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Research Article

A comprehensive study on evolution and advancement of DC–DC cascaded converters: a review

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Pages 40-55 | Received 13 Jan 2021, Accepted 31 Aug 2021, Published online: 26 Dec 2021

References

  • Alhamrouni, Ibrahim, M. K. Rahmat, F. A. Ismail, Salem Mohamed, Jusoh5 Awang, and T. Sutik.March, 2019. “Design and Development of SEPIC DC-DC Boost Converter for Photovoltaic Application.” International Journal of Power Electronics and Drive System (IJPEDS) 10 (1): 406–413. doi:https://doi.org/10.11591/ijpeds.v10.i1.pp406-413.
  • Barbosa, L. R., J. B. Vieira Jr, L. C. de Freitas, M. S. Vilela, and V. J. Farias. 1996. A Buck Quadratic PWM Soft-Switching Converter Using A Single Active Switch. IEEE.
  • Bhavanarayana, G., Chavvakula Swamy, Ganta Mounika, Yedlapalli Netaji, and Sri durga Sundru. October, 2015. “Analysis and Hardware Implementation of Five Level Cascaded H Bridge Inverter.” Int. Journal of Engineering Research and Applications 5 (10).
  • Bose, Bimal K. June, 2009. “The Past, Present, and Future of Power Electronics.” IEEE INDUSTRIAL ELECTRONICS MAGAZINE.
  • Boujelben, Nesrine, Ferdaous Masmoudi, Mohamed Djemel, and Nabil Derbel. 2019. “Modeling and Comparison of Boost Converter with Cascaded Boost Converters.” In Modeling, Identification and Control Methods in Renewable Energy Systems, Green Energy and Technology. Springer.
  • Bratcu, Antoneta Iuliana, Iulian Munteanu, Seddik Bacha, Damien Picault, and Bertrand Raison. February, 2011. “Cascaded DC–DC Converter Photovoltaic Systems: Power Optimization Issues.” IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS 58 (2). doi:https://doi.org/10.1109/TIE.2010.2043041.
  • Bruno, G. de Assis, P. C. Braga Eduardo, Claudinor B. Nascimento, and Eloi Agostini Júnior. 2019. High-Voltage-Gain Integrated Boost-SEPIC DC-DC Converter for Renewable Energy Applications. IEEE.
  • Chang, Chien-Hsuan, Chun-An Cheng, En-Chih Chang, and Hung-Liang Cheng. June, 2015. “Design and Implementation of a Two-Switch Buck-Boost Typed Inverter with Universal and High Efficiency Features.” 9th International Conference on Power Electronics-ECCE Asia.
  • Chen, Shih-Ming, Tsorng-Juu Liang, Lung-Sheng Yang, and Jiann-Fuh Chen. April, 2011. “A Cascaded High Step-Up DC–DC Converter with Single Switch for Micro Source Applications.” IEEE TRANSACTIONS ON POWER ELECTRONICS 26 (4). doi:https://doi.org/10.1109/TPEL.2010.2090362.
  • David, M. Van de Sype, Koen De Gussemi, Bert Renders, Alex P. Van den Bossche, and Jan A. Melkebeek. 2005. A Single Switch Boost Converter with A High Conversion Ratio. IEEE.
  • Dharani., M, K. Rajalashmi, S.U. Prabha, and K. Indu Rani. 2016. “Integration of CUK and SEPIC Converters for Hybrid Renewable Energy Systems.” South Asian Journal of Engineering and Technology 2 (16).
  • Dupont, Fabr´ıcio Hoff, Jose Renes Pinheiro, and Vinıcius Foletto Montagner. 2015. Design Guidelines and Control of DC-DC Cascaded Buck Converters. IEEE.
  • Eate, Vargil Kumar, and Mummadi Veerachary. 2017. “Analysis of Two-Input Switched Inductor-Capacitor Hybrid Buck–SEPIC DC-DC Converter.” IEEE Transportation Electrification Conference.
  • Ebrahimi, Javad, Babaei Ebrahim, and Goverg B. Gharehpetian. November, 2011. “A New Topology of Cascaded Multilevel Converters with Reduced Number of Components for High-Voltage Applications.” IEEE TRANSACTIONS ON POWER ELECTRONICS 26 (11). doi:https://doi.org/10.1109/TPEL.2011.2148177.
  • Forouzesh, Mojtaba, Yam P. Siwakoti, Saman A. Gorji, Frede Blaabjerg, and Brad Lehman. December, 2017. “Step-Up DC–DC Converters: A Comprehensive Review of Voltage-Boosting Techniques, Topologies, and Applications.” IEEE TRANSACTIONS ON POWER ELECTRONICS 32 (12). doi:https://doi.org/10.1109/TPEL.2017.2652318.
  • George, Merin, Prasitha Prakash, Shilpa George, Susan Eldo, and Annai Raina. April, 2014. “Cascaded Boost Converter for PV Applications.” International Journal of Innovative Research in Electrical, Electronics, Instrumentation and Control Engineering 2 (4).
  • Hafez, Ahmed A.A. October, 2015. “Multi-level Cascaded DC/DC Converters for PV Applications.” Alexandria Engineering Journal (4). doi:https://doi.org/10.1016/j.aej.2015.09.004.
  • Harada, Koosuke, and Hirofumi Matsuo. 1976. “A Method of Surge Reduction in the Switching Regulator.” PESC 76 RECORD-303.
  • Hebbar, Sahana Dinesh, and N Sharada Prasad. May, 2016. “Closed Loop Analysis of Cascaded Boost-Buck Converter for Renewable Energy Sources.” International Research Journal of Engineering and Technology (IRJET) 03 (5).
  • Hossain, M. Zakir, ID1, Jeyraj AL Selvaraj, and N. A. Rahim. November, 2018. “High Voltage-gain Full-bridge Cascaded Dc-dc Converter for Photovoltaic Application.” PLOS ONE (11). doi:https://doi.org/10.1371/journal.pone.0206691.
  • Huber, Jonas E., and Johann W. Kolar. 2013. Optimum Number of Cascaded Cells for High-Power Medium-Voltage Multilevel Converters. IEEE.
  • Jagadeesh, Ingilala, and V. Indragandhi. 2005. “Review and Comparative Analysis on Dc-dc Converters Used in Electric Vehicle Applications.” IOP Conf. Series: Materials Science and Engineering.
  • Jian, Fu, Bo Zhang, Qiu Dongyuan, and Xiao Wenxun. 2010. A Novel Single-Switch Cascaded DC-DC Converter of Boost and BuckBoost Converters.
  • Klimczak, Pawel, and Stig Munk-Nielsen. 2008. A Single Switch Dual Output Non-Isolated Boost Converter. IEEE.
  • Kumari, Rubi, Aamir Haider, M. Pandit, and K.S. Sherpa. 2020. “Dual Input Cascaded Converter for High Voltage Gain.” 6th Students’ Conference on Engineering & Systems.
  • Kumari, Rubi, M. Pandit, and K.S. Sherpa. 2020. “Modelling and Comparison of Conventional SEPIC Converter with Cascaded Boost-SEPIC Converter.” Journal of Institute of Engineers (India)- Seies B.
  • Kwok-wai, Ma, and Yim-shu Lee. March, 1996. “An Integrated Flyback Converter for DC Uninterrupted Power Supply.” IEEE TRANSACTIONS ON POWER ELECTRONICS 11 (2).
  • Luo, F.L., and H. Ye. September, 2004. “Positive Output Cascade Boost Converters.” IEE Proc.-Electronics Power Appl, 151. 5.
  • Majeed, Yamaan E., Ahmad Iftekhar, and Habibi Daryoush. Jul, 2018. “A Multiple-Input Cascaded DC-DC Converter for Very Small Wind Turbines.” IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS (2). doi:https://doi.org/10.1109/TIE.2017.2733456.
  • Malinowski, M. 2017. “Cascaded Multilevel Converters in Recent Research and Applications.” IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, Bulletin of the Polish Academy of Sciences 65 (5).
  • Maroti, P.K., S. Padmanaban, M.S. Bhaskar, F. Blaabjerg, P. Siano, V. Fedak, and V.K. Ramachandramurthy. 2017. A High Gain Modified SEPIC DC-to-DC Boost Converter for Renewable Energy Applications. IEEE.
  • Matsuo, Hirofumi, and Koosuke Harada. March, 1976. “The Cascade Connection of Switching Regulators.” IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS 12 (2).
  • Middlebrook, R.D. October, I988. “Transformer Less DC-to-DC Converters with Large Conversion Ratios.” IEEE TRANSACTIONS ON POWER ELECTRONICS 3 (4).
  • Middlebrook, R.D, and Cuk Slobodan. 1975. Isolation and Multiple Output Extensions of a New Optimum Topology Switching DC-to-DC Converter. IEEE.
  • Minfan, Fu, Ma Chengbin, and Xinen Zhu. 2013. “A Cascaded Boost-Buck Converter for High Efficiency Wireless Power Transfer Systems.” IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS.
  • Monem, Mohamed Abdel, Omar Hegazy, and Noshin Omar. November, 2013. “Comparative Study of Different Multilevel DC/DC Converter Topologies for Second-Life Battery Applications.” International Battery, Hybrid and Fuel Cell Electric Vehicle Symposium.
  • Moutabir, A., A. Abouloifa, E. Abdelmounim, M. Aboulfatah, R. Majdoul, and A. Touati. 2014. Analysis and Control Design of Two Cascaded Boost Converter. EDP Sciences.
  • Mukherjee, Nilanjan, and Dani Strickland. October 30, 2015. “Transformer Less DC-to-DC Converters with Large Conversion Ratios.” IEEE TRANSACTIONS ON POWER ELECTRONICS.
  • Narayan, Prem, Ravindra Kumar, Abdul Hafeez, Verma PremNath, and S.P. Singh. October, 2016. “Comparison of Parallel and Series Connection of Boost Converter Topology for High Voltage Applications.” International Journal of Innovative Research in Computer and Communication Engineering 4 (10).
  • Paul Raj, Melba Mary, and Sivagama Sundari Meenakshi Sundaram. February, 2016. “Cascaded H-Bridge Five-Level Inverter for Grid-Connected Photovoltaic System Using Proportional–Integral Controller.” Measurement and Controller 49 (1).
  • Rodriguez, Elias, and Jaime Arau. “2015. A Novel DC-UPS with Power Factor Correction in A Single Structure.” Mexican Council for Science and Technology - CONACYT.
  • Sabzali, Ahmad J., and Esam H. Ismail. 2014. “Integrated Double Boost–SEPIC DC–DC Converter for Renewable Energy Systems.” Renewable Energy: Generation and Applications.
  • Sabzali, Ahmad J., Esam H. Ismail, and Hussain M. Behbehani. 2014. “High Voltage Step-up Integrated Double Boost-Sepic DC-DC Converter for Fuel-cell and Photovoltaic Applications.” Renewable Energy.
  • Slobodan, Cuk, and R.D Middlebrook. 1977. “A New Optimum Topology Switching DC-to-DC Converter.” PESC 77 RECORD-160.
  • Slobodan, Cuk, and R.D Middlebrook. February, 1983. “Advances in Switched-Mode Power Conversion Part I.” IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS 30 (1).
  • Swathi, Tetali, V.S.N Narasimha Raju, K Sainadh Singh, and G. Srinivas Reddy. April, 2019. “Design of Cascaded Modular Multilevel Converter for Grid Connected PV System.” International Journal of Electrical and Electronics Engineering (SSRG - IJEEE) 6 (4).
  • Tofol, Fernando Lessa, Dênis de Castro Pereira, Josias de Paula Wesley, and Demercil de Sousa Oliveira Júnior. April, 2015. “Survey on Non-isolated High-voltage Step-up Dc–dc Topologies Based on the Boost Converter.” IET Power Electronics 8 (10): 2044–2057. doi:https://doi.org/10.1049/iet-pel.2014.0605.
  • Veerachary, M., and S. Bala Sudhakar. 2007. Stability Analysis of Cascaded DC-DC Power Electronic System. IEEE.
  • Venkatanarayanan, S., and M.R.M. Nanthini. March, 2014. “Design and Implementation of SEPIC and Boost Converters for Wind and Fuel Cell Applications.” International Journal of Innovative Research in Science, Engineering and Technology 3 (3).
  • Walker, G. R., and P. C. Sernia. 2002. Cascaded DC-DC Converter Connection of Photovoltaic Modules. IEEE.
  • Wang, Kangan, Kangan Wang, We Chen, Feng Liu, Wu Xiaojie, and Marco Liserr. October, 2019. “Cascaded Multilevel Converter Topology for Large-Scale Photovoltaic System with Balanced Operation.” IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS 66 (10). doi:https://doi.org/10.1109/TIE.2018.2885739.
  • Wei, Wen, Xu Haiping, Wen Xuhui, and Shi Wenqing. 2006. Dynamics and Control of Electronic Cascaded Systems. IEEE.
  • Wilson, Thomas G. May, 2000. “The Evolution of Power Electronics.” IEEE TRANSACTIONS ON POWER ELECTRONICS 15 (3).
  • Xiong, Song, Siu-Chung Wong, Siew-Chong Tan, and Chi K. Tse. April, 2014. “A Family of Exponential Step-Down Switched-Capacitor Converters and Their Applications in Two-Stage Converters.” IEEE TRANSACTIONS ON POWER ELECTRONICS 29 (4). doi:https://doi.org/10.1109/TPEL.2013.2270290.
  • Zhao, Qun, and Fred C. Lee. 2003. High Performance Coupled-Inductor DC-DC Converters. IEEE.

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