Title :
Modeling and control of an implantable rotary blood pump for heart failure patients
Author :
AlOmari, A.-H.H. ; Savkin, A.V. ; Ayre, P.J. ; Lim, E. ; Lovell, N.H.
Author_Institution :
Sch. of Electr. Eng. & Telecommun., Univ. of New South Wales (UNSW), Sydney, NSW, Australia
fDate :
June 30 2010-July 2 2010
Abstract :
We propose a dynamical model for mean inlet pressure estimation in an implantable rotary blood pump (IRBP). Noninvasive measurements of pump impeller rotational speed, motor power, and pulse width modulation signal (PWM) to the motor controller were used as inputs to the model. Linear regression between estimated and measured inlet pressure resulted in a highly significant correlation (R2 = 0.9503) and small mean absolute error (e = 2.31 mmHg). The proposed model was also used to design a controller to regulate pump inlet pressure using noninvasively measured pump rotational speed and motor power. The control algorithm was tested using both constant and square wave reference inputs. In the presence of models uncertainties, the controller was able to track and settle to the desired input within a finite number of sampling periods with minimal error.
Keywords :
blood; cardiology; impellers; prosthetics; regression analysis; heart failure patients; implantable rotary blood pump; linear regression; mean inlet pressure estimation; motor controller; motor power; noninvasive measurements; pulse width modulation signal; pump impeller rotational speed; small mean absolute error; Blood; Heart; Impellers; Linear regression; Noninvasive treatment; Pressure control; Pressure measurement; Pulse measurements; Pulse width modulation; Space vector pulse width modulation;
Conference_Titel :
American Control Conference (ACC), 2010
Conference_Location :
Baltimore, MD
Print_ISBN :
978-1-4244-7426-4
DOI :
10.1109/ACC.2010.5530815