Title :
An Analytical Model for the Capacity Estimation of Combined VoIP and TCP File Transfers over EDCA in an IEEE 802.11e WLAN
Author :
Harsha, Sri ; Kumar, Anurag ; Sharma, Vinod
Author_Institution :
Dept. of Electr. Commun. Eng., Indian Inst. of Sci., Bangalore
Abstract :
In this paper we develop and numerically explore the modeling heuristic of using saturation attempt probabilities as state dependent attempt probabilities in an IEEE 802.11e infrastructure network carrying packet telephone calls and TCP controlled file downloads, using enhanced distributed channel access (EDCA). We build upon the fixed point analysis and performance insights. When there are a certain number of nodes of each class contending for the channel (i.e., have nonempty queues), then their attempt probabilities are taken to be those obtained from saturation analysis for that number of nodes. Then we model the system queue dynamics at the network nodes. With the proposed heuristic, the system evolution at channel slot boundaries becomes a Markov renewal process, and regenerative analysis yields the desired performance measures. The results obtained from this approach match well with ns2 simulations. We find that, with the default IEEE 802.11e EDCA parameters for AC 1 and AC 3, the voice call capacity decreases if even one file download is initiated by some station. Subsequently, reducing the voice calls increases the file download capacity almost linearly (by 1/3 Mbps per voice call for the 11 Mbps PHY)
Keywords :
IEEE standards; Internet telephony; Markov processes; channel capacity; file organisation; fixed point arithmetic; probability; quality of service; queueing theory; telecommunication standards; transport protocols; wireless LAN; EDCA; IEEE 802.11e infrastructure network; Markov renewal process; TCP controlled file download; VoIP; WLAN; capacity estimation; channel slot boundary; enhanced distributed channel access; file transfer; fixed point analysis; ns2 simulation; packet telephone call; regenerative analysis; saturation analysis; state dependent attempt probability; system queue dynamics; transmission control protocol; voice-over-IP; wireless local area network; Analytical models; Capacity planning; Communication system control; Numerical models; Performance analysis; State estimation; Telephony; Throughput; Traffic control; Wireless LAN;
Conference_Titel :
Quality of Service, 2006. IWQoS 2006. 14th IEEE International Workshop on
Conference_Location :
New Haven, CT
Print_ISBN :
1-4244-0476-2
Electronic_ISBN :
1548-615X
DOI :
10.1109/IWQOS.2006.250466