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Worst case SINR guarantees for secrecy using relay beamforming with imperfect CSI

机译:最坏的情况下,SINR使用具有不完善CSI的中继波束成形来确保保密性

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In this paper, we study beamforming techniques for secrecy with worst case signal-to-interference-plus-noise ratio (SINR) guarantees in cooperative communications with imperfect channel state information (CSI). The worst case SINRs are the minimum SINR at the intended destination and the maximum SINR at the eavesdroppers. We consider a norm bounded CSI error model. With the available imperfect channel estimates, we design beamformers such that the minimum SINR receivable by the intended destination is above a certain threshold, while the maximum value of SINRs receivable at the eavesdroppers are below another lower threshold. We consider amplify-and-forward (AF) and decode-and-forward (DF) relaying schemes. The relays do the worst case transmit beamforming and injection of artificial noise (AN). We jointly optimize the beamformers and the AN for the AF and DF schemes subject to the worst case SINR constraints at the destination and the eavesdroppers. We solve the corresponding optimization problems as semi-definite programming (SDP) problems by rank relaxation and S-procedure. Numerical results show that AN injection at the relays significantly reduces the average total transmit power required to meet the worst case SINR constraints, and improves the solution feasibility of the optimization problems.
机译:在本文中,我们研究了具有最坏情况信噪比的保密的波束成形技术(SINR),其与不完美信道状态信息(CSI)的协作通信中的保证。最糟糕的SINR是预期目的地的最低SINR,窃听者的最大SINR。我们考虑一个常态的CSI错误模型。利用可用的不完美信道估计,我们设计波束形成器,使得预期目的地应收的最小SINR高于一定阈值,而在窃听者处应收的SINR的最大值低于另一个下阈值。我们考虑放大和向前(AF)和解码和前进(DF)中继方案。继电器做最坏的情况,发射波束形成和注射人工噪声(AN)。我们共同优化了波束形成器和AF的AF和DF方案,这是目的地和窃听者的最坏情况SINR约束。我们通过等级放松和S-Program来解决相应的优化问题作为半定编程(SDP)问题。数值结果表明,继电器的注射显着降低了满足最坏情况SINR限制所需的平均传输功率,并提高了优化问题的解决方案可行性。

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