DocumentCode
2920478
Title
Closed-loop control of blood glucose level in type-1 diabetics: A simulation study
Author
Soylu, Selim ; Danisman, Kenan ; Sacu, Ibrahim Ethem ; Alci, Mustafa
Author_Institution
Dept. of Electr. & Electron. Eng., Erciyes Univ., Kayseri, Turkey
fYear
2013
fDate
28-30 Nov. 2013
Firstpage
371
Lastpage
375
Abstract
Survey on diabetes is one of the popular fields of biomedical signal processing. In this paper, a closed-loop system which utilizes modified Stolwijk-Hardy glucose insulin interaction model is considered. The modified model was derived by adding an exogenous insulin infusion term. Two control algorithms are used for exogenous insulin infusion: a Mamdani type fuzzy logic controller (FLC), and a fuzzy-PID controller. Simulations are performed to assess control function in terms of keeping desired steady state plasma glucose level (0.81 mg/ml) against to exogenous glucose input. Simulation results are notable and significant in terms of controlling blood glucose level (BGL). The control algorithms that applied to the model are firstly proposed, therefore this study is made a contribution to the literature.
Keywords
biochemistry; blood; closed loop systems; diseases; drugs; fuzzy control; medical control systems; molecular biophysics; physiological models; sugar; three-term control; Mamdani type fuzzy logic controller; biomedical signal processing; closed-loop blood glucose level control; control algorithms; control function assessment; diabetes survey; exogenous glucose input; exogenous insulin infusion term; fuzzy-PID controller; modified Stolwijk-Hardy glucose insulin interaction model; simulation study; steady state plasma glucose level; type-1 diabetics; Biological system modeling; Blood; Diabetes; Insulin; Mathematical model; Steady-state; Sugar;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical and Electronics Engineering (ELECO), 2013 8th International Conference on
Conference_Location
Bursa
Print_ISBN
978-605-01-0504-9
Type
conf
DOI
10.1109/ELECO.2013.6713864
Filename
6713864
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