage gain and reduced stress on the switch. To increase the voltage gain, the basic structure of the proposed converter can be easily extended. The modulation technique employed is high-frequency pulse-width modulation (PWM). The detailed analysis of the proposed converter in continuous current mode (CCM) and discontinuous current mode (DCM) is presented. The relations between currents and voltages and the voltage gain in CCM and DCM are obtained. Experimental results are carried out to verify theoretical concepts by using the hardware prototype.
引用
收藏
页码:1812 / 1836
页数:25
相关论文
共 27 条
[1]   A new topology for nonisolated multiport zero voltage switching dc-dc converter [J].
Babaei, Ebrahim ;
Saadatizadeh, Zahra ;
Heris, Pedram Chavoshipour .
INTERNATIONAL JOURNAL OF CIRCUIT THEORY AND APPLICATIONS, 2018, 46 (06) :1204-1227
[2]   An interleaved high step-up DC-DC converter with double boost paths [J].
Chen, Yie-Tone ;
Lin, Wei-Cheng ;
Liang, Ruey-Hsun .
INTERNATIONAL JOURNAL OF CIRCUIT THEORY AND APPLICATIONS, 2015, 43 (08) :967-983
[3]   A Review of Galvanically Isolated Impedance-Source DC-DC Converters [J].
Chub, Andrii ;
Vinnikov, Dmitri ;
Blaabjerg, Frede ;
Peng, Fang Zheng .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2016, 31 (04) :2808-2828
[4]   Ultra Step-Up DC-DC Converter With Reduced Switch Stress [J].
Fardoun, Abbas A. ;
Ismail, Esam H. .
IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2010, 46 (05) :2025-2034
[5]   Step-Up DC-DC Converters: A Comprehensive Review of Voltage-Boosting Techniques, Topologies, and Applications [J].
Forouzesh, Mojtaba ;
Siwakoti, Yam P. ;
Gorji, Saman A. ;
Blaabjerg, Frede ;
Lehman, Brad .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2017, 32 (12) :9143-9178
[6]  
Gaubert JP, 2009, 13 EUR C POW EL APPL, P1
[7]   A High Voltage Gain DC-DC Converter Integrating Coupled-Inductor and Diode-Capacitor Techniques [J].
Hu, Xuefeng ;
Gong, Chunying .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2014, 29 (02) :789-800
[8]   Voltage-lift split-inductor-type boost converters [J].
Jiao, Y. ;
Luo, F. L. ;
Bose, B. K. .
IET POWER ELECTRONICS, 2011, 4 (04) :353-362
[9]   Voltage-lift-type switched-inductor cells for enhancing DC-DC boost ability: principles and integrations in Luo converter [J].
Jiao, Y. ;
Luo, F. L. ;
Zhu, M. .
IET POWER ELECTRONICS, 2011, 4 (01) :131-142
[10]   High Step-Up DC-DC Converter With Minimum Output Voltage Ripple [J].
Maheri, Hamed Mashinchi ;
Babaei, Ebrahim ;
Sabahi, Mehran ;
Hosseini, Seyed Hossein .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2017, 64 (05) :3568-3575