IEEE 802.11與IEEE 802.11e 共存環境下性能分析
賴逸駿, Yi-Chun Lai
Abstract
賴逸駿, Yi-Chun Lai
Abstract
[1]IEEE standard for Wireless LAN Medium Access Control(MAC) and Physical Layer( PHY) Specifications, ISO/IEC 8802-11:1999(E), 1999 [2]IEEE Draft for Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications: Medium Access Control (MAC) Enhancements for Quality of Service (QoS), IEEE Std 802.1 le/Draft13.0, October 2005 [3]G.Bianchi, “IEEE 802.11, Saturation Throughput Analysis”, IEEE Communication Lettlers, Vol. 2, No.12, December, 1998. [4]IEEE Standard for Information technology— Telecommunications and information exchange between systems— Local and metropolitan area networks— Specific requirements Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) specifications Amendment 8: Medium Access Control (MAC) Quality of Service Enhancements, 2005. [5]J. Farooq, B. Rauf, “An Overview of Wireless LAN Standards IEEE 802.11 and IEEE 802.11e” , 2006 [6]Lixiang Xiong, and Guoqiang Mao, “An Analysis of the Coexistence of IEEE 802.11 DCF and IEEE 802.11e EDCA,” WCNC 2007 proceedings. [7]William Stallings, “Wireless Communications & Networks”. [8]P. Nicopolitidis, M. S. Obaidat, G. I. Papadimitriou, A. S. Pomportsis, ”WIRELESS NETWORKS ” [9]C. N. Thurwachter Jr., “Wireless Networking” [10]T.C. Tsai, C.M. Tu,”An Adaptive IEEE 802.11 MAC in Multihop Wireless Ad Hoc Networks Considering Large Interference Range”, 2004 [11]L. Xiong and G. Mao, “Saturated throughput analysis of IEEE 802.11e using two-dimensional Markov chain model,” in The Third International Conference on Quality of Service in Heterogeneous Wired/Wireless Networks (QShine), Waterloo, Canada, July, 2006. [12]E. A. Venkatesh Ramaiyan, Anurag Kumar, “Fixed point analysis of single cell IEEE 802.11e WLANs: uniqueness, multistability and throughput differentiation,” SIGMETRICS Perform. Eval. Rev., vol. 33, no. 1, pp.109–120, 2005. [13]G. Bianchi, I. Tinnirello, and L. Scalia, “Understanding 802.11e contention-based prioritization mechanisms and their coexistence with legacy 802.11 stations,” Network, IEEE, vol. 19, no. 4, pp. 28–34, 2005. [14]J. Majkowski and F. Casadevall Palacio, “Coexistence of IEEE 802.11B and IEEE 802.11E Stations in QoS Enabled Wireless Local Area Network,” in Communication Systems and Applications 2006, 2006. [15]Lixiang Xiong, and Guoqiang Mao, “An Analysis of the Coexistence of IEEE 802.11 DCF and IEEE 802.11e EDCA,” WCNC 2007 proceedings. [16]Q. Ni, T. Turletti,“ QOS SUPPORT FOR IEEE 802.11 WIRELESS LAN” Technical report,PLANETE Group, INRIA Sophia Antipolis., 2004. [17]P. Raptis, V. Vitsas1, K. Paparrizos, P. Chatzimisios, A. C. Boucouvalas3, P. Adamidis1,”Packet Delay Modeling of IEEE 802.11 Wireless LANs”, Proc. Intl. Conf. on Cyber. Info. Tech. Sys. Apps. CITSA 2005, Jul. 2005. [18]G. Bianchi, “Performance Analysis of the IEEE 802.11 Distributed Coordination Function”, 2000.
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[1]IEEE standard for Wireless LAN Medium Access Control(MAC) and Physical Layer( PHY) Specifications, ISO/IEC 8802-11:1999(E), 1999 [2]IEEE Draft for Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications: Medium Access Control (MAC) Enhancements for Quality of Service (QoS), IEEE Std 802.1 le/Draft13.0, October 2005 [3]G.Bianchi, “IEEE 802.11, Saturation Throughput Analysis”, IEEE Communication Lettlers, Vol. 2, No.12, December, 1998. [4]IEEE Standard for Information technology— Telecommunications and information exchange between systems— Local and metropolitan area networks— Specific requirements Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) specifications Amendment 8: Medium Access Control (MAC) Quality of Service Enhancements, 2005. [5]J. Farooq, B. Rauf, “An Overview of Wireless LAN Standards IEEE 802.11 and IEEE 802.11e” , 2006 [6]Lixiang Xiong, and Guoqiang Mao, “An Analysis of the Coexistence of IEEE 802.11 DCF and IEEE 802.11e EDCA,” WCNC 2007 proceedings. [7]William Stallings, “Wireless Communications & Networks”. [8]P. Nicopolitidis, M. S. Obaidat, G. I. Papadimitriou, A. S. Pomportsis, ”WIRELESS NETWORKS ” [9]C. N. Thurwachter Jr., “Wireless Networking” [10]T.C. Tsai, C.M. Tu,”An Adaptive IEEE 802.11 MAC in Multihop Wireless Ad Hoc Networks Considering Large Interference Range”, 2004 [11]L. Xiong and G. Mao, “Saturated throughput analysis of IEEE 802.11e using two-dimensional Markov chain model,” in The Third International Conference on Quality of Service in Heterogeneous Wired/Wireless Networks (QShine), Waterloo, Canada, July, 2006. [12]E. A. Venkatesh Ramaiyan, Anurag Kumar, “Fixed point analysis of single cell IEEE 802.11e WLANs: uniqueness, multistability and throughput differentiation,” SIGMETRICS Perform. Eval. Rev., vol. 33, no. 1, pp.109–120, 2005. [13]G. Bianchi, I. Tinnirello, and L. Scalia, “Understanding 802.11e contention-based prioritization mechanisms and their coexistence with legacy 802.11 stations,” Network, IEEE, vol. 19, no. 4, pp. 28–34, 2005. [14]J. Majkowski and F. Casadevall Palacio, “Coexistence of IEEE 802.11B and IEEE 802.11E Stations in QoS Enabled Wireless Local Area Network,” in Communication Systems and Applications 2006, 2006. [15]Lixiang Xiong, and Guoqiang Mao, “An Analysis of the Coexistence of IEEE 802.11 DCF and IEEE 802.11e EDCA,” WCNC 2007 proceedings. [16]Q. Ni, T. Turletti,“ QOS SUPPORT FOR IEEE 802.11 WIRELESS LAN” Technical report,PLANETE Group, INRIA Sophia Antipolis., 2004. [17]P. Raptis, V. Vitsas1, K. Paparrizos, P. Chatzimisios, A. C. Boucouvalas3, P. Adamidis1,”Packet Delay Modeling of IEEE 802.11 Wireless LANs”, Proc. Intl. Conf. on Cyber. Info. Tech. Sys. Apps. CITSA 2005, Jul. 2005. [18]G. Bianchi, “Performance Analysis of the IEEE 802.11 Distributed Coordination Function”, 2000.
Key concepts: Inter-Access Point Protocol, Computer network, Network allocation vector, IEEE 802.11e-2005, IEEE 802.11u, IEEE 802.11s, IEEE 802.11w-2009, IEEE 802.1X