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Secure Transmission Design for Cognitive Radio Networks With Poisson Distributed Eavesdroppers

机译:具有泊松分布式窃听器的认知无线电网络的安全传输设计

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摘要

In this paper, we study physical layer security in an underlay cognitive radio (CR) network. We consider the problem of secure communication between a secondary transmitter–receiver pair in the presence of randomly distributed eavesdroppers under an interference constraint set by the primary user. For different channel knowledge assumptions at the transmitter, we design four transmission protocols to achieve the secure transmission in the CR network. We give a comprehensive performance analysis for each protocol in terms of transmission delay, security, reliability, and the overall secrecy throughput. Furthermore, we determine the optimal design parameter for each transmission protocol by solving the optimization problem of maximizing the secrecy throughput subject to both security and reliability constraints. Numerical results illustrate the performance comparison between different transmission protocols.
机译:在本文中,我们研究了底层认知无线电(CR)网络中的物理层安全性。我们考虑在主要用户设置的干扰约束下,存在随机分布的窃听者的情况下,辅助发送器-接收器对之间的安全通信问题。针对发射机处不同的信道知识假设,我们设计了四种传输协议以实现CR网络中的安全传输。我们针对每种协议在传输延迟,安全性,可靠性和整体保密吞吐量方面进行了全面的性能分析。此外,我们通过解决受安全性和可靠性约束最大程度地提高保密吞吐量的优化问题,来确定每种传输协议的最佳设计参数。数值结果说明了不同传输协议之间的性能比较。

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