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基于SNR比较的协作频谱感知研究 被引量:4

Cooperative Spectrum Sensing Research Based on SNR Comparison
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摘要 频谱感知是认知无线电中通过发现可用频率资源提高频谱利用率的关键技术。协作频谱感知能一定程度上消除多径和阴影的影响,为了进一步提高频谱检测性能,提出了一种基于SNR比较的协作频谱感知算法。在此算法中,各个认知用户将各自的本地判决结果和自身的SNR值发送到数据融合中心,通过SNR比较,对各CR用户进行筛选,选出符合算法要求的CR用户参加协作检测,进行数据融合。计算机仿真表明,该算法能有效提高检测性能,并减少判决融合的节点数量。 Spectrum sensing is one of the key technologies in cognitive radio,which improves the utilization ratio of spectrum by discovering available frequency resources. Cooperative spectrum sensing can eliminate the multi-path and shadow effects to a certain extent. A cooperative spectrum sensing algorithm based on SNR comparison is proposed, in which each CR user transmits the local decision result and estimated SNR to the data fusion center,and the CR users with SNRs that match the algorithm are selected for deci-sion fusion. Computer simulation results show that this algorithm increases the probability of detection and reduces the node number in decision fusion.
出处 《无线电通信技术》 2014年第4期77-80,共4页 Radio Communications Technology
基金 国家科技重大专项基金资助项目(2011ZX03002-004-02) 浙江省重点科技创新团队基金资助项目(2012R10009-04) 浙江省杰出青年科学基金资助项目(R1110416) 教育部高等学校博士学科点专项科研基金资助项目(20113305110002) 宁波市科技创新团队基金资助项目(2011B81002)
关键词 认知无线电 频谱感知 协作检测 SNR比较 cognitive radio spectrum sensing cooperative detection SNR comparison
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  • 1Ghasemi A, Sousa E S. Collaborative spectrum sensing for opportunistic access in fading environments[C]// Proceedings of the First IEEE International Symposium on New Frontiers in Dynamci Spectrum Access Networks( DySPAN 2005 ). IEEE,2005 : 131 - 136.
  • 2Gigantean,Li Y. Cooperative spectrum sensing in cognitive radio networks[ .C ] //Proceedings of the First IEEE International Symposium on New Frontiers in Dynamci Spectrum Access Networks (DySPAN). IEEE, 2005 : 137 - 143.
  • 3Peng Qihang,Zeng Kun,Wang Jun. a Distributed Spectrum Sensing Scheme based on Credibility and Evidence Theory in Cognitive Radio Context [ C]//Proeeedings of the IEEE 17th International Symposium on Personal, Indoor and Mobile Radio Communications. IEEE ,2006 : 1 - 5.
  • 4Peh E,Liang Ying- chang. Optimization for Cooperative Sensing in Cognitive Radio Networks [ C ]//Proceedings of the IEEE Wireless Communications and Networking Conference (WCNC). IEEE,2007:27 - 32.
  • 5Yucek T, Arslan H. Spectrum Characterization for Opportunistic Cognitive Radio Systems [ C ]//Proceedings of the IEEE Military Communications Conference (MILCOM). IEEE ,2006 : 1 - 6.
  • 6Chen Ruiliang, Park Jung- Min, Kaigui Bian. Robust. Distributed Spectrum Sensing in Cognitive Radio Networks [ C ]//Proceedings of the IEEE 27th Conference on Computer Communications. IEEE, 2008 : 1876 - 1884.
  • 7Sun Chunhua, Wei Zhang, Letaief, K B. Cooperative Spectrum Sensing for cognitive Radios under Band- width Constraints[C]//Proceedings of the IEEE Wireless Communications and Networking Conference(WCNC). IEEE,2007 : 1 - 5.
  • 8Hong Li, Ma Junfei, Xu Fangmin, et al. Optimization of Collaborative Spectrum Sensing for Cognitive Radio [ C ]//Proceedings of the IEEE International Conference on Networking, Sensing and Control ( ICNSC ). IEEE, 2008 : 1730 - 1733.
  • 9Ghasemi, Sousa E S. Collaborative Spectrum Sensing for Opportunistic Access in Fading Environment[C].USA:IEEE DYSPAN, 2005:131-136.
  • 10GEZIEI S, SAHINOGLU Z. On the Optimality of Equal Gain Combining for Energy Detection of Unknown Signals[J].IEEE Communications Letters, 2006, 10(11):1-3.

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  • 1Haykin S. Cognitive Radio: Brain-Empowered Wireless Communications [J].IEEE Journal on Selected Areas in Communications, 2005,23(2) :201-220.
  • 2Cabric D ,Tkachenko A, Broderson R W.Spectrum Sensing Measurements of Pilot, Energy and Collaborative Detection [C]/// Military Communications Conference, 2006, 21 (3) :345-354.
  • 3Urkowitz H. Energy Detection of Unknown Deterministic signals [ J ].Proceedings of the IEEE, 1967,55 ( 4 ) : 523 - 531.
  • 4Cabric D, Borderson R W.Physical Layer Design Issues Unique to Cognitive Radio Systems [J].Personal Indoor and Mobile Radio Communications, 2005,24 ( 3 ) : 759 - 763.
  • 5Chen X F,Nagaraj S.Entropy Based Spectrum Sensing in Cognitive Radio [ C]//7th Annual Wireless Telecommu- nications Symposium, Ponoms, CA, United States, April 2008:57-61.
  • 6Graupe D. Principles of Artificial Neural Networks [ M ]. 2nd. River Edge, N J, USA: World Scientific Publishing Co, Inc, 2007 : 23-45.
  • 7Gopathy P,Nicolaos B, Karayiannis N B.Quantum Neural Networks(QNNs) : Inherently Fuzzy Feed forward Neural Network [J]. Neural Networks, IEEE Transactions on, 1997,8(3) :679-693.
  • 8Josephson B. Possible Effects in Superconductive Tunne- ling [ J] .PhysLett, 1962,7( 1 ) :251-253.
  • 9MITOLA J.Cognitive Radio:Making Software Radios More Personal[J]. IEEE Personal Communication, 1999, 6 (4) :13-18.
  • 10HAYKIN S. Cognitive Radio: Brain-empowered Wireless Communications[ J ]. IEEE Journal on Selected Areas in Communications, 2005,23 (2) : 201 - 220.

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