Hil simulation of non linear control methods applied for buck-boost and flyback converters

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Universidade Federal de Minas Gerais

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In this paper, a Hardware in The Loop (HIL) platform was developed for the implementation of control techniques applied to static power converters. With this methodology, linear and nonlinear control techniques can be designed and compared - with low resources and available development time - to different types of power converters, such as Buck-Boost and Flyback. The converters, methods and control laws will be shown in detailed block diagrams, so that any student or engineer can reproduce the results. In addition, the HIL method became essential to dynamize and obtain experimental results, also presented in the dedicated section for both converters.

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Modelos matemáticos, Conversores eletrônicos

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Mathematical model , Integrated circuit modeling , Hardware , Inductance , Control systems , Software , Real-time systems, Buck-Boost , Flyback , SFL , PBC , IDA-PBC , HIL, Nonlinear Control , Linear Control , Hardware-in-the-loop , Nonlinear Control Method , Optimal Control , Control Techniques , Simulation Results , Simulation Software , Ordinary Differential Equations , Equation Of State , Duty Cycle , Equilibrium Point , Relative Degree , Digital Signal Processing , Texas Instruments , Real-time Simulation , State-space Equations

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https://ieeexplore.ieee.org/document/8257231?section=abstract

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