Title of article :
Tracking control and robustness analysis for a nonlinear model of human heart rate during exercise
Author/Authors :
Mazenc، نويسنده , , Frédéric and Malisoff، نويسنده , , Michael and de Querioz، نويسنده , , Marcio، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
7
From page :
968
To page :
974
Abstract :
The control of human heart rate during exercise is an important problem that has implications for the development of protocols for athletics, assessing physical fitness, weight management, and the prevention of heart failure. Here we provide a new stabilization technique for a recently-proposed nonlinear model for human heart rate response that describes the central and peripheral local responses during and after treadmill exercise. The control input is the treadmill speed, and the control objective is to make the heart rate track a prescribed reference trajectory. We use a strict Lyapunov function analysis to design new state and output feedback tracking controllers that render the error dynamics globally exponentially stable. This allows us to prove input-to-state stability properties for our feedback stabilized systems under actuator errors. This robustness property quantifies the effects of variations of the treadmill speed from the controller values. We illustrate our feedback design through simulations.
Keywords :
Cardiovascular System , Nonlinear systems , feedback control
Journal title :
Automatica
Serial Year :
2011
Journal title :
Automatica
Record number :
1448312
Link To Document :
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