DocumentCode
1788818
Title
Complex communication systems achieving interference-free frequency allocation
Author
Macaluso, Irene ; Cornean, Horia ; Marchetti, Nicola ; Doyle, Linda
Author_Institution
CTVR / The Telecommun. Res. Centre, Trinity Coll. Dublin, Dublin, Ireland
fYear
2014
fDate
10-14 June 2014
Firstpage
1447
Lastpage
1452
Abstract
Telecommunication systems have evolved, from being simple monolithic structures to complex ones. The present paper is an attempt to recast telecom systems in the language of complex systems. As a specific application of complex systems science to telecom systems, we tackle the problem of self-organizing frequency allocation. For this purpose, we model the problem of frequency assignment within the framework of cellular automata and we present an algorithm that reaches an interference-free allocation of the channels in a finite number of steps. By applying a measure of spatial structure and pattern to the two-dimensional lattice representing the frequency allocation, our study shows that autonomous networks assigning frequencies to their cells in a self-organized way, can be defined and therefore studied as complex systems. On the contrary, traditional networks based on centralized pre-planned frequency allocation cannot be considered as complex, according to the meaning given to the word by complex systems science. The present paper is to be considered as a step towards a comprehensive and rigorous study of Complex Communication Systems (CCS), adopting in communication networks design and analysis, the results and philosophy underlying the emerging multi-disciplinary field of Complex Systems Science.
Keywords
cellular automata; channel allocation; frequency allocation; interference suppression; large-scale systems; self-adjusting systems; CCS; autonomous networks assigning frequencies; cellular automata; centralized preplanned frequency allocation; channel allocation; communication networks design; complex communication systems; complex systems science; frequency assignment; interference-free allocation; self-organizing frequency allocation; spatial structure; telecom systems; telecommunication systems; two-dimensional lattice; Automata; Channel allocation; Complexity theory; Entropy; Interference; OFDM; Radio spectrum management;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2014 IEEE International Conference on
Conference_Location
Sydney, NSW
Type
conf
DOI
10.1109/ICC.2014.6883525
Filename
6883525
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