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AuthorBhaskar M.S.
AuthorAlammari R.
AuthorMeraj M.
AuthorPadmanaban S.
AuthorIqbal A.
Available date2020-04-01T09:45:58Z
Publication Date2019
Publication NameIEEE Transactions on Industry Applications
ResourceScopus
ISSN939994
URIhttp://dx.doi.org/10.1109/TIA.2019.2920807
URIhttp://hdl.handle.net/10576/13732
AbstractDC microgrid is gaining attraction and a recent trend in distribution power generation system due to penetration of renewables (especially photovoltaic or fuel cell). In this paper, a new triple-switch-triple-mode high step-up converter (TSTM-HS converter) is presented for dc microgrid applications. In the proposed converter, voltage lift technique is employed and range of duty cycle is extended by incorporating an additional switch in converter circuitry. By doing this, high voltage conversion ratio is achieved without using a transformer, coupled inductor, and multiple stages of switched capacitors. Moreover, the TSTM-HS converter operated in three modes with two types of the duty cycles to achieve low to high voltage conversion without using high duty cycle for each switch. The effects of difference in the inductance values on the regulation and operating behavior of the TSTM-HS converter are discussed. The continuous conduction mode and discontinuous conduction mode characteristics of the TSTM-HS converter are discussed in detail with steady-state analysis and boundary condition. The comparison is provided to highlight the benefits of the TSTM-HS converter. The selection of semiconductor devices and the design of reactive components are discussed for the TSTM-HS converter. The experimental results of the proposed converter are provided which validate the theoretical approach, performance, and feasibility of converter. - 1972-2012 IEEE.
SponsorManuscript received December 19, 2018; revised April 5, 2019; accepted May 21, 2019. Date of publication June 2, 2019; date of current version November 7, 2019. Paper 2018-HPC-1346.R1, approved for publication in the IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS of the IEEE Industry Applications Society. This work was supported by NPRP under Grant X-033-2-007 from the Qatar National Research Fund (a member of Qatar Foundation). The statements made herein are solely the responsibility of the authors. (Corresponding author: Atif Iqbal.) M. S. Bhaskar, R. Alammari, M. Meraj, and A. Iqbal are with the Department of Electrical Engineering, Qatar University, Doha 2713, Qatar (e-mail: sagar25.mahajan@gmail.com; ralammari@qu.edu.qa; meraj@qu. edu.qa; atif.iqbal@qu.edu.qa).
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
Subjectdc microgrid
DC-DC converter
high voltage conversion ratio
triple-switch-triple-mode converter
voltage-lift
wide range of duty cycle
TitleA New Triple-Switch-Triple-Mode High Step-Up Converter with Wide Range of Duty Cycle for DC Microgrid Applications
TypeArticle
Pagination7425-7441
Issue Number6
Volume Number55


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