协同干扰下D2D通信的安全感知资源分配

Hao Wang, Shunliang Zhang, Qian Cheng
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引用次数: 2

摘要

通过物理层机制保护D2D底层蜂窝网络的通信已成为5G及以后的重要问题。在以往的研究中,很少将D2D用户的偏好和D2D用户作为合作干扰者的角色放在一起进行研究。在本文中,我们研究频谱资源分配以最大化系统保密和速率,并利用D2D用户协同保护处于窃听高风险的蜂窝用户。将资源分配问题表述为一个混合整数非线性规划(MINLP)模型。提出了一种基于偏好的匹配算法(PBMA)来解决频谱资源分配问题。在此基础上,提出了基于D2D用户辅助的协同干扰算法,进一步提高蜂窝用户的保密率。大量的仿真结果证明了所提方案在D2D链路和蜂窝链路的保密和速率方面的有效性。
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Security Aware Resource Allocation for D2D Communications with cooperative Jamming
Securing communications for D2D underlaying cellular networks by physical layer mechanisms has become an important issue for 5G and beyond. The preference of D2D users and the role of D2D users as cooperative jammers are rarely investigated together in previous works. In this paper, we investigate spectrum resource allocation to maximize system secrecy sum rate and leverage D2D users to cooperatively protect cellular users at high risks of being eavesdropped. The resource allocation problem is formulated as a Mixed-Integer Non-Linear Programming (MINLP) model. We propose a preference-based matching algorithm (PBMA) to tackle the spectrum resource allocation problem. Then, cooperative jamming-based algorithms by D2D users assisted are proposed to further improve the secrecy rate of cellular users. Extensive simulation results demonstrate the effectiveness of proposed schemes in terms of the secrecy sum rate of D2D links and cellular links.
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