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1.
时间反转传输技术通过利用多径传输实现信号能量在空间和时间上的聚集,具有天然的抗窃听特性.本文在多输入单输出(Mingle-Input Single-Output,MISO)时间反转物理层安全传输系统中,在常规的发送预滤波器前增加一个所有天线共用的预均衡器,并针对保密速率最大化进行优化.相比较联合优化所有预滤波器的方案,优化预均衡器的复杂度明显更低.仿真结果表明,针对安全传输优化的预均衡时间反转系统,在配备4根发送天线、上采样因子为1时高发送功率下的可达保密速率比常规时间反转传输系统约高2倍,且天线数目越多,上采样因子越大,性能优势越明显.  相似文献   

2.
《无线电通信技术》2018,(3):224-229
物理层安全作为一种密钥缺省的安全方案,逐渐成为信息安全和无线通信两个领域的交叉热点,其主要利用物理层传输资源保证合法接收者正常通信,同时抑制窃听信道通信。针对这一特点,提出了基于无线通信网络中窃听用户多天线、发送端多用户调度,合法接收端选择最好用户的模型,这时窃听用户进行随机选择,分析这种情况下主信道信噪比、窃听信道信噪比、安全传输速率以及窃听用户天线数目对系统安全性能的影响。仿真结果表明,窃听信道多天线时中断概率增加,即降低了系统的安全性能,但增加发送端用户数目、降低窃听信道信噪比、增加主信道信噪比可以显著提高系统的安全速率。同时证明,这种方案同随机选择发送用户相比较,切实提高了系统的安全性能。  相似文献   

3.
该文研究存在多个相互勾结的单天线窃听者的多中继传输系统中,采用零空间人工噪声和放大转发的中继波束赋形的物理层安全传输方案。在中继窃听端的信道状态信息不准确的情况下,基于半定规划理论,对中继的波束赋形加权矩阵和人工噪声协方差矩阵进行联合优化,有效减少相互勾结的多个窃听者所获得的信息量,显著提高系统保密容量,是一种具有良好鲁棒性的物理层安全传输方案。仿真结果显示方案具有良好的性能。  相似文献   

4.
无线通信传播媒介的开放性,使得无线通信的安全问题无处不在,并且成为了无线通信网络的重要研究课题。而物理层安全技术是指在物理层利用无线信道的随机特性,通过调制编码等技术实现信息的保密传输目标,是未来实现无线网络安全的重要技术分支。随着物理层先进传输技术——多天线、多载波技术的广泛采用,为物理层安全技术提供了更多的可行方案。针对多天线多载波技术推动的无线物理层安全研究最新进展,重点介绍了正交频分复用系统采用时域人造噪声提高安全速率的新方法,最后对未来无线物理层安全的若干潜在研究方向进行了展望。  相似文献   

5.
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   

6.
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   

7.
针对传统信息论物理层安全研究中,对合法用户信道质量要求较高的问题,文中提出随机波束成型的物理层安全传输方法。该方法通过在主信道特征向量的垂直方向构造人工随机波束成型信道,使得合法用户与窃听方信道传输特征的差异性转化为信道质量的差异,最终得到正的保密容量。为保证算法的完备性,文章解决了三方面问题:1)给出随机波束成型的空间构造方法;2)随机波束成型方法的保密容量和最佳信源分布;3)人工随机信道的构造方法。最后针对采用随机波束成型算法的发送分集系统,通过设计、仿真其噪声发生和功率分配方案,进一步说明即使在合法用户信道质量差的情况下,随机波束成型传输算法也可获得保密传输容量。   相似文献   

8.
张广大  任清华  樊志凯 《信号处理》2021,37(8):1541-1549
针对多跳中继传输系统的信息安全传输问题,提出了一种基于全双工模式下多节点协作干扰(FD-MCJ)的物理层安全传输方案。该方案利用通信网络中的中继节点发送干扰信号恶化窃听节点的接收性能,同时中继节点根据信道状态信息(Channel State Information, CSI)自适应的选择两种情况下的安全传输方案。本文首先利用泊松点过程对窃听节点位置进行安全建模;然后,根据CSI可用程度,给出不同的安全传输具体方案,在考虑系统的跳数、天线间自干扰以及发射功率和干扰功率等因素下,推导FD-MCJ方案下系统保密中断概率的闭式解;最后,数值分析和蒙特卡洛仿真表明,理论推导的正确性以及多跳中继系统中采用全双工多节点协作干扰方案能够有效提升系统安全性能。   相似文献   

9.
基于空时分组码的正交频分复用技术(OFDM-STBC)是多天线多载波技术,将自适应功率分配技术用于OFDM-STBC,如何在载波和天线间分配能量是个关键问题.将待发射的信息分配到最有利的天线上传输接着利用载波间功率分配的算法进行载波间的功率分配,该算法的目标是使误码率最小.通过量化信道衰落简化了功率分配算法实现;通过量化功率分配因子的方式提高了无线链路的利用率.仿真结果显示:在误码率取0.1%时,对于有4个子载波的系统,较传统的算法,此算法能带来5dB的增益;随着系统载波数目的啬,性能进一步得到提高.  相似文献   

10.
雷维嘉  周洋 《电子学报》2020,48(6):1041-1051
研究多入多出(Multiple Input Multiple Output,MIMO)同时同频全双工双向通信系统中,合法节点在接收信息的同时向对方发送保密信息,并发送零空间人工噪声干扰窃听节点的物理层安全方案的优化问题.针对窃听信道状态信息仅统计分布已知,且存在残余自干扰的情况,首先推导出系统平均保密和速率的闭合表达式,进一步给出其下界.在此基础上,以最大化系统该下界为目标,对两节点的信息信号与人工噪声的功率分配因子、信息信号的功率分配矩阵进行联合优化.采用迭代的方法进行优化,每轮迭代中,先固定前者,优化后者,再固定后者,优化前者.使用DC(Difference of Concave/Convex,DC)规划优化信息信号功率分配矩阵,使用遗传算法优化信息信号与人工噪声的功率分配因子.对所提方案进行了仿真验证,证明理论推导正确,优化算法能有效地提高系统的平均保密和速率.  相似文献   

11.
From its emergence in the late 1980s as a lower cost alternative to early EEPROM technologies, flash memory has evolved to higher densities and speedsand rapidly growing acceptance in mobile applications.In the process, flash memory devices have placed increased test requirements on manufacturers. Today, as flash device test grows in importance in China, manufacturers face growing pressure for reduced cost-oftest, increased throughput and greater return on investment for test equipment. At the same time, the move to integrated flash packages for contactless smart card applications adds a significant further challenge to manufacturers seeking rapid, low-cost test.  相似文献   

12.
The parallel thinning algorithm with two subiterations is improved in this paper. By analyzing the notions of connected components and passes, a conclusion is drawn that the number of passes and the number of eight-connected components are equal. Then the expression of the number of eight-connected components is obtained which replaces the old one in the algorithm. And a reserving condition is proposed by experiments, which alleviates the excess deletion where a diagonal line and a beeline intersect. The experimental results demonstrate that the thinned curve is almost located in the middle of the original curve connectivelv with single pixel width and the processing speed is high.  相似文献   

13.
The relation between the power of the Brillouin signal and the strain is one of the bases of the distributed fiber sensors of temperature and strain. The coefficient of the Bfillouin gain can be changed by the temperature and the strain that will affect the power of the Brillouin scattering. The relation between the change of the Brillouin gain coefficient and the strain is thought to be linear by many researchers. However, it is not always linear based on the theoretical analysis and numerical simulation. Therefore, errors will be caused if the relation between the change of the Brillouin gain coefficient and the strain is regarded as to be linear approximately for measuring the temperature and the strain. For this reason, the influence of the parameters on the Brillouin gain coefficient is proposed through theoretical analysis and numerical simulation.  相似文献   

14.
Today, micro-system technology and the development of new MEMS (Micro-Electro-Mechanical Systems) are emerging rapidly. In order for this development to become a success in the long run, measurement systems have to ensure product quality. Most often, MEMS have to be tested by means of functionality or destructive tests. One reason for this is that there are no suitable systems or sensing probes available which can be used for the measurement of quasi inaccessible features like small holes or cavities. We present a measurement system that could be used for these kinds of measurements. The system combines a fiber optical, miniaturized sensing probe with low-coherence interferometry, so that absolute distance measurements with nanometer accuracy are possible.  相似文献   

15.
A new quantum protocol to teleport an arbitrary unknown N-qubit entangled state from a sender to a fixed receiver under M controllers(M < N) is proposed. The quantum resources required are M non-maximally entangled Greenberger-Home-Zeilinger (GHZ) state and N-M non-maximally entangled Einstein-Podolsky-Rosen (EPR) pairs. The sender performs N generalized Bell-state measurements on the 2N particles. Controllers take M single-particle measurement along x-axis, and the receiver needs to introduce one auxiliary two-level particle to extract quantum information probabilistically with the fidelity unit if controllers cooperate with it.  相似文献   

16.
A continuous-wave (CW) 457 nm blue laser operating at the power of 4.2 W is demonstrated by using a fiber coupled laser diode module pumped Nd: YVO4 and using LBO as the intra-cavity SHG crystal With the optimization of laser cavity and crystal parameters, the laser operates at a very high efficiency. When the pumping power is about 31 W, the output at 457nm reaches 4.2 W, and the optical to optical conversion efficiency is about 13.5% accordingly. The stability of the out putpower is better than 1.2% for 8 h continuously working.  相似文献   

17.
Call for Papers     
正Wireless Body-area Networks The last decade has witnessed the convergence of three giant worlds:electronics,computer science and telecommunications.The next decade should follow this convergence in most of our activities with the generalization of sensor networks.In particular with the progress in medicine,people live longer and the aging of population will push the development of wireless personal networks  相似文献   

18.
正Information Centric Networking Information-Centric Networking(ICN) is an emerging direction in Future Internet architecture research,gaining significant tractions among academia and industry.Aiming to replace the conventional host-to-host communication model by a data-centric model,ICN treats data content as the first  相似文献   

19.
20.
LI Shaoqian 《中国通信》2014,(6):I0001-I0002
The global bandwidth shortage of wireless communications has motivated the exploration of the naillimeter wave (ram-wave) frequency spectrum for the next generation wireless communications. Recent advances in RF CMOS technology and high speed baseband signal processing technologies have enabled tile extensive research and development of turn-wave wireless communications. The multi gigabit per second data rate of ram-wave system will lead to applications in many important scenarios, such as WPAN, WLAN,back-haul for cellular system. And the frequency bands include 28 GHz, 38 GHz, 45GHz, 60GHz, E-BAND and even beyond 100 GHz. The propagation and the imitation of the RF circuits design in these frequency bands make the directional antennas be inevitable for mm-wave communications.  相似文献   

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