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February 22, 2026International Journal of Robust and Nonlinear Control0 citations

Sliding Mode Control for Persistent Dwell‐Time Switched System Under Multi‐Node Round‐Robin Protocol and Replay Attacks

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YZYujiao ZhangHZHongxu ZhangHLHao Liu

Key Points

  • The research focuses on designing a sliding mode control for switched systems affected by replay attacks and communication protocols.
  • Developed an adaptive dynamic output-feedback sliding mode controller.
  • Analyzed reachability of the sliding surface and input-to-state stability in probability.
  • Discussed conditions for stability and control effectiveness.
  • Demonstrated existence of sufficient conditions for achieving the sliding surface.
  • Illustrated system stability via simulation in the presence of varying nodes and attacks.

Abstract

ABSTRACT This work investigates the output‐feedback‐based sliding mode control (SMC) issue for a class of persistent dwell‐time (PDT) switched systems suffering from replay attacks and multi‐node round robin protocol (MN‐RRP). A distinctive aspect of MN‐RRP is that more than one node can be selected to transmit signals at the same instant, and the count of such selected nodes fluctuates as the system switches. Firstly, in the presence of replay attacks and MN‐RRP scheduling, an adaptive dynamic output‐feedback (ADOF) sliding mode controller is designed based on the actual measured output information. In addition, the reachability of the specified sliding surface and the input‐to‐state stability in probability (ISSiP) of the resulting PDT switched system are discussed, and sufficient conditions are obtained correspondingly. Lastly, a simulation case is presented to illustrate the proposed SMC scheme.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/699a9d50482488d673cd3141https://doi.org/10.1002/rnc.70452
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