references of ANALYZING PULSE POSITION MODULATION TIME HOPPING UWB IN IEEE UWB CHANNEL, multipath channel
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<b><br></b>ANALYZING PULSE POSITION MODULATION TIME HOPPING UWB IN IEEE UWB CHANNEL, multipath channel<b>References</b><b></b> <b>1. M. Z. Win and R. A. Scholtz, “Ultra-wide bandwidth time-hopping spread-spectrum impulse radio for wireless multiple-access communication”. IEEE Transactions on Publication Date: Volume: 52, Issue: 10, Oct. 2004, pp. 1786- 1796.</b><b></b> <b>2. Federal Communications Commission, “Revision of Part 15 of the commission’s rules regarding ultra-wideband transmission systems, FIRST REPORT AND ORDER,” ET Docket 98-153, FCC 02-48, pp. 1–118, February 14, 2002.</b><b></b> <b>3. Hao Zhang, “Performance and Capacity of PAM and PPM UWB Time-Hopping Multiple Access Communications with Receive Diversity” Department of Electrical & Computer Engineering, University of Victoria, BC, Canada V8W 3P 6,2005.</b><b></b> <b>4. Goyal, Vikas, and B. S. Dhaliwal. "INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY ULTRA WIDEBAND PULSE GENERATION USING MULTIPLE ACCESS MODULATION SCHEMES."</b><b></b> <b>5. Goyal, Vikas. "PULSE GENERATION AND ANALYSIS OF ULTRA WIDE BAND SYSTEM MODEL." Computer Science & Telecommunication 2, no. 34: 3-6.</b><b></b> <b>6. Goyal, Vikas, and B. S. Dhaliwal. "Optimal Pulse Generation for the improvement of ultra wideband system performance." Engineering and Computational Sciences (RAECS), 2014 Recent Advances in. IEEE, 2014.</b><b></b> <b>7. J. R. Foerster (2005), “The effects of multipath interference on the performance of UWB systems in an indoor wireless channel,”in Proc. IEEE 53rd Vehicular Technology Conference(VTC ’05), Rhodes, Greece ,vol. 2, pp. 1176–1180.</b><b></b> <b>8. J. G. Proakis, Digital Communications. New York: McGraw-Hill,5th ed., 2001.</b><b></b> <b>9. T. Rappaport, “Wireless Communications Principles and Practice”, Pearson Education, 2nd ed., 2004.</b><b></b>
IEEE超宽带(UWB)信道下脉冲位置调制(Pulse Position Modulation, PPM)跳时(Time Hopping, TH)超宽带系统的多径信道分析 参考文献 1. M. Z. Win与R. A. Scholtz,《用于无线多址通信的超宽带跳时扩谱冲激无线电》,发表于IEEE汇刊,卷52,期10,2004年10月,页码1786-1796。 2. 美国联邦通信委员会(Federal Communications Commission, FCC),《关于委员会超宽带传输系统规则第15部分的修订:首次报告与命令》,ET Docket 98-153,FCC 02-48,页码1–118,2002年2月14日。 3. 张浩(Hao Zhang),《采用接收分集的脉冲幅度调制与脉冲位置调制超宽带跳时多址通信的性能与容量》,加拿大不列颠哥伦比亚省维多利亚大学电气与计算机工程系,邮编V8W 3P6,2005年。 4. Vikas Goyal与B. S. Dhaliwal,《采用多址调制方案的超宽带脉冲生成》,发表于《国际工程科学与研究技术期刊(INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY)》。 5. Vikas Goyal,《超宽带系统模型的脉冲生成与分析》,发表于《计算机科学与电信(Computer Science & Telecommunication)》第2卷第34期,页码3-6。 6. Vikas Goyal与B. S. Dhaliwal,《用于提升超宽带系统性能的最优脉冲生成》,收录于2014年最新工程与计算科学进展研讨会(RAECS 2014),IEEE出版社,2014年。 7. J. R. Foerster(2005),《室内无线信道中超宽带系统的多径干扰对性能的影响》,发表于IEEE第53届车载技术会议(VTC ’05)论文集,希腊罗德岛,第2卷,页码1176–1180。 8. J. G. Proakis,《数字通信》,纽约:麦格劳-希尔出版社,第5版,2001年。 9. T. Rappaport,《无线通信:原理与实践》,培生教育出版集团,第2版,2004年。



