Title
Estimating cell throughput of OFDMA systems with scheduling
Abstract
To dimension cellular wireless networks, accurate estimates of the cell throughput have to be available. Consideration of all requirements of future packet-switched networks, especially the impact of scheduling, leads to extensive system level simulations that have to be performed in order to obtain the cell throughput. A semi-analytical methodology is proposed in this paper that is able to give average cell throughput estimates for given network layouts without performing extensive system level simulations. The signal to interference ratio (SIR) probability density function (pdf) which reflects the behavior that is achieved after scheduling of users is derived. Based on the SIR pdf, probabilities for the usage of modulation and coding schemes are obtained and the average cell throughput is calculated. Results are presented for well known scheduling algorithms and a channel model that is valid for networks utilizing frequency diversity by distributing the subcarriers over the whole system bandwidth like the partial usage of subchannels (PUSC) mode in IEEE 802.16e. It is shown that the average cell throughput estimates are within 10 % of the average cell throughput that is obtained by system level simulations which model all the properties including scheduling in detail. Due to the usage of analytical expressions, results can be obtained in less than a minute for the proposed methodology while a system level simulation usually takes several hours.
Year
DOI
Venue
2009
10.1145/1582379.1582704
IWCMC
Keywords
Field
DocType
partial usage,channel model,proposed methodology,system level simulation,average cell throughput estimate,average cell throughput,ofdma system,estimating cell throughput,whole system bandwidth,cell throughput,sir pdf,extensive system level simulation,wireless network,signal to interference ratio,probability density function,scheduling algorithm
Wireless network,Signal-to-interference ratio,System-level simulation,Diversity scheme,Fair-share scheduling,Computer science,Scheduling (computing),Computer network,Maximum throughput scheduling,Round-robin scheduling
Conference
Citations 
PageRank 
References 
1
0.40
9
Authors
4
Name
Order
Citations
PageRank
Andreas Fernekess171.28
Anja Klein217389.48
Bernhard Wegmann310215.49
Karl Dietrich440.81