Publisher DOI: http://dx.doi.org/10.14279/tuj.eceasst.40.631
http://dx.doi.org/10.14279/tuj.eceasst.40.631.642
Title: Functorial analysis of algebraic higher-order net systems with applications to mobile ad-hoc networks
Language: English
Authors: Golas, Ulrike 
Hoffmann, Kathrin 
Ehrig, Hartmut 
Rein, Alexander 
Padberg, Julia 
Editor: Ermel, Claudia 
Hoffmann, Kathrin 
Keywords: algebraic higher-order nets; mobile ad-hoc networks; skeleton functor
Issue Date: 2011
Publisher: European Association of Software Science and Technology
Journal or Series Name: Electronic communications of the EASST 
Volume: 40
Conference: International Workshop on Petri Nets and Graph Transformation 2010 
Abstract: 
Algebraic higher-order (AHO) net systems are Petri nets with place/transition systems, i.e. place/transition nets with initial markings, and rules as tokens. In several applications, however, there is the need for explicit data modeling. The main idea of this paper is to introduce AHO net systems with high-level net systems and corresponding rules as tokens. We relate them to AHO net systems with low-level net systems as tokens and analyze the firing and transformation properties of the corresponding net class transformation defined as functors between the corresponding categories of AHO net systems.

All concepts and results are explained with an example in the application area of mobile ad-hoc networks. From an abstract point of view, mobile ad-hoc networks consist of mobile nodes which communicate with each other independent of a stable infrastructure, while the topology of the network constantly changes depending on the current position of the nodes and their availability. To ensure satisfactory team cooperation in workflows of mobile ad-hoc networks we use the modeling technique of AHO net systems.
URI: http://hdl.handle.net/20.500.12738/2560
ISSN: 1863-2122
Review status: This version was peer reviewed (peer review)
Institute: Department Informatik 
Fakultät Technik und Informatik 
Type: Article
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