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Partial control. 5. A systematic approach to the concurrent design and scale-up of complex processes: The role of control system design in compensating for significant model uncertainties Shinnar R, Dainson B, Rinard IH Industrial & Engineering Chemistry Research, 39(1), 103, 2000 |
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Structural design for on-line process optimization: II. Application to a simulated FCC Loeblein C, Perkins JD AIChE Journal, 45(5), 1030, 1999 |
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Future directions in modelling the FCC process: An emphasis on product quality Christensen G, Apelian MR, Hickey KJ, Jaffe SB Chemical Engineering Science, 54(13-14), 2753, 1999 |
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Feedback control of nonlinear differential difference equation systems Antoniades C, Christofides PD Chemical Engineering Science, 54(23), 5677, 1999 |
5 |
Dominant variables for partial control. 1. A thermodynamic method for their identification Tyreus BD Industrial & Engineering Chemistry Research, 38(4), 1432, 1999 |
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Dominant variables for partial control. 2. Application to the Tennessee Eastman challenge process Tyreus BD Industrial & Engineering Chemistry Research, 38(4), 1444, 1999 |
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Approach to the analysis of the dynamics of industrial FCC units Maya-Yescas R, Bogle D, Lopez-Isunza F Journal of Process Control, 8(2), 89, 1998 |