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  4. A review on actuation principls for few cubic millimeter sized mobile micro-robots
 
conference paper

A review on actuation principls for few cubic millimeter sized mobile micro-robots

Breguet, Jean-Marc  
•
Johansson, Stefan
•
Driesen, Walter
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2006
Proceedings of the 10th International Conference on New Actuators (Actuator 2006)
10th International Conference on New Actuators (Actuator 2006)

Actuation systems for few cubic millimeter sized mobile autonomous robots are subject to severe constraints in terms of e.g. size, fabrication or power consumption. Also the onboard electronics has limited performance due to both size and power restrictions, so actuation voltages, currents and frequency should be minimized. Various principles of electrical to mechanical energy conversion will be presented (piezoelectric, polymer, electrostatic) and their performances compared considering the above mentioned constraints. For propulsion, a further mechanical to mechanical conversion is necessary to allow long strokes. We will compare four principles for this conversion: inertial drives, walking, inch-worm and propulsion based on asymmetrical friction forces. Solutions where the energy is not onboard but rather scavenged in the environment are also reviewed. These solutions try to circumvent the energy limitations but present some inconveniences, especially when several micro-robots have to be simultaneously steered and/or propelled.

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Type
conference paper
Author(s)
Breguet, Jean-Marc  
Johansson, Stefan
Driesen, Walter
Simu, Urban
Date Issued

2006

Published in
Proceedings of the 10th International Conference on New Actuators (Actuator 2006)
Start page

374

End page

381

Subjects

[HPR-MR]

•

robotics

•

microengineering

•

micro-robotics

•

micro-actuators

•

propulsion

•

low power

•

energy

•

MEMS

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSRO  
Event nameEvent placeEvent date
10th International Conference on New Actuators (Actuator 2006)

Bremen, Germany

14-16 June 2006

Available on Infoscience
January 24, 2007
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/239987
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