<p>In recent years, real-time implementation of control laws for static converters, particularly PWM control laws, has been the focus of several research works. Additionally, parallel to the technological advancements in reconfigurable circuits, FPGA circuits have become the target of numerous applications, including the implementation of control laws. The purpose of using FPGAs is to create optimized and specific circuits specifically for real-time implementation of control laws. In this paper, we demonstrate the various uses of FPGA circuits in the field of static converter control. We employ several software tools that work at various levels of HDL programming, as well as multiple hardware platforms, to transition from simulation to physical implementation and optimization of different PWM control laws. The different implementations are simulated and synthesized for Xilinx FPGA circuits, with physical implementations provided. For each proposal, we provide detailed results of simulation and synthesis.</p>

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Multi-level and real-time implementations using FPGA devices of PWM techniques used for the control of static converters

  • Chafa Mohamed,
  • Kamel Messaoudi,
  • Louze Lamri

摘要

In recent years, real-time implementation of control laws for static converters, particularly PWM control laws, has been the focus of several research works. Additionally, parallel to the technological advancements in reconfigurable circuits, FPGA circuits have become the target of numerous applications, including the implementation of control laws. The purpose of using FPGAs is to create optimized and specific circuits specifically for real-time implementation of control laws. In this paper, we demonstrate the various uses of FPGA circuits in the field of static converter control. We employ several software tools that work at various levels of HDL programming, as well as multiple hardware platforms, to transition from simulation to physical implementation and optimization of different PWM control laws. The different implementations are simulated and synthesized for Xilinx FPGA circuits, with physical implementations provided. For each proposal, we provide detailed results of simulation and synthesis.