DocumentCode
602471
Title
Visual servo control of electromagnetic actuation for a family of microrobot devices
Author
Piepmeier, J.A. ; Firebaugh, S.L.
Author_Institution
Weapons & Syst. Eng., U.S. Naval Acad., Annapolis, MD, USA
fYear
2013
fDate
15-17 Jan. 2013
Firstpage
209
Lastpage
214
Abstract
Microrobots have a number of potential applications for micromanipulation and assembly, but also offer challenges in power and control. This paper describes the control system for magnetically actuated microrobots operating at the interface between two immiscible fluids. The microrobots are 20 μm thick and approximately 100-200 μm in lateral dimension. Several different robot shapes are investigated. The robots and fluid are in a 20 × 20 mm vial placed at the center of four electromagnets Pulse width modulation of the electromagnet currents is used to control robot speed and direction, and a linear relationship between robot speed and duty cycle was observed, although the slope of that dependence varied with robot type and magnet. A proportional controller has been implemented and characterized. The steady-state error with this controller ranged from 6.4 to 12.8 pixels, or 90-180 μm.
Keywords
electromagnetic actuators; electromagnets; magnetic actuators; micromanipulators; proportional control; robot vision; servomechanisms; velocity control; control system; duty cycle; electromagnet currents; electromagnetic actuation; immiscible fluids; magnetically actuated microrobots; micromanipulation; microrobot devices; proportional controller; pulse width modulation; robot direction control; robot speed control; size 20 mum; steady-state error; visual servo control; Electromagnetics; Electromagnets; Fluids; Magnetic devices; Magnetic resonance imaging; Robots; Shape;
fLanguage
English
Publisher
ieee
Conference_Titel
Robot Vision (WORV), 2013 IEEE Workshop on
Conference_Location
Clearwater Beach, FL
Print_ISBN
978-1-4673-5646-6
Electronic_ISBN
978-1-4673-5647-3
Type
conf
DOI
10.1109/WORV.2013.6521940
Filename
6521940
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