1 |
Systematic Design of Active Constraint Switching Using Classical Advanced Control Structures Reyes-Lua A, Skogestad S Industrial & Engineering Chemistry Research, 59(6), 2229, 2020 |
2 |
Systematic Design of Active Constraint Switching Using Classical Advanced Control Structures (vol 59, pg 2229, 2020) Reyes-Lua A, Skogestad S Industrial & Engineering Chemistry Research, 59(19), 9342, 2020 |
3 |
A First-Principles Approach for Control-Oriented Modeling of De-oiling Hydrocyclones Vallabhan KGM, Holden C, Skogestad S Industrial & Engineering Chemistry Research, 59(42), 18937, 2020 |
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Multi-input single-output control for extending the operating range: Generalized split range control using the baton strategy Reyes-Lua A, Skogestad S Journal of Process Control, 91, 1, 2020 |
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Thermal coupling opportunities for floating natural gas liquefaction plants Halvorsen IJ, Dejanovic I, Olujic Z, Skogestad S Chemical Engineering Research & Design, 147, 346, 2019 |
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The use of first principles model for evaluation of adaptive soft sensor for multicomponent distillation unit Torgashov A, Skogestad S Chemical Engineering Research & Design, 151, 70, 2019 |
7 |
A new termination criterion for sampling for surrogate model generation using partial least squares regression Straus J, Skogestad S Computers & Chemical Engineering, 121, 75, 2019 |
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Feedback Real-Time Optimization Strategy Using a Novel Steady-state Gradient Estimate and Transient Measurements Krishnamoorthy D, Jahanshahi E, Skogestad S Industrial & Engineering Chemistry Research, 58(1), 207, 2019 |
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Online Process Optimization with Active Constraint Set Changes using Simple Control Structures Krishnamoorthy D, Skogestad S Industrial & Engineering Chemistry Research, 58(30), 13555, 2019 |
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On combining self-optimizing control and extremum-seeking control - Applied to an ammonia reactor case study Straus J, Krishnamoorthy D, Skogestad S Journal of Process Control, 78, 78, 2019 |