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过时信道状态信息下的机会式中继选择系统的安全性能分析 被引量:5

Secrecy Performance Analysis of Opportunistic Relay Selection Systems with Outdated CSI
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摘要 在Nakagami-m衰落信道下,目的端和窃听者采用最大比合并策略,本文研究了在机会式自适应解码转发中继选择安全协作系统中的安全性能。由于实际信道中的反馈延迟,最优的合法中继选择基于合法信道反馈的过时信道状态信息。为了评价机会式中继选择在改善安全性能上的表现,分别推导了准确的正安全容量概率和准确的安全中断概率闭合表达式。此外,针对两种不同情况,推导了形式简单的渐近表达式,并明确给出安全分集阶数和安全阵列增益。理论分析和数值仿真表明,增加中继个数和目的节点的天线数能够改善安全中断概率的性能表现,且在信道状态信息过时的条件下,系统的安全分集阶数与中继数无关。 This paper investigates the secrecy performance of opportunistic decode-and-forward( DF) relay selection in secure cooperative systems with maximal ratio combining( MRC) at the destination and the eavesdropper over Nakagami-m fading channels. The optimal legitimate relay is selected based on the outdated channel state information( CSI) of legitimate's channels due to practical delayed feedback. To evaluate the capability of the opportunistic relay selection in improving the secrecy performance,the expressions for exact probability of positive secrecy capacity and exact secrecy outage probability( SOP) are derived in closed form. Furthermore,simple asymptotic expressions are derived for two kinds of cases,explicitly showing the secrecy diversity order and the secrecy array gain. Analytical analysis and numerical simulations show that,the SOP performance can be improved by increasing whether the number of relays or the number of antennas at the destination. Furthermore,when the CSI is outdated,the secrecy diversity order of the system is independent of the number of relays.
出处 《信号处理》 CSCD 北大核心 2016年第7期810-818,共9页 Journal of Signal Processing
基金 国家自然科学基金(61401165 61201264 61302095) 福建省自然科学基金(2015J01262 2014J01243)
关键词 解码转发 机会式中继选择 NAKAGAMI-M衰落信道 正安全容量概率 安全中断概率 decode-and-forward opportunistic relay selection Nakagami-m fading channel probability of positive secrecy capacity secrecy outage probability
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参考文献19

  • 1Khisti A, Wornell G W. Secure transmission with multiple antennas I: The MISOME wiretap channel[J]. IEEE Trans- actions on Information Theory, 2010, 56(7) : 3088-3104.
  • 2Goel S, Negi R. Guaranteeing secrecy using artificial noise [ J ]. IEEE Transactions on Wireless Communications, 2008, 7(6): 2180-2189.
  • 3Laneman J N, Tse D N C, Wornell G W. Cooperative di- versity in wireless networks: Efficient protocols and out- age behavior[J]. IEEE Transactions on Information The- ory, 2004, 50(12): 3062-3080.
  • 4Ding Z, Leung K K, Goeckel D L, et al. Opportunistic relaying for secrecy communications: Cooperative jam- ming vs. relay chatting[J]. IEEE Transactions on Wire- less Communications, 2011, 10(6): 1725-1729.
  • 5Zou Y, Wang X, Shen W. Optimal Relay Selection for Physical-Layer Security in Cooperative Wireless Networks [J ]. IEEE Journal on Selected Areas in Communica- tions, 2013, 31(10) :2099-2111.
  • 6Bao V N Q, Linh-Trung N, Debbah M. Relay SelectionSchemes for Dual-Hop Networks under Security Con- straints with Multiple Eavesdroppers [ J ]. IEEE Transac- tions on Wireless Communications, 2013, 12(12) :6076- 6085.
  • 7Fan L, Lei X, Duong T Q, et al. Secure Muhiuser Com- munications in Multiple Amplify-and-Forward Relay Net- works [ J ]. IEEE Transactions on Communications, 2014, 62(9) :3299-3310.
  • 8Liu Y, Petropulu A P. Destination Assisted Cooperative Jamming for Wireless Physical-Layer Security [ J ]. IEEE Transactions on Information Forensics & Security, 2013, 8(4) :682-694.
  • 9Bletsas A, Khisti A, Reed D P, et al. A simple coopera- tive diversity method based on network path selection [J ]. IEEE Journal on Selected Areas in Communica- tions, 2006, 24 (3) : 659- 672.
  • 10Zheng G, Choo L C, Wang K K. Optimal cooperative jamming to enhance physical layer security using relays [ J]. IEEE Transactions on Signal Processing, 2011, 59 (3) : 1317-1322.

二级参考文献33

  • 1Q.T. Zhang, “Maximal-ratio combining over Nakagami fading channels with an arbitrary brance covariance matrix,” IEEE Trans. Vehicular Technology, 48, pp.1141-1150, July 1999.
  • 2M. Alouini and M.K. Simon, An MGF-based performance analysis of generalized selection combining over Rayleigh fading channels [J]. IEEE Trans. Commun.,2000, 48(3), pp.401-415.
  • 3Q.T. Zhang and H.G. Lu, A general analytical approach to multi-branch selection combining over various spatially correlated fading channels [J]. IEEE Trans. Commun.,2002, 50(7), pp.1066-1073.
  • 4A. Annamalai and C. Tellambura, Error rates for Nakagami-m fading multichannel reception of binary and M-ary signals [J]. IEEE Trans. Commun., 2001, 49(1),pp.58-68.
  • 5R.K. Mallik and M.Z. Win, Analysis of hybrid selection/maximal-ratio combining in correlated Nakagami fading[J]. IEEE Trans. Commun., 2002, 50(8), pp. 1372-1383.
  • 6Q.T. Zhang, Exact analysis of postdetection combining for DPSK and NFSK systems over arbitrarily correlated Nakagami channels [J]. IEEE Trans. Commun., 1998,46(11), pp.1459-1467.
  • 7N.C. Beaulieu and A. Abu-Dayya, Analysis of equal gain diversity on Nakagami fading channels [J]..IEEE Trans.Commun., 1991, 39(2), pp.225-234.
  • 8V.A. Aalo, Performance of maximal-ratio diversity in correlated Nakagami-fading environment [J]..IEEE Trans.Commun., 1995 43(8), pp.2360-2369.
  • 9E.K. A1-Hussaini and A.M. A1-Bassiouni, Performance of MRC diversity systems for the detection of signals with Nakagami fading [J]. IEEE Trans. Commun., 1985, 33(12),pp.1315-1319.
  • 10M.K, Simon and M. Alouini, A unified approach to the probability of error for noncoherent and differentially coherent modulations over generalized fading channels [J]..IEEE Trans. Commun.. 1998.46(12). pp,1625-1638.

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