Title :
Dynamic Modeling and Control of a Micro-needle Integrated Piezoelectric Micro-pump for Diabetes Care
Author :
Yang, Ruoting ; Zhang, Mingjun ; Tarn, Tyzh-Jong
Author_Institution :
Department of Electrical & Systems Engineering, Washington University, St. Louis, Missouri, USA
Abstract :
This paper proposes a micro-needle integrated piezoelectric micro-pump for subcutaneous injection of insulin for diabetes care. The micro-needle integrated micro-pump is part of an insulin monitoring and delivery system, which consists of a piezoelectric micro-pump, multiple silicon micro-needles, insulin reservoir, wireless telemetry and remote control components. The piezoelectric micro-pump is remotely controlled through wireless telemetry. A nonlinear dynamic model is presented to interpret/predict dynamics of the integrated micro-device, and used to design feedback control system for the insulin delivery. We propose a novel nonlinear dynamic model for the micro-needle integrated piezoelectric micro-pump and feedback control system design.
Keywords :
Piezoelectric micro-pump; diabetes care; dynamic analysis and control; insulin delivery; micro-needles; Control systems; Diabetes; Feedback control; Insulin; Micropumps; Nonlinear dynamical systems; Remote monitoring; Reservoirs; Silicon; Telemetry; Piezoelectric micro-pump; diabetes care; dynamic analysis and control; insulin delivery; micro-needles;
Conference_Titel :
Nanotechnology, 2006. IEEE-NANO 2006. Sixth IEEE Conference on
Print_ISBN :
1-4244-0077-5
DOI :
10.1109/NANO.2006.247592