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Design of Petri Net-Based Cyber-Physical Systems Oriented on the Implementation in Field Programmable Gate Arrays

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  • Remigiusz Wisniewski

    (Institute of Control & Computation Engineering, University of Zielona Gora, 65-417 Zielona Góra, Poland)

Abstract

Two design flows of the Petri net-based cyber-physical systems oriented towards implementation in an FPGA are presented in the paper. The first method is based on the behavioural description of the system. The control part of the cyber-physical system is specified by an interpreted Petri net, and is described directly in the synthesisable Verilog hardware language for further implementation in the programmable device. The second technique involves splitting the design into sequential modules. In particular, adequate decomposition and synchronisation algorithms are proposed. The resulting modules are further modelled within the Verilog language as the composition of sequential automata. The presented design flows are supported by theoretical background, and templates of Verilog codes. The proposed techniques are illustrated by a real-life example of a multi-robot cyber-physical system, where each step of the proposed flows is explained in detail, including modelling, description of the system in the Verilog language, and final implementation within the FPGA device. The results obtained during the verification and validation confirm the proper functionality of the system designed by both design flows.

Suggested Citation

  • Remigiusz Wisniewski, 2021. "Design of Petri Net-Based Cyber-Physical Systems Oriented on the Implementation in Field Programmable Gate Arrays," Energies, MDPI, vol. 14(21), pages 1-25, October.
  • Handle: RePEc:gam:jeners:v:14:y:2021:i:21:p:7054-:d:666832
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    References listed on IDEAS

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    1. Joo Hock Ang & Cindy Goh & Alfredo Alan Flores Saldivar & Yun Li, 2017. "Energy-Efficient Through-Life Smart Design, Manufacturing and Operation of Ships in an Industry 4.0 Environment," Energies, MDPI, vol. 10(5), pages 1-13, April.
    2. Davide Astiaso Garcia & Fabrizio Cumo & Mariagrazia Tiberi & Valentina Sforzini & Giuseppe Piras, 2016. "Cost-Benefit Analysis for Energy Management in Public Buildings: Four Italian Case Studies," Energies, MDPI, vol. 9(7), pages 1-17, July.
    3. Saqib Shamim & Shuang Cang & Hongnian Yu & Yun Li, 2017. "Examining the Feasibilities of Industry 4.0 for the Hospitality Sector with the Lens of Management Practice," Energies, MDPI, vol. 10(4), pages 1-19, April.
    4. Jaka Marguč & Mitja Truntič & Miran Rodič & Miro Milanovič, 2019. "FPGA Based Real-Time Emulation System for Power Electronics Converters," Energies, MDPI, vol. 12(6), pages 1-23, March.
    5. Hermes Loschi & Piotr Lezynski & Robert Smolenski & Douglas Nascimento & Wojciech Sleszynski, 2020. "FPGA-Based System for Electromagnetic Interference Evaluation in Random Modulated DC/DC Converters," Energies, MDPI, vol. 13(9), pages 1-14, May.
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    Cited by:

    1. Zhiyong Li & Wubin Wen & Rende Dai & Wanting Xi, 2022. "Reliability Evaluation of Smart Substation Based on Time-Varying Probabilistic Hybrid Attack Graph," Energies, MDPI, vol. 15(18), pages 1-15, September.
    2. Grzegorz Bazydło, 2023. "Designing Reconfigurable Cyber-Physical Systems Using Unified Modeling Language," Energies, MDPI, vol. 16(3), pages 1-21, January.

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