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Security versus Reliability Study for Multi-hop Cognitive M2M Networks With Joint Impact of Interference Constraint and Hardware Noises

机译:干扰约束与硬件噪声共同影响的多跳认知M2M网络的安全性与可靠性研究

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In this paper, we study the trade-off between security and reliability for multi-hop cognitive mobile-to-mobile (M2M) networks. In the proposed scheme, a secondary source sends its data to a secondary destination with assistance of multiple secondary relays in presence of a secondary eavesdropper. The secondary transmitters operate on an underlay spectrum access mode where their transmit power must satisfy interference constraints required by primary users. We derive exact closed-form expressions of the end-to-end outage probability (OP) and intercept probability (IP) for the secondary network over double Rayleigh fading channels. Then, simulations are presented to verify the derived expressions as well as to show the trade-off between OP and IP, and the impact of hardware imperfection, the number of hops and the number of primary users on the performance metrics.
机译:在本文中,我们研究了多跳认知移动到移动(M2M)网络在安全性和可靠性之间的权衡。在提出的方案中,辅助源在存在辅助窃听器的情况下借助多个辅助中继将其数据发送到辅助目的地。辅助发射机在底层频谱接入模式下工作,在该模式下,它们的发射功率必须满足主要用户所需的干扰约束。我们在双瑞利衰落信道上得出了次级网络的端到端中断概率(OP)和截获概率(IP)的精确封闭式表达式。然后,进行仿真以验证派生的表达式,并显示OP和IP之间的折衷,以及硬件缺陷,跃点数和主要用户数对性能指标的影响。

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