Linear and non linear controller design for DC-DC converter

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dc.contributor.author Aslam, Muhammad Faizan
dc.contributor.author Fateh, Saif-Al-Islam
dc.contributor.author Anwar, Muhammad Usman
dc.date.accessioned 2022-01-14T08:11:37Z
dc.date.available 2022-01-14T08:11:37Z
dc.date.issued 2012-11-15
dc.identifier.citation [1] http://www.elecdesign.com/Files/29/11265/11265_01.pdf *2+. Shahruk Osman and Surkhru Osman, “Load Identification of DC-DC Converter”, Master Thesis, BTH University, 2011. *3+. Muhammad Saad Rahman, “Buck Converter Design Issues,” Master thesis performed in division of Electronic Devices, Linkoping Institute of Technology, Linkoping, 2007. *4+. D. Maksimovic, R. Zane, and R. Erickson, “Impact of digital control in power electronics,” in Proc. IEEE Int. Symp. Power Semicond. Devices ICs, 2004, pp. 13–22. [5]. http://www.makingthings.com/teleo/products/documentation/teleo_user_guide/electronics.html *6+. Muhammad H. Rashid, “DC DC Converter,” in Power Electronics Handbook, pp. 211-224. [7] http://en.wikipedia.org/wiki/Buck_converter *8+ Chin Chang, “Robust Control of DC-DC Converters: The Buck Converter”, Power Electronics Specialists Conference, 1995. 26th Annual IEEE Volume 2, Issue , 18-22 Jun 1995 Page(s):1094 - 1097 vol.2 [9] Ned Mohan, Tore M. Undeland, William P. Robbins, “Power Electronics: Converters, Applications, and Design”, 3rd Edition, Wiley [10] R.D. Middlebrook and S. Cuk, "A General Unified Approach To Modelling Switching-Converter Power Stages", IEEE Power Electronics Specialists Conference, 1976 Record, pp 18-34. *11+ L. Guo, J. Y. Hung, and R. M. Nelms, “Digital Controller Design for Buck and Boost Converters Using Root Locus Techniques”, The 29th Annual Conference of the IEEE Industrial Electronics Society (IECON’03), Vol. 2, pp. 1864 - 1869, Nov 2003. *12+ L. Guo, J. Y. Hung, and R. M. Nelms, “PID controller modifications to improve steady-state performance of digital controllers for buck and boost converters”, Conference Proceedings of IEEE Applied Power Electronics Conference and Exposition, pp. 381 – 388, Feb 2002 [13] R. P. Severns and G. Bloom, Modern DC-to-DC Switchmode Power Converter Circuits, Van Nostrand Reinhold Company, New York, 1985. *14+ W. C. So, C. K. Tse and Y. S. Lee, “Development of a Fuzzy Logic Controller for DC/DC Converters: Design, Computer Simulation, and Experimental Evaluation”, IEEE Transaction on Power Electronics, Vol. 11. pp. 24-32, January 1996. *15+ M. Smyej, M. Saneba and A. Cheriti, “A Fuzzy Controller for a DC to DC Converter Using a Digital Integrator”, Canadian Conference on Electrical and Computer Engineering, Vol. 1, pp. 7-10, 2000. ISLAMIC UNIVERSITY OF TECHNOLOGY (IUT) OIC 79 *16+ K. Viswanathan, D. Srinivasan and R. Oruganti, “A Universal Fuzzy Controller for a Non-linear Power Electronic Converter”, IEEE International Conference on Fuzzy Systems, Vol. 1, pp. 46-51, 2002. [17] R. W. Erickson, D. Maksimovic, Fundamentals of Power Electronics, Kluwer Academic Publishers, Massachusetts, 2001. [18] K. Ogata, Discrete-Time Control Systems. Prentice-Hall, Inc., New Jersey, 1987. [19] K. M. Passino, S. Yurkovich, Fuzzy Control. Addison-Wesley 1997. *20+ L. Guo, J. Y. Hung, and R. M. Nelms, “Experimental evaluation of a Fuzzy Controller Using a Parallel Integrator Structure for DC-DC Converters”, Proceedings for the IEEE International Symposium on Industrial Electronics (ISIE’05). Vol. 2, pp. 20-23, June 2005. *21+ P. Mattavelli and G. Spiazzi, “General-purpose fuzzy controller for DC-DC converters”, IEEE Transactions on Power Electronics, Vol. 12, No. 1, pp. 79-86, January 1997. *22+ Y. Duan, H. Jin, “Digital Controller Design for Switchmode Power Converters”, Conference Proceedings of IEEE Applied Power Electronics Conference and Exposition, pp. 967-973, 1999 en_US
dc.identifier.uri http://hdl.handle.net/123456789/1249
dc.description Supervised by Prof. Dr. Md Ashraf Ul Hoque, Department Of Electrical And Electronic Engineering (EEE) Islamic University of Technology (IUT) Organization of Islamic Cooperation (OIC) Dhaka, Bangladesh en_US
dc.description.abstract DC-DC power converters play an important role in powering telecom and computing systems. With the speed improvement and cost reduction of digital control, digital controller is becoming a trend for DC-DC converters in addition to existed digital monitoring and management technology. In this thesis, digital control is investigated for DC-DC converters applications. To deeply understand the whole control systems, DC-DC converter models are investigated based on averaged state-space modeling. Considering Buck DC-DC converter, the thesis takes it as an example for digital control modeling and implementation. In Chapter 2, unified steady-state DC models and small-signal models are developed for DC-DC buck converters. Based on the models, digital controller design is implemented in Chapter 3. In Chapter 4, Fuzzy logic control is introduced and based on that knowledge Fuzzy controller is designed for the control of buck converter. It should be noted that Fuzzy logic control provides superior performance than conventional PI and PID controller especially during under load transient condition. en_US
dc.language.iso en en_US
dc.publisher Department of Electrical and Electronic Engineering, Islamic University of Technology (IUT), Board Bazar, Gazipur-1704, Bangladesh en_US
dc.title Linear and non linear controller design for DC-DC converter en_US
dc.type Thesis en_US


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