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ECE 692
ECE 692

ECE 692: Discrete Time Modeling of Power Electronics

Supplemental Materials

  • library_booksSupplementary Notes
  • library_booksAdditional References
    State Space Modeling
    • H.R. Visser & P.P.J. van den Bosch, "Modelling of periodically switching networks "
    • C. Van Loan, "Computing integrals involving the matrix exponential"
    Discrete Time Modeling
    • A. R. Brown & R. D. Middlebrook, "Sampled-data modeling of switching regulators"
    • D. J Packard, "Discrete modeling and analysis of switching regulators"
    • D. Maksimovic & R. Zane, "Small-Signal Discrete-Time Modeling of Digitally Controlled PWM Converters"
    Switching Converter Simulation
    • D. Maksimovic, "Automated steady-state analysis of switching power converters using a general-purpose simulation tool"
  • sim_cardSimulation Tools
    MATLAB
    • MathWorks Introductory tutorials on MATLAB (opens in new window)
    • Tips for Efficient Coding in MATLAB
    • Tutorial on lsim( )
    • Example Buck-Boost Steady-State Analysis using State Space Solution
    • Example Buck-Boost Steady-State Analysis using Augmented State Space Approach
    PLECS
    • Using PLECS to generate State Space Descriptions
  • gradeCourse Materials
    • Six Cycle Semilog Paper
    • Impedance Paper
About The Course

Course covers advanced topics in modeling and control of power electronics, including discrete time modeling, steady-state design optimization, dynamic modeling, digital control, and nonlinear phenomena.

Course meets three times weekly

Prerequisites
  1. ECE481 – Power Electronics
  2. Undergraduate course sequence in circuit analysis and design
Contact
  • ude.ktu@cjd
  • ph: (865) 974-3572