This paper presents a novel and efficient analytic framework for the performance analysis and capacity-assignment optimisation of a wireless GSM cell employing the Re-Use Partitioning (RUP) policy. RUP splits hierarchically the available bandwidth into multiple layers of frequencies and allows tighter frequency re-use in order to achieve a higher network capacity. In this context, a queueing network model (QNM) of a wireless cell is proposed consisting of a hierarchical layer configuration which is decomposed into individual GE/GE/c/c loss systems each of which is analysed in isolation via a more general maximum entropy (ME) state probability solution, subject to appropriate GE-type flow formulae and mean value constraints. Moreover, a new performance optimisation index is proposed as the weighted average non-blocking probability of traffic over all frequency layers. For illustration purposes, the proposed index is utilised to formulate and solve two capacity-assignment optimisation problems. Numerical examples are included to validate the relative accuracy of the analytic GE-type performance metrics against simulation and assess the optimal re-use partitioning policy of the available bandwidth.
Identifer | oai:union.ndltd.org:BRADFORD/oai:bradscholars.brad.ac.uk:10454/468 |
Date | January 2002 |
Creators | Kouvatsos, Demetres D., Awan, Irfan U., Al-Begain, Khalid, Tantos, Sotiris |
Source Sets | Bradford Scholars |
Language | English |
Detected Language | English |
Type | Article |
Rights | © United Kingdom Simulation Society. Reproduced in accordance with the publisher's self-archiving policy. |
Relation | http://ijssst.info/Vol-03/No-1&2/Kouvatsos.pdf |
Page generated in 0.0037 seconds