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Robust stability of solar-power wireless network control system with stochastic time delays based on -norm

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  • Waleed Al-Azzawi
  • Marwan Al-Akaidi

Abstract

In this paper, the robust stability analysis of solar wireless networked control systems (SWNCSs) with stochastic time delays and packet dropout is investigated. The robust model predictive controller (RMPC) technique for the SWNCS is discussed using the linear matrix inequality (LMI) technique. Based on the SWNCS model, the RMPC (a full state feedback controller) can be constructed by using the Lyapunov functional method. Both sensor-to-controller and controller-to-actuator time delays of the SWNCS are considered as stochastic variables controlled by a Markov chain. A discrete-time Markovian jump linear system (MJLS) with norm bounded time delay is presented to model the SWNCSs. Conditions for H∞-norm is used to evaluate stability and stabilization of the fundamental systems derived via LMIs formulation. Finally, an illustrative numerical example is given to demonstrate the effectiveness of the proposed techniques.

Suggested Citation

  • Waleed Al-Azzawi & Marwan Al-Akaidi, 2015. "Robust stability of solar-power wireless network control system with stochastic time delays based on -norm," International Journal of Systems Science, Taylor & Francis Journals, vol. 46(5), pages 896-907, April.
  • Handle: RePEc:taf:tsysxx:v:46:y:2015:i:5:p:896-907
    DOI: 10.1080/00207721.2013.801092
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