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An Artificial Noise Scheme for Secure Communication in Heterogeneous D2D and Cellular Networks

机译:一种用于异构D2D和蜂窝网络中安全通信的人工噪声方案

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In this paper, we investigate the physical layer security scheme in heterogeneous Device-to-Device (D2D) and cellular networks. More specifically, we aim to optimize the secrecy capacity of D2D users in a single cell where the D2D users share downlink resource with cellular users. We assume that base station is equipped with multiple antennas while other nodes are equipped with single antenna, and the eavesdropper is intending to wiretap the information of D2D user. Base station transmits artificial noise as the jamming-aided signal to degrade the wiretap channel such that the security capacity of D2D user could be improved. First, we design the precoding matrix of artificial noise to make sure that the wiretap channel would be degraded while D2D link and cellular link are not influenced. Second, the precoding matrix of desired information signal of cellular link is designed in order to satisfy the quality demand of cellular link. In this part, we propose three schemes according to different criteria. Finally, the optimal power allocation algorithm is provided. Simulation results demonstrate that our scheme could efficiently improve the secrecy capacity of D2D user while the quality demand of cellular user is satisfied.
机译:在本文中,我们研究异构设备到设备(D2D)和蜂窝网络中的物理层安全方案。更具体地,我们的目标是在D2D用户与蜂窝用户共享下行链路资源的单个单元中优化D2D用户的保密容量。我们假设基站配备有多个天线,而其他节点配备有单个天线,并且窃听器打算窃听D2D用户的信息。基站将人工噪声作为干扰辅助信号透射以降低丝网通道,使得可以提高D2D用户的安全容量。首先,我们设计人造噪声的预编码矩阵,以确保丝网通道不会影响D2D链路和蜂窝链路的影响。其次,设计了蜂窝链路期望信息信号的预编码矩阵,以满足蜂窝链路的质量需求。在这一部分中,我们提出了根据不同标准的三个方案。最后,提供了最佳功率分配算法。仿真结果表明,我们的方案可以有效地提高D2D用户的保密能力,而蜂窝用户的质量需求则满足。

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