Towards supporting interactions between self-managed cells
File(s)saso07.pdf (470.8 KB)
Accepted version
Author(s)
Type
Conference Paper
Abstract
Management in pervasive systems cannot rely on human intervention or centralised decision-making functions. It must be devolved, based on local decision-making and feedback control-loops embedded in autonomous components. We have previously proposed the self-managed cell (SMC) as an architectural pattern for building ubiquitous applications, where a SMC consists of hardware and software components that form an autonomous administrative domain. SMCs may be realised at different scales, from. body-area networks for health monitoring, to an entire room or larger distributed settings. However to scale to larger systems, SMCs must collaborate with each other and federate or compose in larger SMC structures. This paper discusses requirements for interactions between SMCs and proposes key abstractions and protocols for realising peer-to-peer and composition interactions. These enable SMCs to exchange data, react to external events and exchange policies that govern their collaboration. Dynamically customisable interfaces are used for encapsulation and interaction mediation. Although the examples used here are based on healthcare scenarios, the principles and abstractions described in the paper are more generally applicable.
Version
Accepted version
Editor(s)
GDM, Serugendo
MartinFlatin, JP
Jelasity, M
Zambonelli, F
Date Issued
2007
Citation
2007, pp.224-233
ISBN
978-0-7695-2906-6
Publisher
IEEE COMPUTER SOC
Source Title
1st IEEE International Conference on Self-Adaptive and Self-Organizing Systems (SASO 2007)
Conference
FIRST IEEE INTERNATIONAL CONFERENCE ON SELF-ADAPTIVE AND SELF-ORGANIZING SYSTEMS
Start Page
224
End Page
233
Copyright Statement
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Identifier
http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.65.4141&rep=rep1&type=pdf
Source
1st IEEE International Conference on Self-Adaptive and Self-Organizing Systems (SASO 2007)
Source Place
Boston, MA
Start Date
2007-07-09
Finish Date
2007-07-11
Coverage Spatial
Boston, MA