《高级无线网络—4G技术》——1.5参考文献

简介:

本节书摘来自异步社区《高级无线网络—4G技术》一书中的第1章,第1.5节,作者: 【芬】Savo G. Glisic 更多章节内容可以访问云栖社区“异步社区”公众号查看。

1.5参考文献

[1] M. Mouly and M.-B. Pautet. The GSM System for Mobile Communications. Palaiseau: France, 1992.

[2] R. Kalden, I. Meirick and M. Meyer. Wireless internet access based on GPRS, IEEE Pers. Commun., Vol. 7, no. 2, 2000, pp. 8-18.

[3] 3rd Generation Partnership Project (3GPP), www.3gpp.org

[4] J. Khun-Jush, P. Schramm, G. Malmgren and J. Torsner. HiperLAN2: broadband wireless communications at 5 GHz. IEEE Commun. Mag., Vol. 40, no. 6, 2002, pp. 130-137.

[5] U. Varshney. The status and future of 802.11-based WLANs, IEEE Comput., Vol. 36, no. 6, 2003, pp. 102-105.

[6] Digital Video Broadcasting (DVB), www.dvb.org, January 2002.

[7] S. Glisic. Advanced Wireless Communications: 4G Technology. John Wiley & Sons: Chichester, 2004.

[8] J. Mitola III and G. Maguire Jr. Cognitive radio: making software radios more personal, IEEE Pers. Commun., Vol. 6, no. 4, 1999, pp. 13-18.

[9] J. Border et al. Performance enhancing proxies intended to mitigate link-related degradations. RFC 3135, June 2001.

[10] D.C. Feldmeier, A,J. McAuley, J.M. Smith, D.S. Bakin,W.S. Marcus andT.M. Raleigh, Protocol boosters, IEEE JSAC, Vol. 16, no. 3, 1998, pp. 437-444.

[11] M. Garc´ıa et al. An experimental study of Snoop TCP performance over the IEEE 802.11b WLAN. 5th Int. Symp. Wireless Personal Multimedia Commun., Honolulu, HI, Vol. III, October 2002, pp. 1068-1072.

[12] L.Mu˜noz, M. Garcia, J. Choque, R. Aguero and P. Mahonen, Optimizing internet flows over IEEE 802.11b wireless local area networks: a performance enhancing proxy based on forward error correction, IEEE Commun. Mag., Vol. 39, no. 12, 2001, pp. 60-67.

[13] V. Jacobson. TCP/IP compression for low-speed serial links, RFC 1144, February 1990.

[14] Wireless LAN. IEEE Draft Standard P802.11, January 1996.

[15] Radio equipment and systems (RES); High performance radio local area network (HIPERLAN); Functional specification. ETSI, France, Draft prETS 300 652, 1995.

[16] D. Evans, Y. Du, C. Herrmann, S.N. Hulyalkar and P. May. Wireless ATM LAN with and without infrastructure. In 2nd IEEE Int. Workshop Broadband Switching Systems, Taipei, Taiwan, 1997, pp. 120-128.

[17] 3GPP Technical Specification 25.401 UTRAN Overall Description.

[18] 3GPP Technical Specification 25.410 UTRAN In Interface: General Aspects and Principles.

[19] 3GPP Technical Specification 25.411 UTRAN Iu Interface: Layer 1.

[20] 3GPP Technical Specification 25.412 UTRAN Iu Interface: Signalling Transport.

[21] 3GPP Technical Specification 25.413 UTRAN Iu Interface: RANAP Signalling.

[22] 3GPP Technical Specification 25.414 UTRAN Iu Interface: Data transport and Transport Signalling.

[23] 3GPP Technical Specification 25.415 UTRAN Iu Interface: CN-RAN User Plane Protocol.

[24] 3GPP Technical Specification 25.420 UTRAN Iur Interface: General Aspects and Principles.

[25] 3GPP Technical Specification 25.421 UTRAN Iur Interface: Layer 1.

[26] 3GPP Technical Specification 25.422 UTRAN Iur Interface: Signalling Transport.

[27] 3GPP Technical Specification 25.423 UTRAN Iur Interface: RNSAP Signalling.

[28] 3GPP Technical Specification 25.424UTRANIur Interface: Data Transport and Transport Signalling for CCH Data Streams.

[29] 3GPP Technical Specification 25.425 UTRAN Iur Interface: User Plane Protocols for CCH Data Streams.

[30] 3GPP Technical Specification 25.426 UTRAN Iur and Iub Interface Data Transport and Transport Signalling for DCH Data Streams.

[31] 3GPP Technical Specification 25.427 UTRAN Iur and Iub Interface User Plane Protocols for DCI-1 Data Streams.

[32] 3GPP Technical Specification 25.430 UTRAN Iub Interface: General Aspects and Principles.

[33] 3GPP Technical Specification 25.431 UTRAN Iub Interface: Layer 1.

[34] 3GPP Technical Specification 25.432 UTRAN Iub Interface: Signalling Transport.

[35] 3GPP Technical Specification 25.433 UTRAN Iub Interface: NBAP Signalling.

[36] 3GPP Technical Specification 25.434UTRANIub Interface: Data Transport and Transport Signalling for CCH Data Streams.

[37] 3GPP Technical Specification 25.435 UTRAN Iub Interface: User Plane Protocols for CCH Data Streams.

[38] 3G TS 25.301 Radio Interface Protocol Architecture.

[39] 3G TS 25.302 Services Provided by the Physical Layer.

[40] 3G TS 25.303 UE Functions and Interlayer Procedures in Connected Mode.

[41] 3G TS 25.304 UE Procedures in Idle Mode.

[42] 3G TS 25.321 MAC Protocol Specification.

[43] 3G TS 25.322 RLC Protocol Specification.

[44] 3G TS 25.323 PDCP Protocol Specification.

[45] 3G TS 25.324 Broadcast/Multicast Control Protocol (BMC) Specification.

[46] 3G TS 25.331 RRC Protocol Specification.

[47] 3G TS 24.008 Mobile Radio Interface Layer 3 Specification, Core Network Protocols - Stage 3.

[48] 3G TS 33.102 3G Security; Security Architecture.

[49] GSM 04.18 Digital Cellural Telecommunications System (Phase 2+); Mobile Radio Interface Layer 3 Specification, Radio Resource Control Protocol.

[50] IETF RFC 2507 IP Header Compression.

[51] 3G TS 25.305 Stage 2 Functional Specification of Location Services in UTRAN.

[52] 3G TS 33.105 3G Security; Cryptographic Algorithm Requirements.

[53] G. Armitage and K. Adams. Packet reassembly during cell loss, IEEE Network, Vol. 7, no. 5, 1995, pp. 26-34.

[54] U. Black. ATM Volume I: Foundation for Broadband Networks. Prentice-Hall: Upper Saddle River, NJ, 1992.

[55] M. Garrett. A service architecture for ATM: from applications to scheduling, IEEE Network, Vol. 10, no. 3, 1996, pp. 6-14.

[56] D. McDysan and D. Spohn. ATM: Theory and Application. McGraw-Hill: New York, 1999.

[57] K. Sato, S. Ohta and I. Tokizawa. Broad-band ATM network architecture based on virtual paths, IEEE Trans. Commun., Vol. 38, no. 8, 1990, pp. 1212-1222.

[58] T. Suzuki. ATMadaptation layer protocol, IEEE Commun. Maga., Vol. 32, no. 4, 1994, 80-83.

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