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Secure communications with untrusted relays: a multi-pair two-way relaying approach

机译:与不受信任的中继的安全通信:多对双向中继方法

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Physical-layer security is usually ensured by the injection of artificial noise (AN) at the legitimate source or destination when relays are cooperative but untrusted. In this work, in order to avoid the power-consuming AN at the legitimate user pairs, the authors investigate multi-pair two-way relaying as a solution for secure transmission in wireless relay networks with untrusted relays. They formulate a generalised problem for the joint design of cooperative beamforming (CB) and AN at relays to maximise the secrecy sum-rate in wireless networks with multi-pair legal users, multiple untrusted relays as well as multiple non-colluding eavesdroppers. Further, they reformulate, approximate and relax the original non-convex problem into a sequence of convex sub-problems based on semi-definite relaxation (SDR) and Taylor series approximation. Particularly, for the reformulated problem they prove that the SDR is in fact tight, and hence propose an iterative algorithm for CB and AN design at the relays. In the simulations, they demonstrate the fast convergence and high achievable secrecy sum-rate of the proposed algorithm. Also, they simulate and discuss the impact of the number of user pairs on the secrecy sum-rate, and reveal the change of performance gain with the number of multiple user pairs.
机译:当中继器协作但不受信任时,通常通过在合法的源或目的地注入人工噪声(AN)来确保物理层的安全性。在这项工作中,为了避免在合法用户对上消耗大量的AN,作者研究了多对双向中继作为一种解决方案,以在具有不可信中继的无线中继网络中进行安全传输。他们为中继处的协作波束形成(CB)和AN的联合设计提出了一个广义问题,以在具有多对合法用户,多个不受信任的中继以及多个无冲突的窃听者的无线网络中最大化保密总和。此外,他们基于半定松弛(SDR)和泰勒级数逼近,将原始非凸问题重新构成,近似并松弛为一系列凸子问题。特别是,对于重新设计的问题,他们证明了SDR实际上是紧密的,因此提出了一种用于中继器CB和AN设计的迭代算法。在仿真中,他们证明了该算法的快速收敛性和高可实现的秘密求和率。此外,他们模拟并讨论了用户对数量对保密总和率的影响,并揭示了性能增益随多个用户对数量的变化。

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