...
首页> 外文期刊>Selected Topics in Signal Processing, IEEE Journal of >Accumulate and Jam: Towards Secure Communication via A Wireless-Powered Full-Duplex Jammer
【24h】

Accumulate and Jam: Towards Secure Communication via A Wireless-Powered Full-Duplex Jammer

机译:累积和阻塞:通过无线全双工干扰器实现安全通信

获取原文
获取原文并翻译 | 示例
           

摘要

This paper develops a new cooperative jamming protocol, termed accumulate-and-jam (AnJ), to improve physical layer security in wireless communications. Specifically, a full-duplex (FD) friendly jammer is deployed to secure the direct communication between source and destination in the presence of a passive eavesdropper. We consider the friendly jammer as an energy-constrained node without embedded power supply but with an energy harvesting unit and rechargeable energy storage; it can thus harvest energy from the radio frequency signals transmitted by the source, accumulate the energy in its battery, and then use this energy to perform cooperative jamming. In the proposed AnJ protocol, based on the energy status of the jammer and the channel state of source-destination link, the system operates in either dedicated energy harvesting (DEH) or opportunistic energy harvesting (OEH) mode. In DEH mode, the source sends dedicated energy-bearing signals and the jammer performs energy harvesting. In OEH mode, the source transmits an information-bearing signal to the destination. Meanwhile, using the harvested energy, the wireless-powered jammer transmits a jamming signal to confound the eavesdropper. Thanks to the FD capability, the jammer also harvests energy from the information-bearing signal that it overhears from the source. We study the complex energy accumulation and consumption procedure at the jammer by considering a practical finite-capacity energy storage, of which the long-term stationary distribution is characterized through applying a discrete-state Markov Chain. An alternative energy storage with infinite capacity is also studied to serve as an upper bound. We further derive closed-form expressions for two secrecy metrics, i.e., secrecy outage probability and probability of positive secrecy capacity. In addition, the impact of imperfect channel state information on the performance of our proposed protocol is also investigated. Numerical results validate all theoretical analyses and reveal the merits of the proposed AnJ protocol over its half-duplex counterpart.
机译:本文开发了一种新的协作干扰协议,称为“累积干扰”(AnJ),以提高无线通信中的物理层安全性。具体来说,部署了全双工(FD)友好干扰器,以确保在存在无源窃听者的情况下源与目标之间的直接通信。我们认为友好干扰器是一个能量受限的节点,没有嵌入式电源,但具有能量收集单元和可充电能量存储;因此,它可以从信号源发送的射频信号中收集能量,在其电池中积累能量,然后使用该能量执行协同干扰。在拟议的AnJ协议中,基于干扰源的能量状态和源-目标链路的信道状态,系统以专用能量收集(DEH)或机会能量收集(OEH)模式运行。在DEH模式下,源发送专用的能量承载信号,而干扰器执行能量收集。在OEH模式下,源将信息承载信号发送到目标。同时,无线干扰器利用收集到的能量发送干扰信号以混淆窃听者。由于具有FD功能,干扰器还从从源头监听到的信息承载信号中收集能量。我们通过考虑实用的有限容量能量存储来研究干扰机处的复杂能量积累和消耗过程,其中通过应用离散状态马尔可夫链来表征其长期静态分布。还研究了具有无限容量的替代储能装置作为上限。我们进一步导出了两个保密指标的闭式表达式,即保密中断概率和正保密能力的概率。此外,还研究了不完善的信道状态信息对我们提出的协议性能的影响。数值结果验证了所有理论分析,并揭示了拟议的AnJ协议在其半双工副本上的优点。

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