Abstract
In recent work (Koutsakis et al., IEEE Trans Veh Technol 54(5):1863–1874, 2005), we have introduced multimedia integration multiple access control protocol (MI-MAC). The protocol was shown to achieve superior performance in comparison to other protocols of the literature when integrating various types of multimedia traffic over wireless cellular networks. In this work we enhance the scheduling scheme of MI-MAC by adding three important parameters into its study. These are: (a) the handling of handoff traffic, (b) per user varying channel conditions in the uplink and downlink channels and (c) video sources’ contention for channel resources. These parameters are added in order to evaluate the protocol under a significantly more realistic wireless cellular network scenario. New scheduling ideas are proposed in order to efficiently incorporate the new parameters into the scheme. The evaluation, conducted by comparing the enhanced MI-MAC with another efficient protocol of the literature and with an “ideal” MAC protocol, focuses on the efficient transmission of MPEG-4 video traffic and shows that our scheme achieves excellent performance results.
References
Koutsakis P., Psychis S., Paterakis M. (2005) Integrated wireless access for videoconference from MPEG-4 and H.263 video coders with voice, email and web traffic. IEEE Transactions on Vehicular Technology 54(5): 1863–1874. doi:10.1109/TVT.2005.853460
Dyson D.A., Haas Z.J. (1999) A dynamic packet reservation multiple access scheme for wireless ATM. Mobile Networks and Applications (MONET) Journal 4(2): 87–99
Vucovic, I. N., & Brown, T. (2001). Performance analysis of the random access channel in WCDMA. In Proceedings of the IEEE Vehicular Technology Conference-Spring (pp. 532–536). Rhodes, Greece.
Carrasco L., Femenias G., Raja F. (2003) A new MAC protocol ensuring the multimedia traffic QoS for CDMA networks. Wireless Personal Communications 25(3): 205–221. doi:10.1023/A:1024004730346
Wang X. (2005) An FDD wideband CDMA MAC protocol with minimum-power allocation and GPS-scheduling for wireless wide area multimedia networks. IEEE Transactions on Mobile Computing 4(1): 16–28. doi:10.1109/TMC.2005.4
Mitrou N.M., Lyberopoulos G.L., Panagopoulou A.D. (1993) Voice and data integration in the air-interface of a microcellular mobile communication system. IEEE Transactions on Vehicular Technology 42(1): 1–13. doi:10.1109/25.192381
Baig, E. C. (2006) Will consumers tune in to a tiny TV in their Hand?. http://www.usatoday.com/tech/wireless/2006-08-17-mobile-tv_x.htm.
Fitzek F.H.P., Reisslein M. (2001) MPEG-4 and H.263 video traces for network performance evaluation. IEEE Network 15(6): 40–54. doi:10.1109/65.967596
Holliday, T., Goldsmith, A., & Glynn, P. (2002). Wireless link adaptation policies: QoS for deadline constrained traffic with imperfect channel estimates. In Proceedings of the IEEE ICC 2002 (Vol. 5, pp. 3366–3371). New York, USA.
Bottigliengo, M., Casetti, C., Chiasserini, C.-F., & Meo, M. (2004). Short-term fairness for TCP flows in 802.11b WLANs. In Proceedings of the IEEE Infocom 2004, Hong Kong, China.
Yu F.R., Wong V.W.S., Leung V.C.M. (2008) A new QoS provisioning method for adaptive multimedia in wireless networks. IEEE Transactions on Vehicular Technology 57(3): 1899–1909. doi:10.1109/TVT.2007.907023
Song, Q., & Jamalipour, A. (2006). A negotiation-based network selection scheme for next-generation mobile systems. In Proceedings of the IEEE GLOBECOM 2006, San Francisco, USA.
Jayanthi, K., & Dananjayan, P. (2006). Mobility predictive call admission control for wireless multimedia services. In Proceedings of the 3rd IEEE/IFIP International Conference on Wireless and Optical Communications Networks (WOCN), Bangalore, India.
Cleary A.C., Paterakis M. (1997) Design and performance evaluation of an RRA scheme for voice-data channel access in outdoor microcellular wireless environments. Mobile Networks and Applications (MONET) Journal 2(1): 31–43
Nanda S., Goodman D.J., Timor U. (1991) Performance of PRMA: A packet voice protocol for cellular systems. IEEE Transactions on Vehicular Technology 40(3): 584–598. doi:10.1109/25.97513
Li Y. (2000) Pilot-symbol aided channel estimation for OFDM in wireless systems. IEEE Transactions on Vehicular Technology 49(4): 1207–1215. doi:10.1109/25.875230
Elnoubi S., Alsayh A.M. (2004) A packet reservation multiple access (PRMA)-based algorithm for multimedia wireless system. IEEE Transactions on Vehicular Technology 53(1): 215–222. doi:10.1109/TVT.2003.819633
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Drivas, T., Koutsakis, P. & Paterakis, M. Performance Evaluation of the Enhanced MI-MAC Protocol for Multimedia Integration over Wireless Cellular Networks. Wireless Pers Commun 50, 291–303 (2009). https://doi.org/10.1007/s11277-008-9590-2
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DOI: https://doi.org/10.1007/s11277-008-9590-2