期刊文献+

基于循环平稳检测的WCSN频谱感知算法

Spectrum Sensing Algorithm for Wireless Cognitive Sensor Network Based on Cyclostationary Detection
在线阅读 下载PDF
导出
摘要 在无线认知传感器网络中,感知节点采用能量检测法在低信噪比下检测概率较低,而传统循环平稳检测法复杂度过高。为此,采用一种基于频域简化的单循环平稳检测算法,推导算法虚警概率的闭合表达式,建立检测概率与实际信噪比之间的关系式。理论研究与仿真分析表明,该算法复杂度低于循环平稳检测法,与能量检测法持平,可以满足无线认知传感器网络中对频谱感知的性能要求。 Aiming at problem of the low probability of detection in low Signal Noice Rate(SNR) and high computation complex for traditional cyclic spectrum in the node of Wireless Cognitive Sensor Network(WCSN),a frequency-domain simplified single cyclostationary detection algorithm is adopted.A closed expression of false alarm probability is obtained,and the expression of direct relationship between detection probability and SNR in actual wireless environment is found out.Theoretical studies and simulation results show that the complexity of this algorithm is much lower than traditional cyclostationary detection,and as same as energy detection,so the algorithm can meet the performance of spectrum sensing in WCSN.
作者 李强
出处 《计算机工程》 CAS CSCD 2012年第23期92-94,100,共4页 Computer Engineering
基金 中央高校基本科研业务费专项基金资助项目(CDJXS11160014)
关键词 无线认知传感器网络 频谱感知 循环平稳检测 能量检测 复杂度分析 Wireless Cognitive Sensor Network(WCSN) spectrum sensing cyclostationary detection energy detection complexity analysis
  • 相关文献

参考文献8

  • 1Callaway E H.Wireless Sensor Networks:Architectures andProtocols[M].Boca Raton,USA:CRC Press,2003.
  • 2Cavalcanti D,Das S.Cognitive Radio Based Wireless SensorNetworks[C]//Proc.of the 17th International Conference onComputer Communications and Networks.St.Thomas,USA:[s.n.],2008:491-496.
  • 3Hu Fuping,Wang Shu.Energy Detection for Spectrum Sensing inCognitive Radio Sensor Network over Fading Channels[C]//Proc.of the 5th International Conference on Wireless Communications,Networking and Mobile Computing.Beijing,China:[s.n.],2009:1-4.
  • 4Gardner W A,Spooner C M.Signal Interception:PerformanceAdvantages of Cyclic-feature Detectors[J].IEEE Transactions onCommunications,1992,40(1):149-159.
  • 5Derakhshani M,Tho L N,Nasiri-Kenari M.Efficient CooperativeCyclostationary Spectrum Sensing in Cognitive Radios at LowSNR Regimes[J].IEEE Transactions on Wireless Communications,2011,10(11):3754-3764.
  • 6汪仪林,金梁,姚敏立,殷勤业.离散白噪声序列循环自相关函数估计的误差分析[J].数据采集与处理,1999,14(2):148-152. 被引量:13
  • 7林生森,吴启晖.基于循环相关滤波联合循环谱的频谱感知技术[J].解放军理工大学学报(自然科学版),2008,9(4):307-311. 被引量:3
  • 8Urkowitz H.Energy Detection of Unknown DeterministicSignals[J].Proceedings of the IEEE,1967,55(4):523-531.

二级参考文献11

  • 1张贤达,现代信号处理,1995年,100页
  • 2汪荣鑫,数理统计,1986年,10页
  • 3Federal Communications Commission. Spectrum policy task force report, ET Docket no. 02-135 [EB/ OL]. http ://www. fcc. gov/sptf/files/2002,2002.
  • 4HAYKIN S. Cognitive radio: brain-empowered wireless communications[J]. IEEE Journal on Selected Areas in Communications, 2005, 23(2): 201-220.
  • 5CABRIC D, MISHRA S M, BRODERSEN R W. Implementation issues in spectrum sensing for cognitive radios[C].Piscataway: Proc Asilomar Conf on Signals, Systems and Computers, IEEE Computer Society, 2004.
  • 6CABRIC D, TKACHENKO A, BRODERSEN R W. Spectrum sensing measurements of pilot, energy, and collaborative detection [C]. Washington DC:IEEE MILCOM, 2006.
  • 7CABRIC D, TKACHENKO A, BRODERSEN R W. Experimental study of spectrum sensing based on energy detection and network cooperation[C]. Boston Proc 1st Intl Workshop on Technology and Policy for Accessing Spectrum, TAPAS, 2006.
  • 8GARDNER W A. Signal interception :a unifying theoretical framework for feature detection [J]. IEEE Transactions on Communications, 1988, 36(8): 897- 906.
  • 9GARDNER W A, SPOONER C M. Signal interception: performance advantages of cyclic-feature detectors[J]. IEEE Transactions on Communications, 1992, 40(1): 149-159.
  • 10BENKO J, CHEONG Y C, CORDEIRO C, et al. A PHY/MAC proposal for IEEE 802, 22 WRAN systems Part 1 : The PHY, IEEE 802.22-01/0004rl[EB/OL], http ://www. ieee802, org/22, 2006.

共引文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部