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Interference Exploitation Based Secure Transmission for Distributed Antenna Systems

机译:基于干扰开发的分布式天线系统安全传输

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Distributed antenna (DA) is considered as a strong alternative to conventional centralized multiple-input multiple-output (MIMO), to provide a greener and user-centric network structure. However, physical layer (PHY) security becomes more challenging in DA systems because of the proximity to the transmitters. In this paper, we jointly optimize DA activation/deactivation and secure precoding to minimize the total power consumption, subjected to legitimate user's (LU) quality-of-service (QoS) and PHY security constraints against potential eavesdroppers (Eves). A practical scenario is considered, where channel state information (CSI) of all the nodes can only be imperfectly obtained. In the presence of infinite probabilities of CSI uncertainties, a deterministic robust based algorithm is designed to always satisfy LU's QoS requirement and address PHY security constraints against Eves. Moreover, essentially different from existing artificial noise (AN)-aided secure transmission schemes, where AN' leakage effect at LU needs to be suppressed, we utilize AN as a beneficial element at LU end while keeping it destructive at potential Eves. Simulation results verify that, the proposed algorithm incurs much lower power consumption compared to its benchmarks, thanks to the additional degrees of freedom of antenna selection and utilizing constructive AN. Last but not least, by adaptively facilitating DA activation/deactivation, the proposed algorithm addresses a user-centric network structure, which is more flexible over the conventional centralized MIMO systems.
机译:分布式天线(DA)被认为是传统集中式多输入多输出(MIMO)的强大替代品,以提供更绿色和以用户为中心的网络结构。但是,由于与发射机的距离很近,因此物理物理(PHY)安全在DA系统中变得更具挑战性。在本文中,我们共同优化了DA激活/停用和安全预编码,以最大程度地降低总功耗,同时还要遵守合法用户(LU)的服务质量(QoS)和PHY对潜在窃听者(Eves)的安全限制。考虑一种实际情况,其中只能不完美地获得所有节点的信道状态信息(CSI)。在存在CSI不确定性的无限可能性的情况下,基于确定性鲁棒性的算法被设计为始终满足LU的QoS要求并解决针对Eves的PHY安全约束。此外,与现有的人工噪声(AN)辅助的安全传输方案本质上不同,在后者中,需要抑制LU的AN'泄漏效应,我们利用AN作为LU端的有益元素,同时保持对潜在Eves的破坏性。仿真结果证明,与天线基准相比,该算法的功耗要低得多,这要归功于天线选择和利用构造性AN的额外自由度。最后但并非最不重要的一点是,通过自适应地促进DA激活/去激活,所提出的算法解决了以用户为中心的网络结构,该结构比传统的集中式MIMO系统更加灵活。

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