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Robust secure transmission for wireless relay networks with direct links and bounded channel uncertainties

机译:具有直接链接和受限信道不确定性的无线中继网络的鲁棒安全传输

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This paper investigates the problem of joint design of cooperative beamforming and artificial noise to achieve robust secure transmission in an amplify and forward (AF) relay network in the presence of multiple eavesdroppers. Specifically, the joint design is targeting to minimize the total relay transmission power while guaranteeing the quality of service at the legitimate receiver and preventing the eavesdroppers from interception. Different from prior designs, direct links between the source and the legitimate receiver/eavesdroppers are considered and no perfect channel state information is assumed. Considering bounded channel uncertainties in all links, the worst cases of the total relay transmission power, quality of service (i.e., the received signal-to-noise ratio) and security are first identified. Then an iterative algorithm is proposed to jointly design the relay beamforming and artificial noises for robust secure transmission. It is demonstrated by computer simulations that the proposed robust secure design is effective and practical when compared with the prior designs.
机译:本文研究了在存在多个窃听者的情况下,协同波束成形和人工噪声联合设计的问题,以在放大转发(AF)中继网络中实现鲁棒的安全传输。具体来说,联合设计的目标是在确保合法接收方的服务质量并防止窃听者被截获的同时,将总中继传输功率降至最低。与先前的设计不同,考虑了源与合法的接收器/窃听者之间的直接链接,并且没有假定完美的信道状态信息。考虑到所有链路中的有限信道不确定性,首先确定总中继传输功率,服务质量(即接收的信噪比)和安全性的最坏情况。然后,提出了一种迭代算法来联合设计中继波束成形和人工噪声,以实现鲁棒的安全传输。通过计算机仿真证明,与现有设计相比,所提出的鲁棒安全设计是有效和实用的。

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