Please use this identifier to cite or link to this item: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/10180
Title: A Channel Hopping Algorithm for Guaranteed Rendezvous in Cognitive Radio Ad Hoc Networks Using Swarm Intelligence
Authors: Ohize, Henry
Mqhele, Dlodlo
Keywords: Cognitive radio
Ad hoc network
CRAHN
Rendezvous
TTR
ETTR
Issue Date: 13-May-2017
Publisher: Wireless Personal Communications, Springer Publisher
Citation: Ohize, H.O and Mqhele Dlodlo, “A Channel Hopping Algorithm for Guaranteed Rendezvous in Cognitive Radio Ad Hoc Networks Using Swarm Intelligence” Wireless Personal Communications, Springer Publisher 2017.
Abstract: Achieving fast Time to Rendezvous (TTR) on a common coordination channel in an Ad hoc network remains a contemporary issue in Cognitive Radio research. In this paper, we present a new channel hopping algorithm for the selection of control channel in a heterogeneous, spatial, and time varying spectrum environment, with no pre-existing infrastructure such as an access point or a base station. We adopt the use of the biomimicry concept to develop a swarm intelligence based mechanism, which will guide nodes to hop unto the most prominent channel while waiting for potential neighbourhood discovery. A closed form expression for the TTR and Expected TTR (ETTR) was derived for various network scenarios. We provide a theoretical analysis of the TTR and ETTR of our algorithm, and show that our algorithm provides a TTR within order O(M) when compared with Generated Orthogonal Sequence and Channel Rendezvous Sequence of order OP2 Þ. The algorithm further provides an improved performance in comparison to the Jump–Stay and Enhanced Jump–Stay Rendezvous Algorithms.
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/10180
Appears in Collections:Electrical/Electronic Engineering

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