DocumentCode :
2740009
Title :
Non-invasive measurements based model predictive control of pulsatile flow in an implantable rotary blood pump for heart failure patients
Author :
AlOmari, Abdul-Hakeem H. ; Javed, Faizan ; Savkin, Andrey V. ; Lim, Einly ; Salamonsen, Robert F. ; Mason, David G. ; Lovell, Nigel H.
Author_Institution :
Grad. Sch. of Biomed. Eng. (GSBmE), Univ. of New South Wales (UNSW), Sydney, NSW, Australia
fYear :
2011
fDate :
20-23 June 2011
Firstpage :
491
Lastpage :
496
Abstract :
In this paper, firstly, we propose a linear time-variant (LTV) model to estimate the mean pulsatile flow (Qp) in an implantable rotary blood pump (RBP). Non-invasive measurement of mean pulse-width modulation (PWM) signal acquired from the pump controller was used as an input to estimate the mean pulsatility index of pump rotational speed (PIω) with this subsequently used to estimate the mean Qp. Secondly, the proposed LTV model was used to develop a controller to regulate and track the variations in the mean Qp and PIω We used a model predictive control (MPC) approach to develop the controller where this allowed us to explicitly apply pre-defined practical constraints to control input PWM as well as the output and the states of the system including; Qp and PIω The model and the controller were tested using a parameter optimized model of the cardiovascular system-rotary blood pump under wide ranges of speed ramp experiments carried out under different operating conditions such as variations in afterload, preload and heart contractility.
Keywords :
blood; cardiovascular system; control system synthesis; diseases; flow control; haemodynamics; medical control systems; predictive control; pulsatile flow; pulse width modulation; rotational flow; LTV model; cardiovascular system rotary blood pump; heart contractility; heart failure patients; implantable rotary blood pump; linear time variant model; mean pulsatile flow; mean pulsatility index; mean pulse width modulation signal; model predictive control; noninvasive measurement; parameter optimized model; pump controller; pump rotational speed; Blood; Equations; Heart; Indexes; Mathematical model; Physiology; Pulse width modulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control & Automation (MED), 2011 19th Mediterranean Conference on
Conference_Location :
Corfu
Print_ISBN :
978-1-4577-0124-5
Type :
conf
DOI :
10.1109/MED.2011.5982982
Filename :
5982982
Link To Document :
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