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April 1, 2026Measurement and Control0 citationsOpen Access

Multi-model fusion-based sensor fault tolerant second order sliding mode control application on a chemical reactor

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KEKhouloud ElghoulUniversity of GabèsKDKhadija DehriUniversity of GabèsRARidha Ben Abdennour

Key Points

  • The research aims to develop a control strategy that maintains performance despite sensor faults in chemical reactors.
  • Implemented a fault-tolerant control strategy combining second-order sliding mode control and multimodel fusion.
  • Developed a second-order sliding mode multiobserver for simultaneous estimation of system states and sensor faults.
  • Validated the method through practical implementation on a chemical transesterification reactor.
  • The proposed methodology effectively compensates for sensor faults.
  • Demonstrated robustness and effectiveness in control performance during experiments.

Abstract

The decoupled multimodel framework offers an effective alternative for modeling, control, and diagnosis of nonlinear systems. Its structure relies on interacting with sub-models, with the degree of interaction varying across systems, which directly influences the control design. This paper proposes a novel fault-tolerant control strategy that combines second-order sliding mode control with a multimodel fusion approach to compensate sensor faults. A second-order sliding mode multiobserver is developed to simultaneously estimate the system states and sensor faults. The proposed methodology is validated through a practical implementation on a chemical transesterification reactor, demonstrating its effectiveness and robustness.

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Cite This Study

Elghoul et al. (2026) studied this question.

synapsesocial.com/papers/69cd7a615652765b073a774ehttps://doi.org/10.1177/00202940261436462
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