Bio-Inspired Self-Organizing Robotic Systems

Yan Meng, Yaochu Jin (Herausgeber)

Buch | Hardcover
X, 275 Seiten
2011 | 2011
Springer Berlin (Verlag)
978-3-642-20759-4 (ISBN)
160,49 inkl. MwSt
Inspired by biological phenomena such as social insect behavior and molecular morphogenesis, self-organizing approaches in advanced robotic systems have an ever-higher profile, and this valuable reference covers the state of the art in this field.

Self-organizing approaches inspired from biological systems, such as social insects, genetic, molecular and cellular systems under morphogenesis, and human mental development, has enjoyed great success in advanced robotic systems that need to work in dynamic and changing environments. Compared with classical control methods for robotic systems, the major advantages of bio-inspired self-organizing robotic systems include robustness, self-repair and self-healing in the presence of system failures and/or malfunctions, high adaptability to environmental changes, and autonomous self-organization and self-reconfiguration without a centralized control. "Bio-inspired Self-organizing Robotic Systems" provides a valuable reference for scientists, practitioners and research students working on developing control algorithms for self-organizing engineered collective systems, such as swarm robotic systems, self-reconfigurable modular robots, smart material based robotic devices, unmanned aerial vehicles, and satellite constellations.

Part I: Self-Organizing Swarm Robotic Systems

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Part II: Self-Reconfigurable Modular Robots

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Part III: Autonomous Mental Development in Robotic Systems

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Part IV: Special Applications

Part III: Autonomous Mental Development in Robotic Systems

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Part IV: Special Applications.

Erscheint lt. Verlag 8.5.2011
Reihe/Serie Studies in Computational Intelligence
Zusatzinfo X, 275 p.
Verlagsort Berlin
Sprache englisch
Maße 155 x 235 mm
Gewicht 669 g
Themenwelt Informatik Theorie / Studium Künstliche Intelligenz / Robotik
Technik Elektrotechnik / Energietechnik
Schlagworte bio-inspired robotic systems • Robotics • Self-organizing robotic systems
ISBN-10 3-642-20759-6 / 3642207596
ISBN-13 978-3-642-20759-4 / 9783642207594
Zustand Neuware
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