The object model for cyber-physical system's in state space (on the example of the pavement compaction process)

Описание

Тип публикации: доклад, тезисы доклада, статья из сборника материалов конференций

Конференция: International Multi-Conference on Engineering, Computer and Information Sciences, SIBIRCON 2019

Год издания: 2019

Идентификатор DOI: 10.1109/SIBIRCON48586.2019.8958307

Ключевые слова: compaction process, cyber-physical system, mathematical model, rheological model, road-building mixture, roller, state space, vibration roller

Аннотация: We has considered results of object model theoretical description of the cyber-physical system-the compaction process of the road surface with a vibration roller, based on the method of the state space. The working body of the roller includes a vibration drum with a built-in unbalance shaft. The mathematical model of the process ofПоказать полностьюinteraction of the object with the compacted road-building material takes into account the mass of the main structural elements of the vibration roller and the mass of the compacted road material. To describe the characteristics of the compacted material, a rheological model of the viscoelastic Kelvin-Voight body is used. The suitability of the obtained mathematical model based on the results of simulation of the system in the MATLAB/Simulink program is experimentally confirmed. © 2019 IEEE.

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Издание

Журнал: SIBIRCON 2019 - International Multi-Conference on Engineering, Computer and Information Sciences, Proceedings

Номера страниц: 85-89

Издатель: Institute of Electrical and Electronics Engineers Inc.8958307

Персоны

  • Prokopev A. (School of Engineering and Construction, Siberian Federal University, Krasnoyarsk, Russian Federation)
  • Nabizhanov Z. (School of Space and Information Technology, Siberian Federal University, Krasnoyarsk, Russian Federation)
  • Ivanchura V. (School of Space and Information Technology, Siberian Federal University, Krasnoyarsk, Russian Federation)
  • Emelyanov R. (School of Engineering and Construction, Siberian Federal University, Krasnoyarsk, Russian Federation)

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