DISTRIBUTED CONTROL ARCHITECTURE FOR AUTOMATED NANOHANDLING
Christian Stolle
2007
Abstract
New distributed control architecture for micro- and nanohandling cells is presented. As a modular system it is designed to handle micro- and nanorobotic automation tasks at semi- up to full automation level. The architecture includes different visual sensors as there are scanning electron microscopes (SEM) and CCD cameras for position tracking as well as non-optical force, temperature, etc. sensors for environmental control. It allows usage of multiple nanorobots in parallel for combined autonomous fabrication tasks. The system provides a unified framework for mobile platforms and linear actors.
References
- Bennewitz, M., Burgard, W., 2000. A Probabilistic Method for Planning Collision-free Trajectories of Multiple Mobile Robots. ECAI'00. Proc. of the workshop Service Robotics - Applications and Safety Issues in an Emerging Market at the 14th European Conference on Artificial Intelligence
- Fatikow, S., Rembold, U., 1997. Microsystem Technology and Microrobotics, Springer-Verlag
- Fatikow, S., Wich, T., Hülsen, H., Sievers, T., and Jähnisch, M. 2006. Microrobot system for automatic nanohandling inside a scanning electron microscope. ICRA'06. Proc. of Int. Conference on Robotics and Automation, Orlando, FL, USA
- Fearing, R.S., 1995. Survey of Sticking Effects for MicroParts, IROS'95. Proc. of IEEE Int. Conf. on Robotics and Intelligent Systems, Pittsburg, USA
- Hoffmann, J., 2003. The Metric-FF Planning System: Translating "Ignoring Delete Lists" to Numeric State Variables. Journal of Artificial Intelligence Research Vol. 20, pp. 291-341
- Hülsen, H., Fatikow, S., 2005. Extrapolation with a selforganising locally interpolating map. ICINCO'05. Proc. of Int. Conference on Informatics in Control, Automation and Robotics, Barcelona, Spain, pp. 173- 178
- Menz, W., Mohr J., Paul O., 2001. Microsystem Technology, Wiley-VCH.
- Ritter, H., Martinetz, T., Schulten, K., 1992. Neural computation and selforganizing maps. Addison Wesley, Reading, Mass.
- Sievers, T., Fatikow, S., 2005. Visual Servoing of a Mobile Microrobot inside a Scanning Electron Microscope, IROS'05. Proc. of IEEE Int. Conference of Intelligent Robots and Systems, pp. 1682-1686
- Thompson, J. A., Fearing, R. S., 2001. Automating microassembly with ortho-tweezers and force sensing. IROS'01. Proceedings IEEE/RSJ International Conference on Intelligent Robots and Systems), Maui, HI, pp. 1327-1334
- Wich, T., Sievers, T., and Fatikow, S., 2006, Assembly inside a Scanning Electron Microscope using Electron Beam induced Deposition, IROS'06. Proc. of IEEE Int. Conference on Intelligent Robots and Systems, pp. 294-299
Paper Citation
in Harvard Style
Stolle C. (2007). DISTRIBUTED CONTROL ARCHITECTURE FOR AUTOMATED NANOHANDLING . In Proceedings of the Fourth International Conference on Informatics in Control, Automation and Robotics - Volume 1: ICINCO, ISBN 978-972-8865-82-5, pages 127-132. DOI: 10.5220/0001642301270132
in Bibtex Style
@conference{icinco07,
author={Christian Stolle},
title={DISTRIBUTED CONTROL ARCHITECTURE FOR AUTOMATED NANOHANDLING},
booktitle={Proceedings of the Fourth International Conference on Informatics in Control, Automation and Robotics - Volume 1: ICINCO,},
year={2007},
pages={127-132},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0001642301270132},
isbn={978-972-8865-82-5},
}
in EndNote Style
TY - CONF
JO - Proceedings of the Fourth International Conference on Informatics in Control, Automation and Robotics - Volume 1: ICINCO,
TI - DISTRIBUTED CONTROL ARCHITECTURE FOR AUTOMATED NANOHANDLING
SN - 978-972-8865-82-5
AU - Stolle C.
PY - 2007
SP - 127
EP - 132
DO - 10.5220/0001642301270132