首页> 外文期刊>IEEE transactions on information forensics and security >Joint Relay Selection and Power Allocation in Large-Scale MIMO Systems With Untrusted Relays and Passive Eavesdroppers
【24h】

Joint Relay Selection and Power Allocation in Large-Scale MIMO Systems With Untrusted Relays and Passive Eavesdroppers

机译:具有不可信中继和无源窃听者的大规模MIMO系统中的联合中继选择和功率分配

获取原文
获取原文并翻译 | 示例

摘要

In this paper, a joint relay selection and power allocation (JRP) scheme is proposed to enhance the physical layer security of a cooperative network, where a multiple antennas source communicates with a single-antenna destination in the presence of untrusted relays and passive eavesdroppers (Eves). The objective is to protect the data confidentially while concurrently relying on the untrusted relays as potential Eves to improve both the security and reliability of the network. To realize this objective, we consider cooperative jamming performed by the destination while the JRP scheme is implemented. With the aim of maximizing the instantaneous secrecy rate, we derive a new closed-form solution for the optimal power allocation and propose a simple relay selection criterion under two scenarios of non-colluding Eves (NCE) and colluding Eves (CE). For the proposed scheme, a new closed-form expression is derived for the ergodic secrecy rate (ESR) and the secrecy outage probability as security metrics, and a new closed-form expression is presented for the average symbol error rate as a reliability measure over Rayleigh fading channels. We further explicitly characterize the high signal-to-noise ratio slope and power offset of the ESR to highlight the impacts of system parameters on the ESR. In addition, we examine the diversity order of the proposed scheme to reveal the achievable secrecy performance advantage. Finally, the secrecy and reliability diversity-multiplexing tradeoff of the optimized network are provided. Numerical results highlight that the ESR performance of the proposed JRP scheme for NCE and CE cases is increased with respect to the number of untrustworthy relays.
机译:本文提出了一种联合中继选择和功率分配(JRP)方案,以增强协作网络的物理层安全性,在存在不信任中继和无源窃听者的情况下,多天线源与单天线目标进行通信(前夕)。目的是在秘密地保护数据的同时,同时将不信任的中继作为潜在的Eves来提高网络的安全性和可靠性。为了实现此目标,我们考虑了在实施JRP方案时由目标执行的协同干扰。为了最大程度地提高瞬时保密率,我们推导了一种新的闭合形式的最优功率分配解决方案,并提出了在无冲突Eves(NCE)和共谋Eves(CE)两种情况下的简单继电器选择准则。对于所提出的方案,以遍历保密率(ESR)和保密中断概率作为安全度量推导了新的闭式表达式,并针对平均符号错误率提出了一种新的闭式表达式作为可靠性度量。瑞利衰落信道。我们进一步明确表征了ESR的高信噪比斜率和功率偏移,以突出显示系统参数对ESR的影响。此外,我们检查了所提出方案的多样性顺序,以揭示可实现的保密性能优势。最后,提供了优化网络的保密性和可靠性分集复用权衡。数值结果表明,针对不可信中继的数量,针对NCE和CE案例提出的JRP方案的ESR性能有所提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号