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Secure transmission via jamming in cognitive radio networks with possion spatially distributed eavesdroppers

机译:通过拥有位置分布的窃听者的认知无线电网络中的干扰来确保安全传输

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This paper studies the physical layer security (PLS) in an underlay cognitive radio (CR) network. Under an interference constraint set by the primary user, we propose a secure transmission scheme from a secondary source to a secondary destination in the presence of spatially random eavesdroppers, the distribution of which is modeled as a homogeneous Possion point process (PPP). In addition to transmitting the message signal, the secondary source is allowed to use part of its power to transmit jamming signals in order to interfere the eavesdroppers. Assuming that the secondary destination has the knowledge of the jamming signals, we derive the closed-form expression for the connection outage probability and an easy-to-compute expression for the secrecy outage probability to characterize the reliability and the security performance, respectively. Moreover, we determine the optimal power allocation factor and wiretap code rates which maximize the secrecy throughput of the wiretap channel under secrecy outage probability constraint.
机译:本文研究了底层认知无线电(CR)网络中的物理层安全性(PLS)。在主要用户设置的干扰约束下,我们提出了在存在空间随机窃听程序的情况下从次要源到次要目的地的安全传输方案,该结构的分布被建模为同质的Possion Point Process(PPP)。除了发送消息信号之外,还允许辅助源使用其部分功率来发送干扰信号,以干扰窃听者。假设次要目的地了解干扰信号,我们分别得出连接中断概率的闭式表达式和保密中断概率的易于计算的表达式,以分别描述可靠性和安全性。此外,我们确定了最佳功率分配因数和窃听编码率,它们可以在保密中断概率约束下最大化窃听通道的保密吞吐量。

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