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Rayleigh衰落信道下相位误差对相干跳频多址接入MRC分集接收系统的影响

曾琦 彭代渊

曾琦, 彭代渊. Rayleigh衰落信道下相位误差对相干跳频多址接入MRC分集接收系统的影响[J]. 电子与信息学报, 2010, 32(9): 2083-2088. doi: 10.3724/SP.J.1146.2009.01158
引用本文: 曾琦, 彭代渊. Rayleigh衰落信道下相位误差对相干跳频多址接入MRC分集接收系统的影响[J]. 电子与信息学报, 2010, 32(9): 2083-2088. doi: 10.3724/SP.J.1146.2009.01158
Zeng Qi, Peng Dai-Yuan. Effect of Carrier Phase Error on Coherent FH/CDMA System with MRC Scheme over Rayleigh Fading Channel[J]. Journal of Electronics & Information Technology, 2010, 32(9): 2083-2088. doi: 10.3724/SP.J.1146.2009.01158
Citation: Zeng Qi, Peng Dai-Yuan. Effect of Carrier Phase Error on Coherent FH/CDMA System with MRC Scheme over Rayleigh Fading Channel[J]. Journal of Electronics & Information Technology, 2010, 32(9): 2083-2088. doi: 10.3724/SP.J.1146.2009.01158

Rayleigh衰落信道下相位误差对相干跳频多址接入MRC分集接收系统的影响

doi: 10.3724/SP.J.1146.2009.01158
基金项目: 

国家自然科学基金(60872015,60572142)资助课题

Effect of Carrier Phase Error on Coherent FH/CDMA System with MRC Scheme over Rayleigh Fading Channel

  • 摘要: 该文研究一种新型混合通信系统,即基于多载波BPSK调制的相干跳频多址接入(FH/CDMA)系统,接收端采用最大比合并(MRC)分集接收。由于采用相位调制,接收端载波相位恢复的精确度直接影响系统性能。假设载波同步通过一阶锁相环电路(PLL)完成,由于载波恢复环路中存在高斯噪声,当系统达到同步稳态时不可避免地会产生稳态相位误差。该文采用Beaulieu级数方法和特征函数方法,得到理想相干和部分相干(存在稳态相位误差)时FH/CDMA系统误码率性能表达式。仿真结果表明,相对于单用户系统,多用户系统误码率受到相位误差影响较小,误码率性能降低的主要因素是多用户干扰。MRC分集接收能提高系统抵抗相位误差和信道衰落的能力。
  • 彭代渊, 范平志, 李门浩. 低碰撞区跳频序列集周期汉明相关函数的理论限[J]. 中国科学(F辑), 2006, 36(1): 1-11.Peng Dai-yuan, Fan Ping-zhi, and Lee Moon-ho. Lower bounds on the periodic Hamming correlations of frequency hopping sequences with low hit zone [J]. Science in China, Ser. F, 2006, 36(1): 1-11.[2]Ding C S, Fuji-Hara R, Fujiwara Y, Jimbo M, and Mishima M. Sets of frequency hopping sequences: bounds and optimal constructions [J].IEEE Transactions on Information Theory.2009, 55(7):3297-3304[3]Lance E and Kaleh G K. A diversity scheme for a phase-coherent frequency-hopping spread-spectrum [J].IEEE Transactions on Communications.1997, 45(9):1123-1129[4]梅文华, 王淑波, 邱永红等. 跳频通信[M]. 北京: 国防工业出版社, 2005: 15-22.[5]Mei Wen-hua, Wang Shu-bo, and Qiu Yong-hong, et al.. Frequency Hopping Communications [M]. Beijing: Press of Defense Industry, 2005: 15-22.[6]Viterbi A J. Principles of Coherernt Communication [M]. New York: McGraw-Hill, 1966, Chapter 7.[7]De Abreu G T F. On the generation of Tikhonov variates[J].IEEE Transactions on Communications.2008, 56(7):1157-1168[8]Sharma S, Yadav G, and Chaturvedi A K. Multicarrier on-off keying for fast freqeucny-hopping multiple access systems in Rayleigh fading channels[J].IEEE Transactions on Wireless Communications.2007, 6(3):769-774[9]Maghsoodi Y and Al-Dweik A. Error-rate analysis of FHSS networks using exact evelope characteristic functions of sums of stochastic signals [J].IEEE Transactions on Vehicular Technology.2008, 57(2):974-985[10]Zeng Q, Peng D Y, and Liang H B. Performance analysis of frequency-hopping multiple-access communications with OFDM-BPSK acheme [C]. Third International Conference on Communications and Networking in China (IEEE ChinaCom 2008), Hangzhou, China, Aug. 25-27, 2008: 865-869.[11]Smadi M A and Prabhu V K. Performance analysis of generalized-faded coherent PSK channels with equal-gain combining and carrier phase error[J]. IEEE Transactions on Wireless Communications, 2006, 5(3): 509-513.[12]Kiyani N F and Weber J H. Performance analysis of a partially coherent system using constellation rotation and coordinate interleaving[C]. IEEE Global Telecommunications Conference (IEEE GLOBECOM 2008), New Orleans, USA, Nov. 30-Dec. 4, 2008: 1-5.[13]Beaulieu N C. An infinite series for the computation of the complementary probability distribution function of a sum of independent random variables and its appllication to the sum of Rayleigh random variable[J].IEEE Transactions on Communications.1990, 38(9):1463-1474[14]Tellambura C and Annamalai A. Further results on the Beaulieu series[J].IEEE Transactions on Communications.2000, 48(11):1774-1777
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出版历程
  • 收稿日期:  2009-09-01
  • 修回日期:  2010-04-28
  • 刊出日期:  2010-09-19

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