Presentation 2005-04-21
Network Simulator ns-2 Analysis on the Optimal Transmission Rate in the Interference Dominant Fast Fading Mobile Radio Environments
Kenji ARIMOTO, Hiroshi SUZUKI, Kazuhiko FUKAWA,
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Abstract(in English) This paper shows that there exists the optimal MAC layer packet length that maximizes the packet transmission rate in the interference dominant fast fading environments. The network simulator ns-2 is utilized with some improvement in order to simulate unified situations of the packet communication protocols such as FTP, TCP and MAC, and the fading phenomena in the physical layer. An improved error model for ns-2 is installed and utilized in the analysis. The new error model is based on CIR Markov model mathematically derived for the physical layer in mobile communications including instantaneous fading and interferences. First, the CIR Markov model is described. Next, the throughput characteristics are discussed by applying the CIR Markov model to the up and down links. Finally, the characteristics on the throughput and the effective transmission rate obtained by ns-2 with the new model shows that there exists optimal MAC layer data length.
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Keyword(in English) Radio Packet Communications / All-IP / Fast Fading / CIR-based Markov Model / ns-2
Paper # RCS2005-4
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Committee RCS
Conference Date 2005/4/14(1days)
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Registration To Radio Communication Systems (RCS)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Network Simulator ns-2 Analysis on the Optimal Transmission Rate in the Interference Dominant Fast Fading Mobile Radio Environments
Sub Title (in English)
Keyword(1) Radio Packet Communications
Keyword(2) All-IP
Keyword(3) Fast Fading
Keyword(4) CIR-based Markov Model
Keyword(5) ns-2
1st Author's Name Kenji ARIMOTO
1st Author's Affiliation Tokyo Institute of Technology()
2nd Author's Name Hiroshi SUZUKI
2nd Author's Affiliation Tokyo Institute of Technology
3rd Author's Name Kazuhiko FUKAWA
3rd Author's Affiliation Tokyo Institute of Technology
Date 2005-04-21
Paper # RCS2005-4
Volume (vol) vol.105
Number (no) 14
Page pp.pp.-
#Pages 6
Date of Issue