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Distributed Control Strategy with Smith's Predictor in a Pilot-Scale Diabatic Distillation Unit
Authors:Elton Joao Zierhut  Rodrigo Battisti  Ricardo Antonio Francisco Machado  Cintia Marangoni
Affiliation:1. University of Joinville Region, Process Engineering Graduate Program, 89219-710 Brazil;2. Federal Institute of Education, Science and Technology of Santa Catarina, 88813-600 Brazil;3. Federal University of Santa Catarina, Chemical Engineering Graduate Program, 88040-900 Brazil
Abstract:Intrinsic characteristics of distillation such as dead time and high nonlinearities do not allow the complete elimination of transient times when any external disturbance or set-point change occurs. Thus, aiming at the use of easy-tuning systems, a distributed-action control in trays of a diabatic distillation unit with Smith's predictor was implemented in the Simulink environment to further reduce transient times and out-of-specification product. The distributed-action strategy with Smith's predictor led to a reduction of 33.3 min (33 %) in the transient time of the top temperature control loop and 66 % in out-of-specification product, when compared with the conventional strategy, and thus is shown to be an efficient approach to increasing the productivity of distillation plants.
Keywords:Distributed-action control  Input-output model  Smith's predictor  Transient time
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