Rate avalanche: Effects on the performance of multi-rate 802.11 wireless networks
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[2] Tomasz Imielinski,et al. Mobile Computing , 1996 .
[3] Martin Reisslein,et al. MPEG-4 and H.263 video traces for network performance evaluation , 2001, IEEE Netw..
[4] Kevin C. Almeroth,et al. IQU: practical queue-based user association management for WLANs , 2006, MobiCom '06.
[5] Chun-cheng Chen,et al. Rate-Adaptive Framing for Interfered Wireless Networks , 2007, IEEE INFOCOM 2007 - 26th IEEE International Conference on Computer Communications.
[6] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[7] J. Broch,et al. Dynamic source routing in ad hoc wireless networks , 1998 .
[8] Seongkwan Kim,et al. CARA: Collision-Aware Rate Adaptation for IEEE 802.11 WLANs , 2006, Proceedings IEEE INFOCOM 2006. 25TH IEEE International Conference on Computer Communications.
[9] Stephen E. Deering,et al. Path MTU discovery , 1990, RFC.
[10] A. Girotra,et al. Performance Analysis of the IEEE 802 . 11 Distributed Coordination Function , 2005 .
[11] Sunghyun Choi,et al. A Time Lag Analysis of R & D Effect ell Total Factor Productivity in Information and Communication Industry , 2006 .
[12] Martin Heusse,et al. Performance anomaly of 802.11b , 2003, IEEE INFOCOM 2003. Twenty-second Annual Joint Conference of the IEEE Computer and Communications Societies (IEEE Cat. No.03CH37428).
[13] Edward W. Knightly,et al. Opportunistic media access for multirate ad hoc networks , 2002, MobiCom '02.
[14] Vaduvur Bharghavan,et al. Robust rate adaptation for 802.11 wireless networks , 2006, MobiCom '06.
[15] David A. Maltz,et al. Dynamic Source Routing in Ad Hoc Wireless Networks , 1994, Mobidata.
[16] Imad Aad. Quality of service in wireless local area networks. (Qualité de service dans les réseaux locaux sans-fil) , 2002 .
[17] Theodore S. Rappaport,et al. Wireless communications - principles and practice , 1996 .
[18] Sunghyun Choi,et al. Link adaptation strategy for IEEE 802.11 WLAN via received signal strength measurement , 2003, IEEE International Conference on Communications, 2003. ICC '03..
[19] Yi Yang,et al. Exploiting medium access diversity in rate adaptive wireless LANs , 2004, MobiCom '04.
[20] Xiaobo Zhou,et al. Rate avalanche: The performance degradation in multi-rate 802.11 WLANs , 2008, 2008 IEEE International Symposium on Parallel and Distributed Processing.
[21] Reginald L. Lagendijk,et al. Hybrid rate control for IEEE 802.11 , 2004, MobiWac '04.
[22] Leo Monteban,et al. WaveLAN®-II: A high-performance wireless LAN for the unlicensed band , 1997, Bell Labs Technical Journal.
[23] Michael B. Pursley,et al. Error Probabilities for Spread-Spectrum Packet Radio with Convolutional Codes and Viterbi Decoding , 1985, MILCOM 1985 - IEEE Military Communications Conference.
[24] Daniel D. Stancil,et al. Efficient simulation of Ricean fading within a packet simulator , 2000, Vehicular Technology Conference Fall 2000. IEEE VTS Fall VTC2000. 52nd Vehicular Technology Conference (Cat. No.00CH37152).
[25] Yin Zhang,et al. A general model of wireless interference , 2007, MobiCom '07.
[26] John C. Bicket,et al. Bit-rate selection in wireless networks , 2005 .
[27] P. De Doncker,et al. High-accuracy physical layer model for wireless network simulations in NS-2 , 2004, International Workshop on Wireless Ad-Hoc Networks, 2004..
[28] Victor C. M. Leung,et al. A rate adaptation algorithm for IEEE 802.11 WLANs based on MAC-layer loss differentiation , 2005, 2nd International Conference on Broadband Networks, 2005..
[29] Thierry Turletti,et al. IEEE 802.11 rate adaptation: a practical approach , 2004, MSWiM '04.
[30] Kang G. Shin,et al. Goodput Analysis and Link Adaptation for IEEE 802.11a Wireless LANs , 2002, IEEE Trans. Mob. Comput..
[31] Victor C. M. Leung,et al. Design of an effective loss-distinguishable MAC protocol for 802.11 WLAN , 2005, IEEE Communications Letters.
[32] Paramvir Bahl,et al. A rate-adaptive MAC protocol for multi-Hop wireless networks , 2001, MobiCom '01.