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1.
张海洋  王保云  邓志祥 《信号处理》2013,29(8):1064-1070
为了提高MIMO窃听信道的可达安全速率,提出了基于广义奇异值分解的合作干扰策略。该策略中源节点和辅助节点同时采用基于广义奇异值分解的波束形成技术,源节点发送消息信号,辅助节点发送独立于消息信号的噪声信号,噪声信号对目的节点和窃听节点都产生干扰。此外设计了源节点和辅助节点采用合作干扰策略时的联合最优功率分配算法。该算法可以实现源节点和辅助节点在总功率受限时的可达安全速率最大化。仿真结果表明,与现有的非合作最优功率分配算法相比,本文提出的合作干扰策略在大信噪比时可以显著提高系统的可达安全速率。   相似文献   

2.
针对窃听方发送恶意导频干扰破坏系统安全性能的问题,本文将研究场景扩展到三节点MIMO(Multple-Input Multiple-Output)网络,首先分析存在恶意导频干扰时最小二乘和最小均方误差准则下的信道估计结果,并推导基于人工噪声的系统安全速率公式,得出当窃听方到达发送方的导频干扰功率大于合法接收方达到的功率时,安全速率值只能为零.然后,进一步分别研究半双工窃听方和全双工窃听方场景下的最优功率分配方案.最后,通过数值仿真分析窃听者位置、窃听者类型和干扰功率等因素对安全性能的影响.  相似文献   

3.
为保证MIMO异构网络面临多天线主动窃听时的安全性,该文提出一种基于人工噪声的抗主动窃听者的鲁棒安全传输方案。首先,考虑窃听者发送上行导频干扰的情形,研究了其发送的上行导频干扰对合法用户信道估计的影响。随后,基于信道估计结果对宏基站、微基站的下行数据与噪声信号的预编码矩阵进行设计,并推导了此种情形下系统安全速率的表达式。然后,以系统安全速率最大化为目标对基站的下行数据与噪声信号的发送功率进行优化设计,并提出一种基于1维线性搜索的求解方法。进一步地,考虑窃听者在发送上行导频干扰后,继而发送噪声干扰用户下行通信的情形,提出一种基于离散零和博弈方法来获取最优的发送功率设计。仿真结果验证了所提方案的安全性和鲁棒性。  相似文献   

4.
康小磊  季新生  黄开枝  王婧 《电子学报》2016,44(11):2767-2772
传统物理层安全人工噪声方法无法带来合法用户可靠性增强.针对该问题,提出一种新型动态人工噪声生成方法,发送方利用噪声发送时权系数剩下的最后一个的自由度,来改变合法接收方收到的人工噪声的相位,使得噪声方向与瞬时信号方向对齐,以提升合法用户瞬时接收信噪比.首先给出了具体的实现方法,然后给出理论上相应的性能分析和复杂度分析.仿真结果表明在对窃听者造成同等干扰水平下该方法能够有效提升合法用户性能.  相似文献   

5.
雷维嘉  王娟兵  谢显中 《电子学报》2018,46(12):2878-2887
研究大规模多输入多输出中继网络中的多用户物理层安全传输方案.系统模型中假设窃听节点与源节点和中继节点间都有直接链路,窃听节点可以接收到源节点和中继发送的信号.在不能获得窃听者信道状态信息的情况下,大规模MIMO中继采用简单的最大比合并/最大比发射信号处理方案,并配合中继零空间人工噪声和目的端的协作干扰实现多用户的信息安全传输.对保密速率及其在中继天线数无限增长时的渐近值进行了理论分析,并进行仿真.仿真结果显示系统的保密和速率随中继天线数的增长而增长,最终趋于理论渐近上界值.仿真结果也表明即使窃听节点具有多用户间干扰消除能力,并能同时拦截源节点和中继发送的信号,采用本文的方案仍然能获得可观保密速率.  相似文献   

6.
研究节点具备能量收集能力的中继窃听信道保密速率的优化问题,提出一种基于人工噪声协同干扰和节点间能量协同的物理层安全传输策略.各节点采用储能-发送模式工作,即先收集能量,再用于数据传输.中继节点采用放大转发方式,目的节点发送人工噪声进行协同干扰.由于中继节点所需功耗较高,目的节点将用于发送干扰之外的剩余能量转移给中继节点.给出以最大化保密速率为目标函数,优化能量吸收时间比例系数和干扰功率分配因子的两步优化算法.仿真结果表明人工噪声和能量协同的引入能有效提高系统的保密传输速率.  相似文献   

7.
研究了瑞利衰落信道下协作非正交多址系统的安全性能。通信过程由一个时隙构成,源节点向中继广播叠加信号,全双工中继使用串行干扰消除技术解码信号协助用户通信。假设存在潜在全双工主动窃听者,窃听者能够从中继处截获信息并同时向用户发送人工噪声进行干扰。基于上述假设,在高信噪比条件下,推导了安全中断概率的近似表达式,分析了各节点传输信噪比与功率分配因子对系统中断概率的影响,分析结果与蒙特卡洛仿真结果吻合。  相似文献   

8.
在包含中继节点的D2D(Device-to-Device)系统中,针对蜂窝链路与D2D链路同时受窃听的问题,提出一种基于链路间干扰辅助的中继D2D系统安全通信方法.首先,确定蜂窝链路与D2D链路上下行发送模式;然后,在基站与中继节点的发送信号中添加人工噪声,协作干扰窃听者;最后,对基站功率分配与D2D功率控制进行了优化,以实现不同类型链路间干扰辅助保障系统安全.仿真结果表明,所提出的安全通信方法在保密速率方面比SVD(Singular Value Decomposition)与ZF(Zero-Forcing)预编码方法提高了1.5bit/s/Hz.  相似文献   

9.
基于随机信号流的密钥生成方案会在合法发送方发送随机信号时泄露部分共享随机源信息导致密钥安全性和可达密钥速率较低。针对此问题,该文提出一种基于多随机信号流的密钥生成方案。首先,发送方利用信道互易性和上行导频估计下行信道,然后发送方在各天线上发送相互独立的随机信号流。由于窃听者难以准确估计所有随机信号流,因此难以窃取接收方每根天线接收到的叠加随机信号,而发送方则可根据估计的下行信道和自身发送的随机信号流计算出接收方各天线的接收信号。因此,可以将接收天线上的叠加随机信号作为共享随机源提取密钥。进一步地,该文还推导了该方案的可达密钥速率和共享随机源的互信息量表达式,并分析了两者间的关系以及对密钥安全性的影响。最后,通过仿真验证了该方案的有效性,仿真结果表明该方案能够有效降低窃听者观察到的共享随机源互信息,从而提升可达密钥速率及密钥安全性。  相似文献   

10.
该文研究节点具有能量收集能力的两跳中继系统的物理层安全传输方案。考虑窃听节点与源和中继节点间都有直接链路的情况。每个数据传输时隙分为能量收集和数据传输两个阶段,各节点用收集的能量发送信号。中继采用放大转发方式,目的节点发送人工噪声进行协作干扰,保护在两跳传输中传输的保密信息。以最大化保密速率为目标,采用迭代算法优化能量吸收和数据传输两阶段的时间分配比例系数和协作干扰功率分配因子。仿真结果表明优化算法准确,优化后的协作干扰方案能显著提高系统的保密传输速率。由于考虑了窃听节点在两跳传输中都能接收到信号的可能性,文中方案更贴近实际,并解决了一个复杂的优化问题。  相似文献   

11.
In this paper, we propose and analyze the integration of source and jammer for a decode-and-forward two-way scheme under physical layer security where the source nodes not only transmit data signals, but also transmit jamming signals to degrade the quality of eavesdropping links, and a selected relay forwards the combined data signals using an XOR operation. In this proposed protocol, the best relay is chosen by the maximum end-to-end achievable secrecy rate, and the secrecy system performance is evaluated by the exact and asymptotic secrecy outage probability over flat and block Rayleigh fading channels. The Monte-Carlo results are presented to verify the theoretical analysis.  相似文献   

12.
In this work, the secrecy of a typical wireless cooperative dual-hop non-orthogonal multiple access (NOMA)-enabled decode-and-forward (DF) relay network is investigated with the impact of collaborative and non-collaborative eavesdropping. The system model consists of a source that broadcasts the multiplexed signal to two NOMA users via a DF relay, and information security against the eavesdropper nodes is provided by a helpful jammer. The performance metric is secrecy rate and ergodic secrecy capacity is approximated analytically. In addition, a differential evolution algorithm-based power allocation scheme is proposed to find the optimal power allocation factors for relay, jammer, and NOMA users by employing different jamming schemes. Furthermore, the secrecy rate analysis is validated at the NOMA users by adopting different jamming schemes such as without jamming (WJ) or conventional relaying, jamming (J), and with control jamming (CJ). Simulation results demonstrate the superiority of CJ over the J and WJ schemes. Finally, the proposed power allocation outperforms the fixed power allocation under all conditions considered in this work.  相似文献   

13.
This paper presents different relay and jammer selection schemes for one-way cooperative networks to increase the security against malicious eavesdroppers. We consider a single source-destination cooperative network with multiple intermediate nodes and one or more eavesdroppers. The selection in the proposed schemes is made with the presence of direct links and the assumption that the broadcast phase is unsecured. The proposed schemes select three intermediate nodes. The first selected node operates in the conventional relay mode and assists the source to deliver its data to the corresponding destination via a Decode-and-Forward strategy. The second and third selected nodes are used in different communication phases as jammers to create intentional interference at the eavesdroppers’ nodes. Moreover, a hybrid scheme which switches between jamming and non-jamming modes is introduced in this paper. The proposed schemes are analyzed in terms of ergodic secrecy capacity and secrecy outage probability. Extensive analysis and a set of simulation results are presented to demonstrate the effectiveness of the different schemes presented in this work. The obtained results show that the proposed schemes with jamming outperform the conventional non-jamming schemes and the hybrid switching scheme further improves the secrecy capacity. The impact of changing both the eavesdroppers and the relays location on ergodic secrecy capacity and secrecy outage probability is also discussed. Finally, the impact of the presence of multiple eavesdroppers is studied in this paper.  相似文献   

14.
针对无线网状网中缺少窃听者先验知识不利场景中的安全连接问题,提出了一种结合全双工和协作干扰技术的物理层安全策略。利用全双工通信中的自干扰消除技术和协作干扰技术,提出的安全策略可有效劣化位于信息传播范围内包括潜伏在接收节点附近窃听者的接收性能。为保证信息的安全传输给出了协作干扰节点的选择方法,基于随机几何等数学方法导出了选定路径的安全连接概率表达式。性能分析和仿真结果表明,所提方法与仅基于全双工或协作干扰技术的方法相比,其安全性能有较大提升。  相似文献   

15.
罗屹洁  崔丽  杨旸 《信号处理》2018,34(1):119-125
D2D通信作为5G移动通信的关键技术,以其能有效提升系统能量效率和频谱效率而备受瞩目。在系统中存在被动窃听者的情况下,D2D带来的干扰也被视为友好干扰来提升蜂窝系统的物理层安全性能。但如果存在的是主动窃听者, D2D带来的干扰就会影响蜂窝系统安全稳健的传输性能。因此本文考虑在系统中存在可以智能选择被动窃听或主动干扰的攻击者的情况下,通过选择最佳的D2D用户并采取协同中继或友好干扰的策略来提升在被动窃听情况下蜂窝网络的安全可达速率和在主动干扰下的数据传输速率,来改进蜂窝系统通信的鲁棒性和安全性。本文将合法用户和主动窃听者之间的相互作用建模为非零和的非协作混合博弈,分析了此混合博弈的纳什均衡的存在性,并通过基于fictitious play(虚拟对策)的算法获得了其纳什均衡解。仿真结果表明该算法优于传统的nearest neighbor(最近距离)算法,并且联合考虑两种D2D协作方式的策略优于只将D2D用户视为友好干扰或是协同中继的策略。   相似文献   

16.
In this paper, the secrecy performance and power allocation of the signal‐to‐noise ratio‐based hybrid decode–amplify–forward (HDAF) relaying protocol in wireless cooperative network are investigated to get security at physical layer. The performance metrics considered are secrecy rate and intercept probability. The Ergodic secrecy rate is approximated theoretically. The effect of relay and eavesdropper locations on the secrecy performance of the system is analyzed. It is found that maximum secrecy rate is obtained for the relay close‐to‐destination case and minimum for the relay close‐to‐eavesdropper case. Jamming schemes are superior in secrecy rate performance than without jamming schemes. To enhance the secrecy rate further with the optimized relay and jammer powers, invasive weed optimization (IWO) algorithm‐based power allocation is proposed. Here, maximizing the secrecy rate is defined as the cost function for the proposed IWO algorithm‐based power allocation. Comparative study is done over the conventional equal and proposed power allocation schemes for validation. The proposed power allocation scheme proved to be superior. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

17.
针对非信任双向中继网络的能量受限和信息安全问题,该文提出一种基于无线携能通信(SWIPT)与人工噪声辅助的物理层安全传输方案。该方案中的非信任中继采用功率分割(PS)策略辅助合法用户进行保密通信,而全双工干扰机在进行能量采集的同时发送人工噪声以确保系统安全。以最大化系统保密性能为目标,优化了中继的PS因子,推导了保密和速率的解析式及高信噪比条件下最佳PS因子的闭式解。特别针对非理想信道状态信息的情况,分析了信道估计误差对系统保密性能的影响。仿真结果验证了理论推导的正确性,并证明了所提的基于PS策略的干扰机协同传输方案相比采用时间切换(TS)策略或目的节点协同干扰的方案具有更优的保密性能。  相似文献   

18.

This paper introduces the hybrid-decode-amplify-forward (HDAF) cooperative relaying into a control jamming aided NOMA network under Rayleigh-flat-fading channel conditions. In HDAF, the relay switches between AF and DF modes based on SNR threshold to forward the information signal to the corresponding NOMA users in the existence of an eavesdropper. We first characterize the secrecy performance of the considered network in terms of secrecy rate at both NOMA users analytically under different jamming scenarios. Further, to improve the secrecy rate, Differential Evolution (DE) algorithm-based power allocation is adopted to optimize the powers of jammer, relay, and NOMA users for which maximization of secrecy rate is chosen as the cost function. Moreover, the impact of different numerical parameters such as signal-to-noise ratio (SNR), jammer-to-eavesdropper distance, and relay-to-eavesdropper distance on the secrecy rate is investigated at both NOMA users by employing different jamming schemes. The MATLAB based simulation results validate the efficacy of proposed power allocation over fixed power allocation, CJ over other jamming schemes, and application of HDAF relaying for physical layer security enhancement of NOMA enabled cooperative network.

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