يعرض 1 - 16 نتائج من 16 نتيجة بحث عن '"無線通道"', وقت الاستعلام: 0.40s تنقيح النتائج
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    المؤلفون: 林羿緯, Yi-Wei Lin

    المساهمون: 馬席彬, Hsi-Pin Ma

    Time: 45

    وصف الملف: 155 bytes; text/html

    Relation: [1] 張正忠,”通道模型於無線用戶迴路性統環境應用之研究”,私立中原大 學,民國九十年 [2] 曾並進,”5.3GHz室內電波傳播特性量測與分析”,國立中央大學,民國 九十二年 [3] 溫志宏教授,”無線通道模型概論”,國立中正大學 [4] 陳俊才教授,”實驗單元無線通道量測”,國立清華大學 [5] Michael Rice, ”Multipath Interference Characterization in Wireless Communication Systems” ,BYU Wireless Communications Lab [6] 陳育聖,:900MHz 與 2.4GHz 之電波傳播量測和分析”,國立中央大學 [7] T. S. Rappaport, Wireless Communication, Principles and Practice, Prentice Hall, 1999.; http://nthur.lib.nthu.edu.tw/dspace/handle/987654321/35324

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    المؤلفون: 李志宏, Lee, Chih-Hung

    المساهمون: 李學智, 臺灣大學:電信工程學研究所

    وصف الملف: 7953979 bytes; application/pdf

    Relation: [1] T. S. Rappaport, Wireless communications: Principles and Practices, Prentice Hall, 2nd edition, 2002. [2] S. R. Saunders, Antennas and Propagation for Wireless Communication systems, John Willy & Sons, 1999. [3] J. K. Cavers, Mobile Channel Characteristics, Kluwer Academic Publisher, 2000. [4] K. De, and J. F. Change, “Communications And Entertainment Onborad A High-Speed Public Transport System”, IEEE Wireless Communications, vol. 9, pp. 84-89, Feb. 2002. [5] http://gsm-r.uic.asso.fr [6] J. Irvine, J. P. Couvy, F. Graziosi, J. Lasurila, G. Mossakowski, and P. Robin,“System Architecture For the MOSTRAIN Project (Mobile Services For High Speed Trains) “, IEEE VTC ’97, vol. 3, pp. 1917-1921, May 1997. [7] http://www.cordis.lu/infowin/acts/home.html [8] Abrishamkar F., Irvine J., ”Comparison of Current Solutions for the Provision of Voice Services to Passengers on High Speed Trains”, IEEE VTC 2000, vol. 5, pp. 2068-2075, Sept. 2000. [9] BuBing, XiShi Wang, and Xin Yao Wu, “Wireless Data Transmission for High-speed Train Control”, IEEE VTC 2000, vol. 6, pp. 2998-3001, Sept. 2000. [10] Roland E. Best, Phase-Locked Loops: theory, Design and Applications, 4th Edition, New York: McGraw-Hill, 1999. [11] John G. Proakis, Digital Communications, 4th Edition, New York: McGraw-Hill, 2001. [12] Jen-Shi Wu, Ming-Luen Liou, His-Pin Ma, Tzi-Dar Chiueh, “A 2.6V 44-MHz All-Digital QPSK Direct-Sequence Spread-Spectrum Transceiver IC”, IEEE J. Solid-State Circuits, vol. 32, No. 10, October 1997. [13] Mirabbasi S., Gazor S., and Martin K., “A Wideband Carrier Recovery System for Multilevel QAM Signals”, IEEE ISCAS 2000, vol. 4, May 2000. [14] http://www.3gpp.org/ [15] Harri Holma and Antti Toskala, WCDMA FOR UMTS: Radio Access For Third Generation Mobile Communications, John Wiley, 2000. [16] 3GPP TSG RAN, “UE Radio Transmission and Reception (FDD)”, TS 25.101 v6.5.0, Step. 2004. [17] 3GPP TSG RAN, “BS Radio Transmission and Reception (FDD)”, TS 25.104 v6.7.0, Step. 2004. [18] 3GPP TSG RAN, “Physical Layer – General Description”, TS 25.201 v6.0.0, Dec. 2003. [19] 3GPP TSG RAN, “Physical Channels and Mapping of Transport Channels onto Physical Channels (FDD)”, TS 25.211 v6.2.0, Step. 2004. [20] 3GPP TSG RAN, “Multiplexing and Channel Coding (FDD)”, TS 25.212 v6.2.0, June 2004. [21] 3GPP TSG RAN, “Spreading and Modulation”, TS 25.213 v6.0.0, Dec. 2003. [22] 3GPP TSG RAN, “Physical Layer Procedures (FDD)”, TS 25.214 v6.3.0, Step. 2004. [23] Long Qian and Stevan Berber,” 3G WCDMA Design, Simulation and Analysis Using Ptolemy Software Tools ”, IEEE ICICS-PCM 2003, vol. 2, pp. 897-901, Dec. 2003. [24] Fakhrul Alam,” Simulation of Third Generation CDMA Systems”, Master’s thesis, Virginia Polytechnic Institute & State University, 1999. [25] Bjerke B. A., Zvonar Z., and Proakis J. G., ”Antenna Diversity Combining Schemes for WCDMA in Fading Multipath Channels”, IEEE Trans. on Wireless Comm., vol. 3, pp. 97-106, Jan. 2004.; en-US; http://ntur.lib.ntu.edu.tw/handle/246246/58708; http://ntur.lib.ntu.edu.tw/bitstream/246246/58708/1/ntu-94-R92942031-1.pdf

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    المؤلفون: 李志忠, Chih-Chung Li

    المساهمون: 馬席彬博士, Prof. Hsi-Pin Ma

    Time: 45

    وصف الملف: 155 bytes; text/html

    Relation: [1] Gordon L. Stuber, Principles of Mobile Communication 2th Edition, Kluwer Academic Publishers, 2001. [2] Theodore S. Rappaport, Wireless Communications – Principles & Practice, Prentice Hall Inc., 2002. [3] Seiichi Sampei, Applications of Digital Wireless Technologies to Global Wireless Communications, Prentice Hall, 1997. [4] T. S. Rappaport, Wireless Communication, Prentice Hall, 2002. [5] Behzad Razavi, RF Microelectronics, Prentice Hall, 1998. [6] William Stallings, Wireless Communications and Networks, Prentice Hall, 2002. [7] H. Suzuki, “A Statistical Model for Urban Radio Propagation: Multipath Characteristics in New York City,” IEEE Trans. Commun., Vol. 14, pp. 673-680, 1997. [8] A. Papoulis, Probability, Random Variables, and Stochastic Processes, McGraw-Hill, New York, 1965. [9] S. O. Rice, “Statistical Properties of a Sine Wave Plus Random Noise,” Bell System Tech. J. 27 January 1948, pp. 109-157. [10] W. B. Davenport, Jr. and W. L. Root, An Introduction to the Theory of Random Signals and Noise, McGraw-Hill, New York, 1985. [11] William C. Jakes, Microwave Mobile Communications, IEEE Communications Society, 1974. 85 [12] Y. Li and X. Huang, “The Simulation of Independent Rayleigh Faders,” IEEE Trans. Commin., vol. 50, no. 9, pp. 1503-1514, Sept. 2002. [13] J. Wang, Z. Ni, A. Sui, B. Zhang, and D. Li, “Statistical Properties Analysis of Improved Jakes' Fading Channel Model,” Military Communications Conference, vol. 2, pp. 1392-1396, 2003. [14] P. A. Bello and B. D. Nelin, “The Effect of Frequency Selective Fading on Inter modulation Distortion in Frequency Modulation System,” IEEE Trans. Comm. Sys., CS-12, May 1964, pp. 87-101. [15] D. C. Cox, “Doppler Spectrum Measurements Over a Suburban Mobile Radio Path,” proc. IEEE, 59 (Tech. Corres.), June 1971, pp. 1017-1018. [16] D. C. Cox, “Delay-Doppler Characteristics of Multipath Propagation in a Suburban Mobile Radio Environment,” IEEE Trans. Ant. Prop., AP-20, Sept. 1972, pp. 625-635. [17] D. S. Jones, The Theory of Electromagnetism, MacMillan, New York, 1964. [18] Raymond Steele, Mobile Radio Communications, John Wiley & Sons Ltd, 1996. [19] Y. Okumura, E. Ohmori, T. Kawano, and K. Fukuda, "Field Strength and its Variability in VHF and UHF Land-mobile Service," Rev. Elec. Comm. Lab., vol. 16, No. 9-10, pp. 825-873, 1968. [20] M. Hata, "Empirical Formula for Propagation Loss in Land Mobile Radio Services," IEEE Trans. Veh. Tech., vol. 29, No. 3, pp. 317-325, 1980. [21] Okumura-Hata Propagation Prediction Model for UHF range, "Prediction Methods for the Terrestrial Land Mobile Service in the VHF and UHF Bands"// ITU-R Recommendation P. 529-2.Geneva: ITU, pp. 5-7, 1995. [22] “Propagation Prediction Models,” COST 231 Final Rep., ch. 4, pp.17–21. [23] J. L.; http://nthur.lib.nthu.edu.tw/dspace/handle/987654321/30148

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