期刊文献+

认知无线中继网络最小化中断概率功率分配算法 被引量:2

Power Allocation Algorithm Minimizing Outage Probability in Cognitive Radio Relay Network
在线阅读 下载PDF
导出
摘要 为提升认知无线中继网络的中断性能,通过分析系统中断概率及用户功率分配情况,提出一种最小化中断概率的功率分配算法。给出在主用户干扰约束和总功率约束条件下最小化中断概率的数学优化方程组,根据用户的最大发射功率与干扰电平阈值的受限关系,分别考虑分配功率不超过干扰电平阈值、中继节点功率受限于干扰电平阈值以及所有节点受限于干扰电平阈值这3种情况,对应提出3种最佳功率分配方案,并基于KKT条件求解最优值。实验结果表明,该功率分配算法与基于频谱共享以及基于机会主义中继选择的中断概率分析方法相比,性能增益提升显著,并且在总功率、干扰电平变化的条件下,所采用的功率分配方案提升系统中断性能效果较好。 To improve the outage performance of cognitive radio relay network,this paper proposes a power allocation algorithm minimizing outage probability by analyzing the system outage probability and user power allocation conditions.It presents the mathematical optimization equations minimizing outage probability of under master user interference constraint and total power constraint. Then,according to the relationship between the user's maximum transmit power and interference level threshold,it proposes three optimal power allocation schemes respectively to deal with three types of cases,including the distribution of power not exceeding the interference level threshold,the relay node power limited by the interference level threshold,and all nodes limited by the interference level threshold. Finally,the optimal value is solved based on Karush-Kuhn-Tucker( KKT) conditions. Experimental results showthat compared with similar power allocation methods,the proposed algorithm has obvious performance gain promotion. And the effectiveness of the adopted power allocation schemes is proved the most effective in enhancing the system outage performance when the total power or the interference level is changing.
出处 《计算机工程》 CAS CSCD 北大核心 2017年第7期119-123,共5页 Computer Engineering
基金 国家自然科学基金(61402216) 闽南师范大学教学研究基金(JG201507)
关键词 认知无线中继网络 最小化中断概率 功率分配 干扰电平阈值 KKT条件 cognitive radio relay network minimizing outage probability power distribution interference level threshold Karush-Kuhn-Tucker(KKT) conditions
  • 相关文献

参考文献7

二级参考文献63

  • 1ZOU Yulong, YAO Yudong, ZHENG Baoyu. Cooperative relay techniques for cognitive radio systems: spectrum sensing and secondary user transmissions [J]. IEEE Communications Magazine, 2012, 24(8) : 98 - 103.
  • 2KIM Hyungjong, WANG Hano, LEE Jemin, et al. Outage probability of cognitive amplify-and-rorward relay networks under interference constraints [C]//Proceedings of Asia- Pacific Conference on Communications(APCC). Auckland, New Zealand.. IEEE, 2010: 373-376.
  • 3LUO Liping, ZHANG Ping, ZHANG Guangehi, et al. Outage performance for cognitve relay networks with underlay spectrum sharing [J]. IEEE Communications letters, 2011, 15(7): 710-712.
  • 4HONG Hao, ZHOU Chunhui, ZHU Rui, et al. A selective strategy for multi-node decode-and-forward protocol [C]// Proceedings of International Conference on Electronics Communications and Control(ICECC). Zhou Shan, China: IEEE, 2012: 124- 128.
  • 5Lee K, Yener A. Outage Performance of Cognitive Wireless RelayNetworks [C]// Proceedings of IEEE Global Telecommunications Conference(GLOBECOM). San Francisco, USA: IEEE, 2006:1-5.
  • 6Mietzner J, Lampe L, Schober R. Performance analysis for afully decentralised transmit power allocation scheme for relay-assistedcognitive-radio systems [C]// Proceedings of IEEE Global Telecommunication Conference(GLOBECOM). New Orleans, USA: IEEE, 2008: 235-239.
  • 7ZOU Yulong, YAO Yudong, ZHENG Baoyu. Cognitive transmissions with multiple relays in cognitive radio networks [J]. IEEE Transactions Wireless Communication, 2011, 10(2) : 648 - 659.
  • 8ZOU Yulong, YAO Yudong, ZHENG Baoyu. A Cooperative sensing based cognitive relay transmission scheme without a dedicated sensing relay channel in cognitive radio networks [J]. IEEE Transaction on Signal Processing, 2011, 59(2): 854 - 858.
  • 9Alberto L. Probability and Random Processes for Electrical Engineering [M]. 2 ED. New Jersey, USA: Addison-Wesley Publishing Company, 1993.
  • 10Guo Y, Kang G, Zhang N, et al. Outage performance of relay-assisted cognitive-radio system under spectrum- sharingconstraints [J]. Electronics Letters, 2010, 46(2): 182 -183.

共引文献16

同被引文献16

引证文献2

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