The biological principles of swarm intelligence

被引:348
作者
Simon Garnier
Jacques Gautrais
Guy Theraulaz
机构
[1] Université Paul Sabatier,Centre de Recherches sur la Cognition Animale, UMR
关键词
Swarm intelligence; Social insects; Stigmergy; Self-organization collective behaviors;
D O I
10.1007/s11721-007-0004-y
中图分类号
学科分类号
摘要
The roots of swarm intelligence are deeply embedded in the biological study of self-organized behaviors in social insects. From the routing of traffic in telecommunication networks to the design of control algorithms for groups of autonomous robots, the collective behaviors of these animals have inspired many of the foundational works in this emerging research field. For the first issue of this journal dedicated to swarm intelligence, we review the main biological principles that underlie the organization of insects’ colonies. We begin with some reminders about the decentralized nature of such systems and we describe the underlying mechanisms of complex collective behaviors of social insects, from the concept of stigmergy to the theory of self-organization in biological systems. We emphasize in particular the role of interactions and the importance of bifurcations that appear in the collective output of the colony when some of the system’s parameters change. We then propose to categorize the collective behaviors displayed by insect colonies according to four functions that emerge at the level of the colony and that organize its global behavior. Finally, we address the role of modulations of individual behaviors by disturbances (either environmental or internal to the colony) in the overall flexibility of insect colonies. We conclude that future studies about self-organized biological behaviors should investigate such modulations to better understand how insect colonies adapt to uncertain worlds.
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页码:3 / 31
页数:28
相关论文
共 281 条
[81]  
Aron S.(2004)Group decision making in nest-site selection by honey bees Apidologie 35 101-116
[82]  
Goss S. A. P. J. M.(1965)The transport of prey by ants Behaviour 25 234-271
[83]  
Duerinck G.(2003)From nonlinearity to optimality: pheromone trail foraging by ants Animal Behaviour 66 273-280
[84]  
Deneubourg J. L.(1995)Coordination in distributed building Science 269 686-688
[85]  
Lioni A.(1995)Modeling the collective building of complex architectures in social insects with lattice swarms Journal of Theoretical Biology 177 381-400
[86]  
Detrain C.(1999)A brief history of stigmergy Artificial Life 5 97-116
[87]  
Desneux J.(1991)Social regulation of foraging activities in Polistes dominulus Christ: a systemic approach to behavioural organization Behaviour 116 292-320
[88]  
Detrain C.(1992)The dynamics of colony organization in the primitively eusocial wasp Polistes dominulus (Christ) Ethology 91 177-202
[89]  
Deneubourg J. L.(1998)The origin of nest complexity in social insects Complexity 3 15-25
[90]  
Detrain C.(1998)Response thresholds reinforcement and division of labor in insect societies Proceedings of the Royal Society of London Series B-Biological Sciences 265 327-332