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认知无线网络中基于混合频谱切换的最优目标信道选择算法

马彬 包小敏 谢显中

马彬, 包小敏, 谢显中. 认知无线网络中基于混合频谱切换的最优目标信道选择算法[J]. 电子与信息学报, 2017, 39(1): 31-37. doi: 10.11999/JEIT160268
引用本文: 马彬, 包小敏, 谢显中. 认知无线网络中基于混合频谱切换的最优目标信道选择算法[J]. 电子与信息学报, 2017, 39(1): 31-37. doi: 10.11999/JEIT160268
MA Bin, BAO Xiaomin, XIE Xianzhong. Optimal Target Channel Selection Algorithm Based on Hybrid Spectrum Handoffs in Cognitive Radio Networks[J]. Journal of Electronics & Information Technology, 2017, 39(1): 31-37. doi: 10.11999/JEIT160268
Citation: MA Bin, BAO Xiaomin, XIE Xianzhong. Optimal Target Channel Selection Algorithm Based on Hybrid Spectrum Handoffs in Cognitive Radio Networks[J]. Journal of Electronics & Information Technology, 2017, 39(1): 31-37. doi: 10.11999/JEIT160268

认知无线网络中基于混合频谱切换的最优目标信道选择算法

doi: 10.11999/JEIT160268
基金项目: 

国家自然科学基金(61271259, 61301123, 61471076),重庆市基础与前沿研究计划(cstc2015jcyjA40047),重庆邮电大学博士启动基金(A2014-10, A2015-16)

Optimal Target Channel Selection Algorithm Based on Hybrid Spectrum Handoffs in Cognitive Radio Networks

Funds: 

The National Natural Science Foundation of China (61271259, 61301123, 61471076), The Foundation and Advanced Research Program of Chongqing (cstc2015jcyjA40047), The Doctoral Start-up Fund of Chongqing University of Posts and Telecommunications (A2014-10, A2015-16)

  • 摘要: 在主动频谱切换中,预先确定目标信道存在高失效风险,从而增加切换时延的问题。该文提出一种基于混合主被动频谱切换的最优目标信道选择算法。该算法结合主动频谱切换和被动频谱切换的优点,引入最小累积切换时延评价标准,综合考虑次用户的多次中断、主用户的到达率和非理想频谱检测对次用户累积切换时延的影响,并详细分析和推导了非理想检测下次用户的累积切换时延。仿真表明,相较于主动和被动频谱切换中目标信道选择策略,在信道状态变化频繁或业务量较大等极端情况下,该算法的性能优势尤为明显。
  • MA Bin and XIE Xianzhong. PSHO-HF-PM: an efficient proactive spectrum handover mechanism in cognitive radio networks[J]. Wireless Personal Communications, 2014, 79(3): 1-23.
    PUSHP M and AWADHESH K S. A survey on spectrum handoff techniques in cognitive radio networks[C]. 2014 International Conference on Contemporary Computing and Informatics (IC3I), Mysore, 2014: 996-1001. doi: 10.1109/ IC3I.2014.7019755.
    WANG Chungwei and WANG Lichun. Spectrum hando for cognitive radio networks: reactive-sensing or proactive- sensing?[C]. IEEE International Performance, Computing and Communications Conference, Austin, Texas, 2008: 343-348. doi: 10.1109/PCCC.2008.4745128.
    WANG Chungwei, WANG Lichun, and CHANG Chungju. Modeling and analysis for spectrum handoffs in cognitive radio networks[J]. IEEE Transactions on Mobile Computing, 2012, 11(9): 1499-1513. doi: 10.1109/TMC.2011.155.
    ZHANG Lei, SONG Tiecheng, and WU Ming. Traffic- adaptive proactive spectrum handoff strategy for graded secondary users in cognitive radio networks[J]. Chinese Journal of Electronics, 2015, 24(4): 1-8.
    WANG Lichun and WANG Chungwei. Analysis of reactive spectrum handoff in cognitive radio networks[J]. IEEE Journal on Selected Areas in Communications, 2012, 30(10): 2016-2028. doi: 10.1109/JSAC.2012.121116.
    ZHANG Y. Spectrum handoff in cognitive radio networks: opportunistic and negotiated situations[C]. IEEE International Conference on Communications, Dresden, 2009: 1-6. doi: 10.1109/ICC.2009.5199479.
    ZHENG Shilian and YANG Xiaoniu. Target channel sequence selection scheme for proactive-decision spectrum handoff[J]. IEEE Communications Letters, 2011, 15(12): 1332-1334. doi: 10.1109/LCOMM.2011.102611.111603.
    XIAO Qinghai, LI Yunzhou, ZHAO Ming, et al. Opportunistic channel selection approach under collision probability constraint in cognitive radio systems[J]. Computer Communications, 2009, 32(18): 1914-1922.
    FATEMEH S and MASOUMEH N, Optimal probabilistic initial and target channel selection for spectrum handoff in cognitive radio networks[J]. IEEE Transactions on Wireless Communications, 2015, 14(1): 570-584. doi: 10.1109/TWC. 2014.2354407.
    WANG Lichun, WANG Chungwei, and CHANG Chungju. Optimal target channel sequence design for multiple spectrum handoffs in cognitive radio networks[J]. IEEE Transactions on Communications, 2012, 60(9): 2444-2455. doi: 10.1109/TCOMM.2012.070912.100661.
    WU Yeqing, HU Fei, SUNIL K, et al. A learning-based QoE-driven spectrum handoff scheme for multimedia transmissions over cognitive radio networks[J]. IEEE Journal on Selected Areas in Communications, 2014, 32(11): 2134-2148. doi: 10.1109/JSAC.2014.141115.
    WANG Lichun, WANG Chungwei, and ADACHI Fumiyuki. Load-balancing spectrum decision for cognitive radio networks[J]. IEEE Journal on Selected Areas in Communications, 2011, 29(4): 757-769. doi: 10.1109/JSAC. 2011.110408.
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出版历程
  • 收稿日期:  2016-03-21
  • 修回日期:  2016-07-25
  • 刊出日期:  2017-01-19

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