CAUSTIC DILUTION CONTROL: AN INDUSTRIAL APPLICATION

M.S. Sidhu, K.E. Kwok, and M.W. Foley

References

  1. [1] G.A. Smook, Handbook of pulp and paper technology, 2nd ed.(Vancouver: Angus Wide Publications, 1992).
  2. [2] G. Stephanopoulos, Chemical process control: An introductionto theory and practice (Englewood Cliffs, NJ: Prentice-Hall,1984).
  3. [3] CRC handbook of chemistry and physics, 80th ed. (Cleveland:CRC Press, 2000).
  4. [4] J.P. Shunta & W. Fehervari, Nonlinear control of liquid level,Instrumentation Technology, 23, 1976, 43.
  5. [5] T.F. Cheung & W. Luyben, Nonlinear and non-conventionalliquid level controllers, Industrial & Engineering ChemistryFundamentals, 19, 1980, 93–98. doi:10.1021/i160073a016
  6. [6] K. McDonald, T. McAvoy, & A. Tits, Optimal averaging levelcontrol, American Institute of Chemical Engineers Journal,32, 1986, 75–86.
  7. [7] P. Campo & M. Morari, Model predictive optimal averag-ing level control, American Institute of Chemical EngineersJournal, 35, 1989, 579–591.
  8. [8] J.D. Kelly, Tuning digital PI controllers for minimal variancein manipulated input moves applied to imbalanced systemswith delay, Canadian Journal of Chemical Engineering, 76,1998, 967–974.
  9. [9] M.W. Foley, K.E. Kwok, & B.R. Copeland, Polynomial LQsolution to the averaging level control problem, 16th Int. Conf.on CAD/CAM, Robotics and Factories of the Future, Port ofSpain, Trinidad, West Indies, June 26–28, 2000.
  10. [10] K.J. Astrom & L.B. Wittenmark, Computer controlled systemstheory and design (Englewood Cliffs, NJ: Prentice-Hall, 1990).
  11. [11] T.J. Harris & J.F. MacGregor, Design of multivariable linear-quadratic controllers using transfer functions, American Institute of Chemical Engineers Journal, 33, 1987, 1481–1495.
  12. [12] E.C. Horton, M.W. Foley, & K.E. Kwok, Performance assessment of level controllers, International Journal of AdaptiveControl and Signal Processing, 17, 2003, 663–684. doi:10.1002/acs.771

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