期刊文献+

数字喷泉技术在跳频通信中抗干扰性能研究 被引量:2

Research of Anti-Interference Performance of Digital Fountain Codes in Frequency Hopping Communication
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摘要 为提高跳频抗干扰性能,提出将Raptor码作为前向纠错码应用于跳频通信系统,其中Raptor码采用码率为0.95的规则LDPC码作为预编码,再级联LT码来实现.通过Matlab建模仿真实验,分析了跳频通信系统对抗宽带干扰以及部分频带干扰的性能.结果表明,宽带干扰环境下,在比特信干比为2.5dB时可以使误比特率低于10-3,得到17.6dB的性能提升;部分频带干扰环境下,在比特信干比为1.0dB时,可以将系统误比特率降低到10-3以下,得到16.8dB以上的性能提升.因此,用Raptor码作为跳频通信前向纠错码是可行的. To improve the anti-interference performance of frequency hopping(FH) communications,Raptor code is applied in the FH communication as a forward error correction(FEC) code in this work.The proposed Raptor code is composed of 0.95 rate of regular LDPC pre-code and the cascading Luby transform(LT) code.By modeling and experiments on Matlab platform,the anti-interference performance of the FH communication system in different interference channels was analyzed.The results are as follows.In broadband interference channels,provided that the bit SNR is 2.5dB,the BER is lower than 10-3 and the system performance would be improved by 17.6dB.In partial-band interference channels,provided that the bit SNR is 1.0dB,the BER is lower than 10-3,the system performance would be improved by 16.8dB.It could be concluded that it is feasible to apply the proposed Raptor codes in FH as the FEC code.
出处 《北京理工大学学报》 EI CAS CSCD 北大核心 2012年第4期420-424,共5页 Transactions of Beijing Institute of Technology
基金 国家自然科学基金资助项目(61072048)
关键词 跳频 喷泉码 抗干扰 frequency hopping fountain code anti-interference
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参考文献11

  • 1刘策伦,卜祥元,安建平.具有高速并行译码结构LDPC码的构造[J].北京理工大学学报,2010,30(8):978-982. 被引量:3
  • 2MacKay D J C, Neal R M, Near Shannon limit performance of low-density parity-check codes-J. Elect Lett, 1996,32(18) 1645 - 1646.
  • 3Bodine E A, Cheng M K. Characterization of Luby transform codes with small message size for low-latency decoding [C] /// Proceedings of IEEE International Conference on Communications. Beijing, China Is. n. ], 2008 .. 1195 - 1199.
  • 4袁磊,安建平.具有不等差错保护特性的Raptor码研究[J].北京理工大学学报,2010,30(8):966-968. 被引量:3
  • 5Byers J W, Luby M, Mitzenmacher M. A digital fountain approach to reliable distribution of bulk data [C]//Proceeding of the ACM SIGCOMN98 Conference on Application, Technologies, Architectures, and Protocols for Computer Communication. Vancouver, Canada: Is. n. ],1998:56 - 67.
  • 6Luby M. LT codesl-C]//Proceedings of the 43rd Annual IEEE Symposium on the Foundations of Computer Science (STOC). Vancouver, Canada I-s. n.], 2002.. 271 - 280.
  • 7孟庆春,王晓京.Raptor Code预编码技术研究[J].计算机工程,2007,33(1):1-3. 被引量:11
  • 8Shokrollahi A. Raptor code[J]. IEEE Transaction on Information Theory,2006,52(6) 2551 - 2556.
  • 9Liu Celun, Bu Xiangyuan, Wang Hongjian. Nonbinary LDPC coded FH systems over partial-band jamming ehannels[C /// Proceedings of WiCOM 5th International Conference on Wireless Communications, Networking and Mobile Computing. Piseataway, NJ, USA:[-s. n. 1, 2009 1 -4.
  • 10Jenkac Hrvoje, Mayer Timo, Stockhammer Thomas, et al. Soft decoding of LT-codes for wireless broadcast [C] /// Proceedings of IST Mobile Summit. Dresden, Germany:Is. n. ], 2005..262 - 264.

二级参考文献29

  • 1Luby M. LT eodes[C]//Proceedings of the 43rd Annual IEEE Symposium Foundations of Computer Science. Vancouver, Canada:[s. n. ], 2002:271 - 282.
  • 2Shokrollahi A. Raptor codes[J]. IEEE Transactions on Information Theory, 2006,52(6) :2551 - 2567.
  • 3Rahnavard N, Fekri F. Unequal error protection using low-density parity-check codes [ C] // Proceedings of IEEE International Symposium on Information Theory. Chicago, USA:[s. n. ], 2004:452.
  • 4Rahnavard N, Pishro-Nik H, Fekri F. Unequal error protection using partially regular LDPC codes[J]. IEEE Transactions on Communication, 2007,55 : 387 - 391.
  • 5Rahnavard N, Vellambi B N, Fekri F. Rateless codes with unequal error protection property[J]. IEEE Transactions on Information Theory, 2007,53 (4) : 1521 - 1532.
  • 6Kozat U C, Ramprashad S A. Unequal error protection rateless codes for scalable information delivery in mobile networks[C]//Proceedings of IEEE International Conference on Computer Communications. Alaska, USA: [s. n. ],2007:2316 -2320.
  • 7Woo S S, Cheng M K. Prioritized LT codes[C] // Proceedings of the 42nd Annual Information Sciences and Systems. New Jersey, USA:[s.n.], 2008:568-573.
  • 8Luby M, Mitzenmacher M, Shokrallahi A. Analysis of random processes via and-or tree evaluation[C] // Proceedings of the 9th Annual ACM-SIAM Symposium on Discrete Algorithms. Francisco, USA: [s. n.], 1998: 364 - 373.
  • 9Yang M, Li Y, Ryan W. Design of efficiently encodable moderate-length high-rate irregular LDPC codes[J]. IEEE Transactions on Communication, 2004,52(4): 564 - 571.
  • 10Gallager R G. Low density parity-check codes[J]. IRE Trans on IT, 1962,8(1):21 -28.

共引文献14

同被引文献12

  • 1Marfia G, Roccetti M, Cattaneo A, et al. Digital fountains@P2P for future IPTV platforms a test-bed e- valuation [ C ] // Proceedings of 2011 4th IFIP International Conference on New Technologies, Mobility and Security(NTMS). [S. 1.] : IEEE, 2011 : 1 - 5.
  • 2Train J, Bannister J, Raghavendra C S. Routing fountains: Leveraging wide-area broadcast to improve mobile inter-domain routing[ C] // Proceedings of Military Communications Conference. [S. 1]: IEEE, 2011 :842 - 848.
  • 3Liang Xiao,Dai Huaiyu, Ning Peng. Jamming-resistant collaborative broadcast in wireless networks, part II: multihop networks [C]//Proceedings of Global Tele- communications Conference. [S. 1.]." IEEE, 2011: 1-6.
  • 4Liu Feng, Michae L W, Marcellin A B, et al. Compressive detection of frequency-hopping spread spectrumsignals[J]. SPIE Preceedings, 2013,8:8717.
  • 5Mackay D J C, Neal R M. Near Shannon limit performance of low-density parity-check codes[J]. Elect Lett, 1996,32(18) :1645 - 1646.
  • 6Dolecek L, Zhang Z, Anantharam V, et al. Analysis of absorbing sets and fully absorbing sets of array-based LDPC codes[J]. IEEE Trans on Inform Theory, 2010, 56(1) :181 - 201.
  • 7Smarandaehe R, Vontobel P O. Quasi-cyclic LDPC codes: influence of proto and tanner-graph structure on minimumhamming distance upper bounds [J]. IEEE Transaction Information Theory, 2012,58:585 - 607.
  • 8Luby M. LT codes[C]//Proceedings of the 43rd Annual IEEE Symposium Foundations of Computer Science. Vancouver, Canada : [s. n. ], 2002 : 271 - 282.
  • 9Byers J W, Luby M, Mitzenmacher M. A digital fountain approach to reliable distribution of bulk data [C]//Proceeding of the ACM SIGCOMN. Vancouver, Canada:[s. n. ], 1998:56 - 67.
  • 10Shokrollahi A. Raptorcodes, information [J]. IEEE Transactions on Theory, 2006,52:2551 - 2567.

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