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Erschienen in: Natural Computing 2/2010

01.06.2010

Bond computing systems: a biologically inspired and high-level dynamics model for pervasive computing

verfasst von: Linmin Yang, Zhe Dang, Oscar H. Ibarra

Erschienen in: Natural Computing | Ausgabe 2/2010

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Abstract

Targeting at modeling the high-level dynamics of pervasive computing systems, we introduce bond computing systems (BCS) consisting of objects, bonds and rules. Objects are typed but addressless representations of physical or logical (computing and communicating) entities. Bonds are typed multisets of objects. In a BCS, a configuration is specified by a multiset of bonds, called a collection. Rules specify how a collection evolves to a new one. A BCS is a variation of a P system introduced by Gheorghe Paun where, roughly, there is no maximal parallelism but with typed and unbounded number of membranes, and hence, our model is also biologically inspired. In this paper, we focus on regular bond computing systems (RBCS), where bond types are regular, and study their computation power and verification problems. Among other results, we show that the computing power of RBCS lies between linearly bounded automata (LBA) and LBC (a form of bounded multicounter machines) and hence, the regular bond-type reachability problem (given an RBCS, whether there is some initial collection that can reach some collection containing a bond of a given regular type) is undecidable. We also study a restricted model (namely, B-boundedness) of RBCS where the reachability problem becomes decidable.

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Metadaten
Titel
Bond computing systems: a biologically inspired and high-level dynamics model for pervasive computing
verfasst von
Linmin Yang
Zhe Dang
Oscar H. Ibarra
Publikationsdatum
01.06.2010
Verlag
Springer Netherlands
Erschienen in
Natural Computing / Ausgabe 2/2010
Print ISSN: 1567-7818
Elektronische ISSN: 1572-9796
DOI
https://doi.org/10.1007/s11047-009-9134-z

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