Miniaturised nanohandling microrobots are used to handle objects of less than 100 μm size with accuracy down to several nanometres. Operating a nanohandling robot in the microworld and nanoworld presents challenges not found in the macroworld. To allow a good manipulability, we propose a teleoperation system, which is based on the innovative approach of haptic‐based model‐oriented teleoperation of nanohandling robots. The newly developed haptic interface for a microrobot cell is used in the proposed teleoperation system for the teleoperation of the industrial nanohandling robot. This paper presents the scanning electron microscope based nanohandling station that uses the proposed haptic‐based model‐oriented teleoperation approach. Further, we discuss the integration of a force microsensor into the teleoperation interface. The first experiments and theoretical research show that the proposed approach can improve haptic‐based teleoperation of nanohandling robots.
Article navigation
Research Article|
March 01 2004
Haptic interface for a nanohandling robot
A. Shirinov;
A. Shirinov
Division of Microrobotics and Control Engineering, University of Oldenburg, Uhlhornsweg, Germany
Search for other works by this author on:
J. Kamenik;
J. Kamenik
Division of Microrobotics and Control Engineering, University of Oldenburg, Uhlhornsweg, Germany
Search for other works by this author on:
S. Fatikow
S. Fatikow
Division of Microrobotics and Control Engineering, University of Oldenburg, Uhlhornsweg, Germany
Search for other works by this author on:
Publisher: Emerald Publishing
Online ISSN: 1758-4078
Print ISSN: 0144-5154
© Emerald Group Publishing Limited
2004
Assembly Automation (2004) 24 (1): 78–87.
Citation
Shirinov A, Kamenik J, Fatikow S (2004), "Haptic interface for a nanohandling robot". Assembly Automation, Vol. 24 No. 1 pp. 78–87, doi: https://doi.org/10.1108/01445150410517200
Download citation file:
196
Views
New and popular articles
Suggested Reading
Lemur IIb: a robotic system for steep terrain access
Industrial Robot (July,2006)
Robotic machining from programming to process control: a complete solution by force control
Industrial Robot (August,2008)
Force control for industrial applications using a fuzzy PI controller
Sensor Review (March,2004)
Customers demand high-quality and low-priced load cells
Sensor Review (September,2001)
Taiwan contract for British company
Anti-Corrosion Methods and Materials (August,1998)
Related Chapters
Chapter 21 Robotics and Growth
Economic Growth and Development
Introducing Coding as a Literacy on Mobile Devices in the Early Years
Mobile Technologies in Children’s Language and Literacy: Innovative Pedagogy in Preschool and Primary Education
Technologies Driving Human–machine Collaboration
Augmenting Humanity: Industry 5.0 and the Rise Of Human-Machine Collaboration
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
