Title :
An Analytical Approach for Performance Analysis of Handoffs in the Next Generation Integrated Cellular Networks and WLANs
Author :
Kirsal, Y. ; Gemikonakli, E. ; Ever, E. ; Mapp, G. ; Gemikonakli, O.
Author_Institution :
Comput. Commun. Dept., Middlesex Univ., London, UK
Abstract :
The main feature of the next generation wireless communication systems is the ability to establish ubiquitous and seamless access to various radio access technologies (RATs) and standards. For this reason the integration of cellular and wireless local area networks (WLANs) and performance evaluation of the interaction between these technologies is now an important research area. Modelling such systems for performance evaluation is essential to improve the architecture according to the quality of service (QoS) requirements and performance characteristics. In this paper, an analytical model for performance evaluation of an integrated cellular network and a WLAN is considered. WLAN is deployed inside of the cellular network to support handoffs between cellular networks with higher bandwidth. Such an integrated system can be modelled as a two stage open network. An analytical model is proposed together with an exact solution technique in order to evaluate the performance of an integrated system consisting of a cellular network and a WLAN. A two stage queuing system is considered for this purpose. Numerical results are presented for mean queue length values of cellular system as well as the WLAN.
Keywords :
cellular radio; radio access networks; wireless LAN; WLAN; handoffs; next generation integrated cellular networks; performance analysis; radio access technologies; wireless local area networks; Analytical models; Computational modeling; Land mobile radio cellular systems; Performance evaluation; Wireless LAN; Wireless communication;
Conference_Titel :
Computer Communications and Networks (ICCCN), 2010 Proceedings of 19th International Conference on
Conference_Location :
Zurich
Print_ISBN :
978-1-4244-7114-0
DOI :
10.1109/ICCCN.2010.5560093