DocumentCode :
1815725
Title :
Decentralised Autonomic Computing: Analysing Self-Organising Emergent Behaviour using Advanced Numerical Methods
Author :
De Wolf, Tom ; Samaey, Giovanni ; Holvoet, Tom ; Roose, Dirk
Author_Institution :
Dept. of Comput. Sci., KU Leuven
fYear :
2005
fDate :
13-16 June 2005
Firstpage :
52
Lastpage :
63
Abstract :
When designing decentralised autonomic computing systems, a fundamental engineering issue is to assess system-wide behaviour. Such decentralised systems are characterised by the lack of global control, typically consist of autonomous cooperating entities, and often rely on self-organised emergent behaviour to achieve the requirements. A well-founded and practically feasible approach to study overall system behaviour is a prerequisite for successful deployment. On one hand, formal proofs of correct behaviour and even predictions of the exact system-wide behaviour are practically infeasible due to the complex, dynamic, and often nondeterministic nature of self-organising emergent systems. On the other hand, simple simulations give no convincing arguments for guaranteeing system-wide properties. We describe an alternative approach that allows to analyse and assess trends in system-wide behaviour, based on so-called "equation-free" macroscopic analysis. This technique yields more reliable results about the system-wide behaviour, compared to mere observation of simulation results, at an affordable computational cost. Numerical algorithms act at the system-wide level and steer the simulations. This allows to limit the amount of simulations considerably. We illustrate the approach by studying a particular system-wide property of a decentralised control system for automated guided vehicles and we outline a road map towards a general methodology for studying decentralised autonomic computing systems
Keywords :
automatic guided vehicles; automatic programming; control system analysis; distributed programming; multivariable systems; robot programming; self-adjusting systems; automated guided vehicles; autonomous cooperating entities; decentralised autonomic computing systems; decentralised control system; equation-free macroscopic analysis; formal proof; global control; numerical algorithms; numerical methods; self-organising emergent behaviour; self-organising emergent systems; system trend analysis; system trend assessment; system-wide behaviour assessment; Computational efficiency; Computational modeling; Control systems; Design engineering; Design methodology; Distributed control; Equations; Road vehicles; Systems engineering and theory; Vehicle dynamics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Autonomic Computing, 2005. ICAC 2005. Proceedings. Second International Conference on
Conference_Location :
Seattle, WA
Print_ISBN :
0-7965-2276-9
Type :
conf
DOI :
10.1109/ICAC.2005.20
Filename :
1498052
Link To Document :
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