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Exponential Stabilization of Linear Time-Varying Differential Equations with Uncertain Coefficients by Linear Stationary Feedback

Author

Listed:
  • Vasilii Zaitsev

    (Laboratory of Mathematical Control Theory, Udmurt State University, 426034 Izhevsk, Russia
    These authors contributed equally to this work.)

  • Inna Kim

    (Laboratory of Mathematical Control Theory, Udmurt State University, 426034 Izhevsk, Russia
    These authors contributed equally to this work.)

Abstract

We consider a control system defined by a linear time-varying differential equation of n -th order with uncertain bounded coefficients. The problem of exponential stabilization of the system with an arbitrary given decay rate by linear static state or output feedback with constant gain coefficients is studied. We prove that every system is exponentially stabilizable with any pregiven decay rate by linear time-invariant static state feedback. The proof is based on the Levin’s theorem on sufficient conditions for absolute non-oscillatory stability of solutions to a linear differential equation. We obtain sufficient conditions of exponential stabilization with any pregiven decay rate for a linear differential equation with uncertain bounded coefficients by linear time-invariant static output feedback. Illustrative examples are considered.

Suggested Citation

  • Vasilii Zaitsev & Inna Kim, 2020. "Exponential Stabilization of Linear Time-Varying Differential Equations with Uncertain Coefficients by Linear Stationary Feedback," Mathematics, MDPI, vol. 8(5), pages 1-16, May.
  • Handle: RePEc:gam:jmathe:v:8:y:2020:i:5:p:853-:d:362296
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