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Secure Beamforming Design in Relay-Assisted Internet of Things

机译:中继辅助物联网中的安全波束成形设计

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摘要

A secure downlink transmission system which is exposed to multiple eavesdroppers and is appropriate for Internet of Things (IoT) applications is considered. A worst case scenario is assumed, in the sense that, in order to enhance their interception ability all eavesdroppers are located close to each other, near the controller and collude to form joint receive beam-forming. For such a system, a novel cooperative nonorthogonal multiple access (NOMA) secure transmission scheme for which an IoT device with a stronger channel condition acts as an energy harvesting relay in order to assist a second IoT device operating under weaker channel conditions, is proposed and its performance is analyzed and evaluated. A secrecy sum rate (SSR) maximization problem is formulated and solved under three constraints: 1) transmit power; 2) successive interference cancellation; and 3) quality of service. By considering both passive and active eavesdroppers scenarios, two optimization schemes are proposed to improve the overall system SSR. On the one hand, for the passive eavesdropper scenario, an artificial noise-aided secure beamforming scheme is proposed. Since this optimization problem is nonconvex, instead of using traditional but highly complex, brute-force 2-D search, it is conveniently transformed into a convex one by using an epigraph reformulation. On the other hand, for the active multiantennas eavesdroppers' scenario, the orthogonal-projection-based beamforming scheme is considered, and by employing the successive convex approximation method, a suboptimal solution is proposed. Furthermore, since for single antenna transmission the orthogonal-projection-based scheme may not be applicable a simple power control scheme is proposed. Various performance evaluation results obtained by means of computer simulations have verified that the proposed schemes outperform other benchmark schemes in terms of SSR performance.
机译:考虑了暴露于多个窃听者并且适用于物联网(IoT)应用程序的安全下行链路传输系统。在某种意义上,假定了最坏的情况,即为了增强它们的拦截能力,所有窃听者都彼此靠近,靠近控制器放置并合在一起形成联合接收波束成形。对于这样的系统,提出了一种新颖的协作非正交多路访问(NOMA)安全传输方案,该方案将具有较强信道条件的IoT设备用作能量收集中继器,以协助第二个IoT设备在较弱信道条件下运行。分析和评估其性能。在三个约束条件下提出并解决了保密和速率(SSR)最大化问题:1)发射功率; 2)连续干扰消除;和3)服务质量。通过考虑被动和主动窃听场景,提出了两种优化方案来改善整个系统的SSR。一方面,针对无源窃听场景,提出了一种人工噪声辅助的安全波束形成方案。由于此优化问题是非凸的,因此无需使用传统但高度复杂的蛮力二维搜索,而可以通过使用题词表述将其方便地转换为凸问题。另一方面,针对有源多天线窃听者的场景,考虑了基于正交投影的波束形成方案,并通过采用逐次凸逼近法,提出了次优解。此外,由于对于单天线传输,基于正交投影的方案可能不适用,因此提出了一种简单的功率控制方案。通过计算机仿真获得的各种性能评估结果已证明,在SSR性能方面,所提出的方案优于其他基准方案。

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