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無線 ATM 網路系統中保證服務 品質之接取方法 1998 年 10 月 29 日
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進度 b 測試無線網路產品 禾翔 禾翔 智捷 智捷 b 研讀 Wireless ATM Architectures & Wireless Access Schemes 相關的論文
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Wireless ATM Architectures b “The ORL radio ATM system, architecture and implementation,” available at http://www.orl.co.uk/radio Provide ATM Forum standard 25 Mbps ATM interfaceProvide ATM Forum standard 25 Mbps ATM interface 2.4-2.5 GHz ISM band, 10 MHz per channel2.4-2.5 GHz ISM band, 10 MHz per channel QPSK modulation, 10 Mbps bit rateQPSK modulation, 10 Mbps bit rate
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Wireless ATM Architectures ( 續 ) b “WATMnet: a prototype wireless ATM system for multimedia personal communication,” IEEE JSAC, vol. 15, no. 1, pp. 83-95, Jan. 1997. NECNEC 8 Mbps8 Mbps
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Wireless ATM Architectures ( 續 ) b “The Magic WAND-Functional Overview,” IEEE ISAC, vol. 16, no. 6, pp. 953-972, Aug. 1998. European Union ACTSEuropean Union ACTS 5.2 Ghz frequency band, 20+ Mbps5.2 Ghz frequency band, 20+ Mbps 17 Ghz frequency band, 50+ Mbps (future)17 Ghz frequency band, 50+ Mbps (future)
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QoS Guaranteed Wireless MAC b D. J. Goodman, R. A. Valenzuela, K. T. Gaylard, and B. Ramamurthi, “Packet reservation multiple access for local wireless communications, “ IEEE Trans. Commun., vol. 37, pp. 885–890, Aug. 1989. b J. Dunlop, J. Irvine, D. Robertson, and P. Cosimini, “Performance of statistically multiplexed access mechanisms for a TDMA radio interface,” IEEE Personal Communications, vol.2, pp. 56–64, Jun. 1995. b G. Anastasi, D. Grillo, L. Lenzini and E. Mingozzi, “A bandwidth reservation protocol for speech/data integration in TDMA-based advanced mobile systems,” in Proc. IEEE INFOCOM’96, pp. 722–729, 1996.
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QoS Guaranteed Wireless MAC b G. Anastasi, D. Grillo and L. Lenzini, “An access protocol for speech/data/video integration in TDMA-based advanced mobile systems,” IEEE J. Select. Areas Commun., vol. 15, No. 8, pp. 1498– 1509, Oct. 1997. b C. S. Chang, K. C. Cheng, M. Y. You and J. F. Chang, “Guaranteed quality-of-service wireless access to ATM networks,” IEEE J. Select. Areas Commun., vol. 15, No 1, pp. 106–117, Jan. 1997. b N. Passas, S. Paskalis, D. Vali and L. Merakos, “Quality-of-service- oriented medium access control for wireless ATM networks,” IEEE communications magazine, pp. 42–50, Nov. 1997. b N. R. Figueira and J. Pasquale, “Remote-queueing multiple access (RQMA): providing quality of service for wireless communications,” in Proc. IEEE INFOCOM’98, pp. 307–314, 1998.
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QoS Guaranteed Wireless MAC b F. D. Priscoli, “Medium access control for the MEDIAN system,” in Proc. ACTS Mobile Summit’96, Granada, Spain, pp.1–8, Nov. 1996. b S. Choi and K. G. Shin, “A cellular wireless local area network with QoS guarantees for heterogeneous traffic,” in Proc. IEEE INFOCOM’97, pp. 1032–1039, 1997. b M. Naghshineh and A. S. Acampora, “QoS provisioning in micro- cellular networks supporting multiple classes of traffic,” ACM Wireless Networks, pp. 195–203, 1996. b X. Qiu and V. O. K. Li, “Dynamic reservation multiple access (DRMA): a new multiple access scheme for personal communication system (PCS),” ACM Wireless Networks, pp. 117–128, 1996. b J. Sanchez, R. Martinez and M. W. Marcellin, “A survey of MAC protocols proposed for wireless ATM,” IEEE Network, pp. 52–62, Nov./Dec. 1997.
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QoS Guaranteed Wireless MAC b C. Blondia and O. Casals, “Performance analysis of statistical multiplexing of VBR sources,” in Proc. INFOCOM’92, pp. 828–838, 1992. b N. Passas, N. Loukas and L. Merakos, “A scheduling technique for bandwidth allocation in wireless personal communication networks,” International Journal of Wireless Information Networks, vol. 4, No. 1, pp. 55–61, 1997.
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