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Received September 12, 2003
Accepted January 9, 2004
- This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
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Receding Horizon Control of Cocurrent First Order Hyperbolic Partial Differential Equation Systems
Department of Chemical & Biomolecular Engineering, Sogang University, 1 Sinsoo-Dong, Mapo-Koo, Seoul 121-742, Korea
jchoi@ccs.sogang.ac.kr
Korean Journal of Chemical Engineering, March 2004, 21(2), 345-351(7), 10.1007/BF02705418
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Abstract
Cocurrent first order hyperbolic partial differential equations (PDE’s) have finite impulse response (FIR) characteristics. A finite difference scheme that preserve these nice dynamic characteristics is recently developed [Choi, submitted]. Employing the resulting genuine FIR model, the design of receding horizon control is easier. In this paper, a receding horizon control scheme for cocurrent first order hyperbolic PDE systems is proposed using the FIR model and is elucidated with a tubular reactor example.
References
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Balas MJ, J. Math. Anal. Appl., 114, 17 (1986)
Choi J, "FIR Property Preserving Finite Difference Scheme for Cocurrent Reaction-Advection Processes," SIAM J. Num. Anal., submitted
Choi J, Kwon WH, SIAM J. Contr. Opt., 42, 839 (2003)
Choi J, Seo BJ, Lee KS, Korean J. Chem. Eng., 18(5), 606 (2001)
Christofides PD, Daoutidis P, AIChE J., 42(11), 3063 (1996)
Christofides PD, Daoutidis P, J. Math. Anal. Appl., 216, 398 (1997)
Cutler CR, Ramaker BL, "Dynamic Matrix Control - A Computer Control Algorithm," Proc. Joint Auto. Contr. Conf. (1980)
Friedman A, "Partial Differential Equations," Holt, Rinerhart & Winston (1976)
Kwon WH, Pearson AE, IEEE Trans. Autom. Control, 22, 838 (1977)
Lapidus L, Pinder GF, "Numerical Solutions of Partial Differential Equations in Science and Engineering," Wiley (1982)
Lewis FL, Syrmos VL, "Optimal Control," Interscience (1995)
Lo CT, Int. J. Control, 18, 273 (1973)
Rawlings JB, Muske KR, IEEE Trans. Autom. Control, 38, 1512 (1993)
Ray WH, "Advanced Process Control," McGraw-Hill (1981)
Rhee HK, Aris R, Amundson NR, "First Order Partial Differential Equations: Vol. 1 and Vol. II," Prentice-Hall (1986)
Russel DL, SIAM Rev., 20, 639 (1978)
Ruthven DM, Sircar S, "Design of Membrane and PSA Processes for Bulk Gas Separation," Proc. 4th Inter. Conf. on Foundation of Computer-aided Process Design, 29 (1994)
Stangeland BE, Foss AS, Ind. Eng. Chem. Res., 38, 38 (1970)
Wang PKC, Int. J. Control, 3, 255 (1966)