Cooperative jamming for secrecy in decentralized wireless networks

Xiangyun Zhou, M. Tao, R. Kennedy
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引用次数: 40

Abstract

Cooperative jamming as a physical layer security enhancement has recently drawn considerable attention. While most existing works focus on communication systems with a small number of nodes, we investigate the use of cooperative jamming for providing secrecy in large-scale decentralized networks consisting of randomly distributed legitimate users and eavesdroppers. A modified slotted ALOHA protocol, named CJ-ALOHA, is considered where each legitimate transmitter either sends its message signal or acts as a helping jammer according to a message transmission probability p. We derive the secrecy transmission capacity to characterize the network throughput and show how the throughput is affected by the CJ-ALOHA protocol. Both analytical and numerical insights are provided on the design of the CJ-ALOHA protocol for optimal throughput performance.
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分散无线网络中保密的协同干扰
协同干扰作为一种物理层安全增强手段近年来引起了人们的广泛关注。虽然大多数现有工作都集中在具有少量节点的通信系统上,但我们研究了在由随机分布的合法用户和窃听者组成的大规模分散网络中使用协作干扰来提供保密。一种改进的槽ALOHA协议,命名为CJ-ALOHA,考虑其中每个合法发送器根据消息传输概率p发送其消息信号或充当辅助干扰器。我们推导了保密传输容量来表征网络吞吐量,并显示了吞吐量如何受到CJ-ALOHA协议的影响。在CJ-ALOHA协议的最佳吞吐量性能的设计上提供了分析和数值见解。
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