K.S.R.R. Kondapalli∗ and C.-K. Chew∗∗
[1] N. Mohan, W.P. Robbins, T.M. Undeland, R. Nilssen, & O.Mo, Simulation of power electronic and motion control systems– An overview, IEEE Proceedings, 82(8), 1994, 1287–1302. [2] O. Apeldoorn, Simulation in power electronics, Proceedings ofIEEE International Symposium on Industrial Electronics, 2,1996, 590–595. [3] S. Salama, Simulation of power electronics systems using Simu-Pec: The new power electronics toolbox for Simulink/Matlab,Proc. IEEE 35th Annual Power Electronics Specialists Con-ference, 2004, 3409–3413. [4] B. Baha, Modeling of resonant switched-mode converters usingSIMULINK, Proc. IEE Electric Power Applications, 145(3),1998, 159–163. [5] B. Ray, Bi-directional dc/dc power conversion using quasi-resonant topology, Proc. IEEE 23rd Annual Power ElectronicsSpecialists Conference, 1, 1992, 617–624. [6] F. Zhang, L. Xiao, & Y. Yan, Bi-directional forward-fly backDC–DC converter, Proc. IEEE 35th Annual Power ElectronicsSpecialists Conference, 5, 2004, 4058–4061. [7] F.Z. Peng, H. Li, Gui-Jia Su & J.S. Lawler, A new ZVS bi-directional dc–dc converter for fuel cell and battery application,IEEE Transactions on Power Electronics, 19(1), 2004, 54–65. [8] K. Venkatesan, Current mode controlled bi-directional flyback converter, Proc. IEEE 20th Annual Power ElectronicsSpecialists Conference, 2, 1989, 835–842. [9] M. Jain, M. Daniele, & P.K. Jain, A bi-directional dc–dc con-verter topology for low power application, IEEE Transactionson Power Electronics, 15(4), 2000, 595–606. [10] The Mathworks, Inc., SimPowerSystems, Version 3.1 (Natick,MA: The Mathworks, 2003). [11] The Mathworks, Inc., Genetic Algorithm and direct searchtoolbox, Version 1 (Natick, MA: The Mathworks, 2003). [12] D. Logue & P.T. Krein, Simulation of electric machineryand power electronics interfacing using MATLAB/SIMULINK,Proc. 7th IEEE Workshop on Computers in Power Electronics,2000, 34–39. [13] H. Li, F.Z. Peng, & J. Lawler, Modeling, simulation, andexperimental verification of soft-switched bi-directional dc–dc converters, Proc. IEEE Applied Power Electronics andExposition, 2, 2001, 736–742. [14] C.-K. Chew, Modeling, analysis, simulation and design opti-mization (GA) of dc–dc converter for UPS applications, Masterthesis, Universiti Sains Malaysia, Malaysia, 2005. [15] The Mathworks, Inc., Using Simulink, Version 6 (Natick, MA:The Mathworks, 2004). [16] I. Galkin & U.M. Lowell, Crash introduction to artificial neuralnetworks (Materials for UML 91.531, Data Mining Course). [17] F. Busetti, Simulated Annealing Overview, Report, 2003. [18] M.J.D. Powell, An efficient method for finding the minimum ofa function of several variables without calculating derivatives,Computer Journal, 7, 1964, 155–162. [19] J. Kohoner, A brief comparison of simulated annealing and ge-netic algorithm approaches (Report, Department of ComputerScience, University of Helsinki, 1999). [20] D.R. Thompson & G.I. Bilbro, Comparison of a genetic algo-rithm with a simulated annealing algorithm for the design ofan ATM network, IEEE Communications Letters, 4(8), 2000,267–269. [21] D.E. Goldberg, Genetic Algorithms in search, optimization,and machine learning (Reading, MA: Addison-Wesley, 1989). [22] D. Dumitrescu, B. Lazzerini, L.C. Jain, & A. Dumitrescu,Evolutionary computation (Florida: CRC Press LLC, 2000). [23] N. Chaiyaratana & A.M.S. Zalzala, Recent developments inevolutionary and genetic algorithms: Theory and applications,Proc. IEE Conference on Genetic Algorithms in EngineeringSystems: Innovations and Applications, 446, 1997, 270–277. [24] S. Maniktala, Selecting inductors for buck converters, Appli-cation note AN-1197 (National Semiconductor, 2002). [25] C.-K. Chew & S.R.R. Kondapalli, Modelling, analysis, simu-lation and design optimization (Genetic Algorithm) of dc–dcconverter for uninterruptible power supply applications, Pro-ceedings of the IEEE Sixth International Conference on PowerElectronics and Drive Systems, 2, 2005, 1530–1535.
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