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Design and dynamic modeling of autonomous coaxial micro helicopters
Details
This book is a result of the European framework project muFly, aiming at the design and realization of an autonomous micro helicopter comparable to a small bird in size and mass. It introduces two prototype designs for the muFly helicopter: a modular one for fast sensor and actuator exchange and easy configuration testing, and a highly integrated design to reduce the total mass and integrate the complete sensor set for autonomous flight. Furthermore, a theoretical foundation for coaxial micro helicopter design is laid. In particular focus are passive stabilization and steering principles of the helicopter. A modular dynamic model is developed, which incorporates the characteristics of a hingeless rotor system, two optional steering principles, and a stabilizer bar module, which is also validated experimentally. Finally, the dynamic model is used for a design parameter study of the most relevant system design parameters. It aims at passive roll and pitch stabilization of the helicopter without a stabilizer bar. By illuminating the aspects of prototype design, dynamic modeling, simulation, and design parameter optimization, this book is a contribution towards palm-sized MAVs.
Autorentext
Born 1980 in Soltau (GER). Intermediate diploma in General Engineering Science (TUHH, 2003), Dipl.-Ing. in Engineering Cybernetics (Uni Stuttgart, 2006), MS in Engineering Science and Mechanics (Georgia Tech, 2006). Research and teaching assistant at Prof. Siegwart's ASL (ETH Zürich, 2006-2010). Currently development engineer at Bosch Power Tools.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783838121987
- Auflage Aufl.
- Sprache Englisch
- Genre Maschinenbau
- Anzahl Seiten 176
- Größe H220mm x B150mm x T11mm
- Jahr 2012
- EAN 9783838121987
- Format Kartonierter Einband
- ISBN 3838121988
- Veröffentlichung 29.06.2012
- Titel Design and dynamic modeling of autonomous coaxial micro helicopters
- Autor Christian Bermes
- Untertitel Towards palm-sized MAVs
- Gewicht 280g
- Herausgeber Südwestdeutscher Verlag für Hochschulschriften