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Performance Analysis and Comparative Study of Different Types of DC-DC Converters

    Nilotpal Kapri

International Research Journal on Advanced Science Hub, 2019, Volume 1, Issue 2, Pages 5-10
10.47392/irjash.2019.12

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Abstract

This paper presents the design, analysis and comparison of different types of dc-dc converters. Now days due to lack of conventional energy sources like coal, petrol, diesel etc., demand of electricity is rising day to day. To fulfill this demand of electrical energy alternative methods are very much important now. The researchers stand motivating in solar energy generation, dc-dc converters etc. In this paper Performance analysis of different dc/dc converters and comparative study of them is focused. All converters will work in Continuous conduction mode. The performance analysis of different converters (Buck, Boost, Buck Boost, CUK, SEPIC, Positive Output Super-Lift Luo Converter) and comparison of those converter’s simulation results discussed using MULTISIM 14.0.
Keywords:
    Dc-dc converter non-isolated converter Renewable energy Boost Converter Buck Converter Buck boost converter CUK Converter SEPIC converter Positive Output Super-Lift Luo Converter MULTISIM
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(2020). Performance Analysis and Comparative Study of Different Types of DC-DC Converters. International Research Journal on Advanced Science Hub, 1(2), 5-10. doi: 10.47392/irjash.2019.12
Nilotpal Kapri. "Performance Analysis and Comparative Study of Different Types of DC-DC Converters". International Research Journal on Advanced Science Hub, 1, 2, 2020, 5-10. doi: 10.47392/irjash.2019.12
(2020). 'Performance Analysis and Comparative Study of Different Types of DC-DC Converters', International Research Journal on Advanced Science Hub, 1(2), pp. 5-10. doi: 10.47392/irjash.2019.12
Performance Analysis and Comparative Study of Different Types of DC-DC Converters. International Research Journal on Advanced Science Hub, 2020; 1(2): 5-10. doi: 10.47392/irjash.2019.12
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[1] Kwasinski Alexis, “Identification of feasible topologies for multiple input DC to DC converters”, IEEE Trans Power Electron 2009;24(3):856–61.

[2] Peng Fang Z, “A new ZVS bidirectional DC to DC converter for fuel cell and battery application”, IEEE Trans Power Electron 2004;19(1):54–65.

[3] Xu Haiping, Kong Li and Xuhui Wen, “Fuel cell power system and high power DC to DC converter”, IEEE Trans Power Electron 2004;19(5):1250–5.

[4] Brekken TKA, Hapke HM, Stillinger C and Prudell J, “Machines and drives comparison for low power renewable energy and oscillating applications”, IEEE Trans Energy Convers 2010; 25(4):1162– 70.

[5] Luo Fang Lin and Hong Ye, “Hybrid split capacitors and split inductors applied in positive output super-lift Luo converters”, IET Power Electron. 2013; 6(9): 1759–68.

[6] International Journal of Engineering Research and Applications (IJERA), Vol. 2, Issue 6, November- December 2012, pp.657-663.

[7] Positive Output Elementary Superlift Luo Converter for PV Applications Dr.G.Justin Sunil Dhas1, Dr.D.Anto Sahaya Dhas2, and Sreesna M K3 3rd International conference on Innovative Engineering Technologies (ICIET'2016) August 5-6, 2016 Bangkok (Thailand).

[8] Myers Ira T, Baumann Eric D, Kraus Robert and Hammound Ashmad N, “Multi megawatt inverter / converter technology for space power applications”, Proceeding of the AIP conference, vol.246;1992. pp.401–409

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