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D2D-Assisted Physical-Layer Security in Next-Generation Mobile Network

机译:下一代移动网络中D2D辅助的物理层安全性

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Device-to-device (D2D) communication is a promising technology to improve the next-generation mobile network. In this paper, we propose a D2D-assisted physical layer security scheme to protect D2D users from eavesdroppers. In the proposed scheme, each D2D transmission link will be protected by other D2D relay users. The relay users will manage the interference to suppress the eavesdroppers so that the eavesdroppers cannot decode the message correctly while keeping successful transmission for legitimate users. We propose to compute optimal transmitting power for each D2D relay so that it can provide the highest secrecy capacity for its data receiver. In this work, we focus on the data receivers at the edge of each D2D communication area because they receive the lowest signal-to-noise-and-interference-ratio (SINR) compared with other data receivers in the same communication area. Moreover, fairness is taken into consideration that all studied data receivers are equally protected from eavesdroppers. The simulation results demonstrate that in our proposed scheme, all D2D data receivers can achieve a high secure secrecy capacity.
机译:设备到设备(D2D)通信是改善下一代移动网络的一项有前途的技术。在本文中,我们提出了一种D2D辅助的物理层安全性方案,以保护D2D用户免受窃听。在提出的方案中,每个D2D传输链路将受到其他D2D中继用户的保护。中继用户将管理干扰以抑制窃听者,从而使窃听者无法正确解码消息,同时又无法保证合法用户的成功传输。我们建议为每个D2D中继计算最佳发射功率,以便它可以为其数据接收器提供最高的保密容量。在这项工作中,我们专注于每个D2D通信区域边缘的数据接收器,因为与相同通信区域中的其他数据接收器相比,它们接收到的信噪比(SINR)最低。此外,考虑到公平性,所有研究的数据接收器均受到了窃听者的同等保护。仿真结果表明,在我们提出的方案中,所有D2D数据接收器都可以实现较高的安全保密能力。

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