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Anti-windup schemes for uncertain nonlinear systems

Anti-windup schemes for uncertain nonlinear systems

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Several processes are nonlinear and operate under input constraints. Their effective control requires model-based techniques whose performance is often affected by modelling uncertainties. The paper addresses the control of single-input single-output nonlinear systems with input constraints in the presence of modelling errors. A nonlinear internal model control based on input output linearisation is designed, and an internal model control with antiwindup which removes the nonlinear mismatch due to input constraints is given. An adaptive internal model control with anti-windup to account for parameter uncertainty and an augmented internal model control with anti-windup to attenuate the effect of modelling errors, are proposed and analysed theoretically. Simulation results on temperature control of a continuous stirred tank reactor demonstrate the benefits of the proposed anti-windup schemes.

References

    1. 1)
      • S.S. SASTRY , A. ISIDORI . Adaptive control of linearizable systems. IEEE Trans. , 11 , 1123 - 1131
    2. 2)
      • HANUS, R., KINNAERT, M.: `Control of constrained multivariable systems using the conditioning technique', Proceedings of American Control Conference, 1989, Pittsburgh, PA, p. 1711–1718.
    3. 3)
      • VALLURI, S., SOROUSH, M.: `Input constraint handling and windup compensation in nonlinear control', Proceedings of American Control Conference, 1997, Albuquerque, NM, p. 1734–1738.
    4. 4)
      • N. KAPOOR , P. DAOUTIDIS . An observer-based anti-windup scheme for nonlinear systems with input constraints. Int. J. Control , 1 , 18 - 29
    5. 5)
      • Q. HU , G.P. RANGAIAH . Adaptive internal model control of nonlinear processes. Chem. Eng. Sci. , 9 , 1205 - 1220
    6. 6)
      • M.V. Kothare , P.J. Campo , M. Morari , C.N. Nett . A unified framework for the study of anti-windup designs. Automatica , 12 , 1869 - 1883
    7. 7)
      • Q. HU , G.P. RANGAIAH . Strategies for enhancing nonlinear internal model control of pH processes. J. Chem. Eng. Japan , 1 , 59 - 68
    8. 8)
      • R. Hanus , M. Kinnaert , J.-L. Henrotte . Conditioning technique, a general anti-windup and bumpless transfer method. Automatica , 6 , 729 - 739
    9. 9)
      • P.J. CAMPO , M. MORARI . Robust control of processes subject to saturation nonlinearities. Comput. Chem. Engng , 343 - 358
    10. 10)
      • H.K. Khalil . (1996) , Nonlinear systems.
    11. 11)
      • H.J. SUSSMANN , P.V. KOKOTOVIC . The peaking phenomenon and global stabilizing of nonlinear systems. IEEE Trans. , 4 , 424 - 440
    12. 12)
      • A.A. ALONSO , J.R. BANGA . Design of a class of stabilizing nonlinear state feedback controllers with bounded inputs. Ind. Eng. Chem. Res. , 1 , 131 - 144
    13. 13)
      • K.J. ASTROM , B. WITTENMARK . (1984) , Computer controlled systems theory and design.
    14. 14)
      • A. ZHENG , M.V. KOTHARE , M. MORARI . Anti-windup design for internal model control. Int. J. Control , 5 , 1015 - 1024
    15. 15)
      • T.A. KENDI , F.J. DOYLE . An anti-windup scheme for multivariable nonlinear systems. J. Process Control , 5 , 329 - 343
    16. 16)
      • ASTROM, K.J., RUNDQWIST, L.: `Integrator windup and how to avoid it', Proceedings of American Control Conference, 1989, Pittsburgh, PA, p. 1693–1698.
    17. 17)
      • M.J. KURTZ , M.A. HENSON . Input-output linearizing control of constrained nonlinear processes. J. Process Control , 1 , 3 - 17
    18. 18)
      • J.P. CALVET , Y. ARKUN . Feedforward and feedback linearization of nonlinear systems and its implementation using internal model control. Ind. Eng. Chem. Res. , 10 , 1822 - 1831
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