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多载波码分多址通信系统中抑制干扰的序列设计

张振宇 陈卫 曾凡鑫 仲元红 吴华

张振宇, 陈卫, 曾凡鑫, 仲元红, 吴华. 多载波码分多址通信系统中抑制干扰的序列设计[J]. 电子与信息学报, 2009, 31(10): 2354-2358. doi: 10.3724/SP.J.1146.2008.01388
引用本文: 张振宇, 陈卫, 曾凡鑫, 仲元红, 吴华. 多载波码分多址通信系统中抑制干扰的序列设计[J]. 电子与信息学报, 2009, 31(10): 2354-2358. doi: 10.3724/SP.J.1146.2008.01388
Zhang Zhen-yu, Chen Wei, Zeng Fan-xin, Zhong Yuan-hong, Wu Hua. Construction of Interference-Resistant Sequences for Multi-Carrier CDMA Communication Systems[J]. Journal of Electronics & Information Technology, 2009, 31(10): 2354-2358. doi: 10.3724/SP.J.1146.2008.01388
Citation: Zhang Zhen-yu, Chen Wei, Zeng Fan-xin, Zhong Yuan-hong, Wu Hua. Construction of Interference-Resistant Sequences for Multi-Carrier CDMA Communication Systems[J]. Journal of Electronics & Information Technology, 2009, 31(10): 2354-2358. doi: 10.3724/SP.J.1146.2008.01388

多载波码分多址通信系统中抑制干扰的序列设计

doi: 10.3724/SP.J.1146.2008.01388
基金项目: 

国家自然科学基金(60872164)资助课题

Construction of Interference-Resistant Sequences for Multi-Carrier CDMA Communication Systems

  • 摘要: 针对多载波码分多址通信系统,该文提出了一种具有优良性能的序列构造方法。此方法基于传统的零相关区序列,通过交织扩展后可以产生互补形式的多子集序列。该类序列具有周期互补特性,从而使系统拥有更强的抗多径干扰和多址干扰的能力。该文证明了所构造序列的周期相关性能,并通过构造举例进一步验证了这种构造方法是互补特性与零相关区特性的有效结合方式。
  • Chen H H. The Next Generation CDMA Technologies [M].Chichester.[J].John Wiley Sons. Ltd.2007,:-[2]Teng S M and Bell R. Asynchronous multicarrier DS-CDMAusing mutually orthogonal complementary codes for newgenerations of wideband wireless communications [J].IEEETransactions on Communications.2000, 48(1):53-59[3]Lu L R and Dubey V K. Performance of completecomplementary code-based spread time CDMA system infading channel [J]. IEEE Transactions on VehicularTechnology, 2007, 57(1): 250-259.[4]Chen H H, Hank D, and Maganaz M E, et al.. Design ofnext-generation CDMA using orthogonal complementarycodes and offset stacked spreading [J]. IEEE WirelessCommunications, 2007, 14(3): 61-69.[5]Fan P Z and Darnell M. Sequence Design forCommunications Applications [M]. London, Wiley, 1996:322-323.[6]Chen H H and Chiu H W. Generation of perfect orthogonalcomplementary codes for their applications in interferencefreeCDMA systems [C]. IEEE International Symposium onPersonal, Indoor Mobil Radio Communications, Barcelona,Spain, Sept., 2004, Vol. 1: 734-738.[7]Fan P Z, Suehiro N, and Kuroyanagi N, et al.. Class of binarysequences with zero correlation zone [J].Electronics Letters.1999, 35(10):777-779[8]Hao L and Fan P Z. Performance evaluation for a newquasi-synchronous CDMA system employing generalizedorthogonal sequences [J]. IEICE Transactions on Informationand Systems, 2003, E86-D(9): 1513-1524.[9]Zhang C, Tao X M, and Yamada S, et al.. Sequence withthree zero correlation zones and its application in MC-CDMAsystem [J].IEICE Transactions on Fundamentals ofElectronics, Communications and Computer Sciences.2006,E89-A(9):2275-2282[10]Hayashi T. Zero-correlation zone sequence set constructedfrom a perfect sequence and a complementary sequence pair[J].IEICE Transactions on Fundamentals of Electronics,Communications and Computer Sciences.2008, E91-A(7):1676-1681[11]Bomer L and Antweiler M. Periodic complementary binarysequences [J].IEEE Transactions on Information Theory.1990, 36(6):1487-1494[12]Tang X H, Fan P Z, and Matsufuji S. Lower bounds on themaximum correlation of sequence set with low or zerocorrelation zone [J].Electronics Letters.2000, 36(6):551-552
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出版历程
  • 收稿日期:  2008-10-27
  • 修回日期:  2009-03-30
  • 刊出日期:  2009-10-19

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