DocumentCode :
11230
Title :
Iterative Control of Piezoactuator for Evaluating Biomimetic, Cilia-Based Micromixing
Author :
Kongthon, Jiradech ; Devasia, Santosh
Author_Institution :
Dept. of Mech. Eng., Univ. of Washington, Seattle, WA, USA
Volume :
18
Issue :
3
fYear :
2013
fDate :
Jun-13
Firstpage :
944
Lastpage :
953
Abstract :
This paper evaluates the use of different excitation waveforms to improve biomimetic-cilia-based mixing in microfluidic applications. A challenge in such studies is that, at high frequencies, vibrations in the piezoactuator can distort the achieved excitation waveform. An iterative approach is used in this work to account for the vibrational dynamics and avoid unwanted vibrations in the achieved excitation waveforms, and thereby enable the evaluation of different excitation waveforms on mixing. The main contribution of this study is to use these controlled, excitation waveforms for showing that: 1) mixing time is substantially reduced by more than an order of magnitude with the use of cilia when compared to the case without cilia, and 2) mixing time with cilia can be further reduced, by more than half, by using an asymmetric excitation waveform when compared to symmetric sinusoidal excitation.
Keywords :
actuators; iterative methods; mechatronics; microfluidics; mixing; vibration control; biomimetic micromixing; cilia-based micromixing; excitation waveform; iterative approach; iterative control; microfluidic application; mixing time; piezoactuator; piezoactuator vibration; symmetric sinusoidal excitation; vibration avoidance; vibrational dynamics; Closed loop systems; Feedforward neural networks; Iterative methods; Oscillators; Resonant frequency; Trajectory; Vibrations; Mechatronic systems; microsystems: nanotechnologies and microtechnologies;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2012.2194302
Filename :
6195017
Link To Document :
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