DocumentCode :
3085505
Title :
Parametric ARX Modeling of the Electrolytic Smelter Pot
Author :
Da Silva, Antonio José ; Neto, João Viana Da Fonseca ; Nagem, Nilton Freixo
Author_Institution :
Lab. of Process Control, Fed. Univ. of Maranhao, Sao Luis
fYear :
2009
fDate :
25-27 March 2009
Firstpage :
217
Lastpage :
222
Abstract :
The anode effect that occurs in electrolytic smelter pot is responsible for gases such as PFC´s. These gases contributeto the greenhouse effect, and in addition jeopardizes its productive capacity. From the voltage (output) and current (input) signals and based on systems identification theory, the ARX models of the electrolytic smelter pot are built to represent the steady state operation and the anode effect occurrence. After the simulations based on real anode effect signal and algebraic properties of the transfer functions some models are validated based on the time response speed ofconvergence. The selected transfer functions of the electrolytic smelter pot are used to perform the steady state representation and are oriented to predict the anode effect by the increasing of voltage. Therefore, this paper showsour latest investigation on parametric ARX models that represent the behavior of the plant in the neighborhood of its instability operation point.
Keywords :
air pollution; algebra; anodes; electrolysis; electrolytic devices; smelting; transfer functions; algebraic properties; anode effect; electrolytic smelter pot; greenhouse effect; instability operation point; parametric ARX modeling; steady state operation; systems identification theory; transfer functions; Smelting; ARX model; Anode Effect; Electrolytic Smelter Pot; Parametric Estimation; Parametric modeling of Dynamic Systems; System identification; Transfer Function;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Modelling and Simulation, 2009. UKSIM '09. 11th International Conference on
Conference_Location :
Cambridge
Print_ISBN :
978-1-4244-3771-9
Electronic_ISBN :
978-0-7695-3593-7
Type :
conf
DOI :
10.1109/UKSIM.2009.94
Filename :
4809766
Link To Document :
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