Design and implementation of digital controllers for buck converter using linear and nonlinear control methods

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dc.contributor.author Ali, Majid
dc.contributor.author Khan, Safiullah
dc.contributor.author Waleed, Muhamad
dc.date.accessioned 2022-01-13T09:25:24Z
dc.date.available 2022-01-13T09:25:24Z
dc.date.issued 2012-11-15
dc.identifier.citation [1] Issa Batarseh, ―Power electronic Circuits‖, University of Central Florida, 2004 [2] Hong Mao and Songquan Deng, “Unified steady-state model and DC analysis of half-bridge DC-DC converters with current doubler rectifier‖, APEC '04. Nineteenth Annual IEEE, Volume: 2, 2004 Pages: 786 - 791 vol.2 [3] Hong Mao and Jaber A. Abu-Qahouq, ―A New Duty-Cycle-Shifted PWM Control Scheme for Half-Bridge DC-DC Converters to Achieve Zero-Voltage-Switching‖, 2003 IEEE, pp.629-635 [4] Charles L. Phillips, ― Digital Control System Analysis and Design‖, 3rd Edition, New Jersey, 1995 [5] Liping Guo, ―PID Controller Modifications to Improve Steady-State Performance of Digital Controllers for Buck and Boost Converters‖, IEEE 2002,pp.381-388 [6] Benjamin J. Patella, ―High-Frequency Digital PWM Controller IC for DC-DC Converters‖, IEEE Transactions on Power Electronics, VOL, 18,NO.1, January 2003 [7] Aleksanda Prodic, ―Design and Implementation of Digital PWM Controller for a High-Frequency Switching DC-DC Power Converter‖, IEEE, 2001, IECON‘01, pp. 893-898 [8] P.T. Tang and C.K. Tse, ―Design of DSP-Based Controller for Switching Power Converters‖, 1996 IEEE TENCON-Digital Signal Processing Applications,pp.889-894 [9] Robert W. Erickson, ―Fundamentals of Power Electronics Sencond Edition‖, Second Edition, University of Colorado, 2000 [10] Aleksanda Prodic, ―Design Controls of High Frequency Switching Power Converters‖, APEC, 2004 Seminar [11] G.Capponi, ―Modeling and simulation of new digital control for power conversion systems‖, 2002 IEEE, pp.115-119 [12] R.R.Boudreaux, ―Simulation and modeling of a DC-DC converter controlled by an 8-bit microcontroller‖, IEEE 1997, pp.963-970 [13] Jose L. Tong, ― A model for designing digital PID controllers‖, IEEE 1992 pp. 1157-1163 [14] Texas Instruments Incorporated, ―Implementation of PID and Deadbeat Controllers with the TMS320 Family‖, APPLICATION REPORT: SPRA083 [15] Texas Instruments Incorporated, ―TMS320F2810, TMS320F2811, TMS320F2812, TMS320C2810, TMS320C2811, TMS320C2812 Digital Signal Processors Data Manual‖ [16] ―TMS320C28x DSP CPU and Instruction Set Reference Guide‖, Texas ISLAMIC UNIVERSITY OF TECHNOLOGY (IUT) OIC 90 Instruments Corporation. [17] ―TMS320F28x DSP Peripherals Reference Guide‖, Texas Instruments Corporation. [18] Laszlo Balogh, ―The Current-Doubler Rectifier: An Alternative Rectification Technique for Push-pull and Bridge Converters ‖, Unitrode Design Note DN-63, 1994. [19] Y. Panov and M. Jovanovic, ―Design and Performance Evaluation of Low-Voltage/High-Current DC/DC On-Board Modules‖, IEEE Transaction on Power Electronics, Vol. 16, No.1, pp. 26~33, 2001. [20] J. Sebasyian, J.A. Cobos, O Garcia and J. Uceda, ―An overall Study of The Half Bridge Complementary-Control DC-to-DC Converter‖, IEEE Power Electronics Specialists Conference, 1995, Vol. 2, pp. 1229 –1235. [21] Jiangtao Feng, Yuequan Hu and Wei Chen, ―ZVS analysis of asymmetric half-bridge converter‖, IEEE Power Electronics Specialists Conference, 2001, pp.243– 247. [22] Sergey Korotkov, Valery Meleshin, Alexey Nemchinov, and Simon Fraidlin, ―Small-Signal Modeling of Soft-Switched Asymmetrical Half-Bridge DC/DC Converter‖, Applied Power Electronics Conference and Exposition, 1995. APEC '95, pp. 707 –711. [23] Qiong Li, Lee F.C. and Jovanovi M.M., ―Design considerations of transformer DC bias of forward converter with active-clamp reset‖, IEEE Applied Power Electronics Conference and Exposition, 1999, APEC '99, pp.553~559. [24] Xunwei Zhou, Peng Xu, and Fred C. Lee, ―A Novel Current-Sharing Control Technique for Low-Voltage High-Current Voltage Regulator Module Applications ‖, IEEE Transaction on Power Electronics, Vol.15, No. 6, pp.1153~1162. [25] R. D. Middlebrook, ―small-signal Modeling of Pulse-Width Modulated Switched-Mode Power Converters‖, Proceddings of the IEEE, Vol.76, No. 4, April 1988, pp.343~354. [26] P. Vinciarelli, ―Optimal resetting of the transformer core in Single ended forward converter ‖‖, U. S. Patent, No. 4,441,146, April 1984. [27] B. Andreycak, ―Active clamp and reset technique enhances forward converter performance‖, Unitrode Power Supply Design Seminar, SEM-1000, 1994. [28] Rozsa, L. ―Design and Implementation of Practical Digital PID Controllers”, IFAC Proceedings Series, n 15, 1990, pp. 115-121. [29] Bibbero, R.J. ―Microprocessors in Instruments and Control‖, New York, NY: Wiley, 1977. [30] Fassois, S. ―Microprocessors and their applications to control systems‖, Diploma Thesis, Control Systems Division, National Technical University, Athens, Grece, 1982. [31] Parnell, K., Bryner, R., ―Comparing and Contrasting FPGA and Microprocessor System Design and Development‖, White Paper 213, Vol. 1, No. 1, July 21 2004. ISLAMIC UNIVERSITY OF TECHNOLOGY (IUT) OIC 91 http://direct.xilinx.com/bvdocs/whitepapres/wp213.pdf [32] Chen, C.Y., Chen, C.C. and Chiu G.T.-C. ―Adaptive Robust Control of Media Advance Systems for Thermal Inkjet Printers‖, Mechatronics, v 10, 2000, p111-126. [33] Stepper Motor Basics, Industrial Circuits Application Note, http://www.ericsson.se/mocroe/apn_ind.html [34] Roppenecker, G. and O‘reilly, J. ―Parametric Output Feedback Controller Design‖, Automatica, 1989. [35] Bennett, Stuart. ―The Past of PID controllers,‖, Annual Review in Control, v 25, 2001, p 43-53. [36] VanDoren, Vance. ―Understanding PID control‖, Control Engineering, June, 2000, p 53-56. [37] VanDoren, Vance. ―PID: Still the One‖, Control Engineering, December, 2003, p 28-29. [38] DSIR. ―Automation.‖ Her majesty‘s Stationery Office, London. 1956. [39] Williams, G. P. L. ―Trends of development in the British instruments industry‖, Instrument Engineer, 1957. [40] Turner, A. ―Computer in process control: a panel discussion‖, Instruments & Control Systems, 1970. [41] Auslander, D. M., Takahashi, Y. and Tomizuka, M. ―The next generation of single loop controllers‖, Journal of Dynamic Systems, Measurements, and Control. 1975. [42] Krikelis J. N. and Fassois D. S. ―Microprocessor Implementation of PID controllers and Lead-Lag Compensators.‖ IEEE Transaction on Industrial Electronics, 1984. [43] Hayes, L. ―Optimizing Optical Encoder Performace.‖ Sensors. v 12, April 1995, p 65-68. [44] Lumkes, J.H. Jr., ―Control Strategies for Dynamic Systems.‖ New York: Marcel Dekker, Inc. [45] Lin, H.Y., Lu, M.C., Horng, J.H., Yang, T.B., Hsieh. S.C., Hsiao, C.Y., Tai, H.M. and Chen, J.S. ―DC Servo Speed Control of an Inkjet Print Head Transport System Using a Phase-Locked Loop.‖ Proceedings of the 1996 4th International Workshop on Advanced Motion Control.‖ 1996. [46] Best, E. ―Phase-Locked Loops – Theory, Design, and Applications.‖ New York: ISLAMIC UNIVERSITY OF TECHNOLOGY (IUT) OIC 92 McGraw-Hill. 1993. [47] Adkins, C. ―Velocity Control Of An Inkjet Print Head Transport System Using An All-Digital Phase-Locked Loop.‖ M.S. Thesis, University Of Kentucky. 1997. [48] Adkins, C.A., Marra, M.A. ―Modeling of a phase-locked loop servo controller with encoder feedback.‖ Proceedings IEEE Southeastcon‘99. Technology on the Brink of 2000. 1999, p 59-63. [49] Deshpande, A.V., Kamasak, M., Thoon, K.L, Chiu, C.T.-C., Bouman, C., Allebach, J., Fedigan, S., Schafer, D. and Cole, C. ―Design and Implementation of a DSP based Inkjet Printer Motion Control System for Dynamic Print Mode Control.‖ International Conference on Digital Printing Technologies. 2001. [50] Deshpande, A.V. ―Printer System for Dynamic DSP Based Inkjet Print Mode Control.‖ M.S. Thesis, Purdue University. 2001 en_US
dc.identifier.uri http://hdl.handle.net/123456789/1239
dc.description Supervised by Dr. Kazi Khairul Islam, Department of Electrical and Electronic Engineering (EEE), Islamic University of Technology (IUT), Board Bazar, Gazipur-1704, 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 3, 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 4, digital modeling platforms are established based on Matlab, Digital PID design and corresponding simulation results are provided. Also some critical issues and practical requirements are discussed. In Chapter 6, a DSP-based digital controller is implemented with the TI‘s DSP chip TMS320F2812. Related implementation methods and technologies are discussed. 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 Design and implementation of digital controllers for buck converter using linear and nonlinear control methods en_US
dc.type Thesis en_US


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