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Secrecy capacity results for a secure NOMA-based cognitive radio network with an external eavesdropper

机译:具有外部窃听器的安全NOMM的认知无线电网络的保密能力结果

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In this paper, we investigate a secure cognitive radio network (CRN), which deploys non-orthogonal multiple access (NOMA) to deliver a mixed multicast and unicast traffic to the intended receivers, while keeping them secret from the eavesdroppers. This model represents a cognitive interference channel with an external eavesdropper (CIC-EE). In this model, there are one pair of primary nodes, one pair of secondary nodes, and an external eavesdropper. The primary transmitter multicasts a confidential message to both primary and secondary receivers, while trying to keep it secret from the eavesdropper. The secondary transmitter helps the primary user to deliver its message in exchange of transmission opportunity. The secondary message is unicasted to the secondary receiver, while concealing it from both primary receiver and the eavesdropper. This scenario models a NOMA-based overlay cognitive radio paradigm with an external eavesdropper. For this scenario, the achievable rate-equivocation region is obtained and its optimality is shown for a class of degraded channels. Then, the results obtained for the discrete memoryless channel are extended to the Gaussian channel model. Furthermore, by deploying numerical examples, a comparison is made between the proposed secure NOMA-based scheme, its orthogonal multiple access (OMA) based counterpart, and a cognitive interference channel without an external eavesdropper. It is shown that the NOMA-based method achieves significantly higher rates than its OMA based counterpart. (C) 2020 Elsevier B.V. All rights reserved.
机译:在本文中,我们研究了一种安全的认知无线电网络(CRN),该网络(CRN)部署非正交多址(NOMA),以将混合的多播和单播流量传送到预期的接收器,同时将它们秘密从窃听器中秘密。该模型表示具有外部窃听器(CIC-EE)的认知干涉通道。在该模型中,有一对主节点,一对辅助节点和外部窃听器。主要发射器多播到主接收器的机密信息,同时尝试将其保密从窃听器中。辅助发送器有助于主用户交换传输机会的信息。辅助消息对辅助接收器无播,同时将其隐藏到主接收器和窃听器。这种情况模拟基于NOMA的覆盖层认知无线电PARADIGM,外部窃听器。对于这种情况,获得可实现的速率和平区域,并且其最优性被示出为一类降级的通道。然后,为离散的无记忆信道获得的结果扩展到高斯信道模型。此外,通过部署数值示例,在所提出的基于安全NOMM的方案,其基于正交的多址(OMA)的对应物之间进行比较,以及没有外部窃听器的认知干扰通道。结果表明,基于NOMM的方法比其基于OMA的对应物达到显着更高的速率。 (c)2020 Elsevier B.v.保留所有权利。

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