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Optimal power allocation for cognitive radio sensor networks under primary secrecy outage constraint

机译:主保密中断约束下认知无线电传感器网络的最优功率分配

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To secure the primary network, in this paper, we propose a cooperative spectrum access strategy in which the cognitive radio sensor network (CRSN) will cooperate with the primary network to protect the primary confidential messages against malicious eavesdropping and the quality of service (QoS) is supported. In the proposed scheme, the CRSN will exploit its interference on the eavesdropper to secure the primary transmission and as a reward, loose constraint of the spectrum sensing error probability is permitted for the CRSN. According the spectrum sensing results and the activities of primary network, there are four system states in the system. For each state, we will optimally allocate the transmit power of the CRSN so that the average transmission rate of the CRSN is maximized under the secrecy outage probability constraint of the primary network. Moreover, the closed-form expression of the transmit power for each state is derived. Simulation results demonstrate the performance superiority of our proposed strategy over the conventional overlay strategy in terms of SN's average throughput.
机译:为了保护主网络,在本文中,我们提出了一种协作频谱访问策略,其中认知无线电传感器网络(CRSN)将与主网络合作,以保护主机密消息免遭恶意窃听和服务质量(QoS)。支持。在提出的方案中,CRSN将利用其对窃听者的干扰来确保一次传输,并且作为奖励,CRSN允许频谱感测错误概率的宽松约束。根据频谱感知结果和主网络的活动,系统中存在四种系统状态。对于每个状态,我们将最佳地分配CRSN的发射功率,以便在主要网络的保密中断概率约束下最大化CRSN的平均传输速率。此外,导出每种状态的发射功率的闭合形式。仿真结果表明,相对于SN的平均吞吐量,我们提出的策略在性能上优于传统的重叠策略。

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