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Simultaneous Robust Fault and State Estimation for Linear Discrete-Time Uncertain Systems

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  • Feten Gannouni
  • Fayçal Ben Hmida

Abstract

We consider the problem of robust simultaneous fault and state estimation for linear uncertain discrete-time systems with unknown faults which affect both the state and the observation matrices. Using transformation of the original system, a new robust proportional integral filter (RPIF) having an error variance with an optimized guaranteed upper bound for any allowed uncertainty is proposed to improve robust estimation of unknown time-varying faults and to improve robustness against uncertainties. In this study, the minimization problem of the upper bound of the estimation error variance is formulated as a convex optimization problem subject to linear matrix inequalities (LMI) for all admissible uncertainties. The proportional and the integral gains are optimally chosen by solving the convex optimization problem. Simulation results are given in order to illustrate the performance of the proposed filter, in particular to solve the problem of joint fault and state estimation.

Suggested Citation

  • Feten Gannouni & Fayçal Ben Hmida, 2017. "Simultaneous Robust Fault and State Estimation for Linear Discrete-Time Uncertain Systems," Mathematical Problems in Engineering, Hindawi, vol. 2017, pages 1-12, January.
  • Handle: RePEc:hin:jnlmpe:9251031
    DOI: 10.1155/2017/9251031
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