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QoS-Based Transmit Beamforming in the Presence of Eavesdroppers: An Optimized Artificial-Noise-Aided Approach

机译:窃听者存在下基于QoS的发射波束成形:一种优化的人工噪声辅助方法

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摘要

Secure transmission techniques have been receiving growing attention in recent years, as a viable, powerful alternative to blocking eavesdropping attempts in an open wireless medium. This paper proposes a secret transmit beamforming approach using a quality-of-service (QoS)-based perspective. Specifically, we establish design formulations that: i) constrain the maximum allowable signal-to-interference-and-noise ratios (SINRs) of the eavesdroppers, and that ii) provide the intended receiver with a satisfactory SINR through either a guaranteed SINR constraint or SINR maximization. The proposed designs incorporate a relatively new idea called artificial noise (AN), where a suitable amount of AN is added in the transmitted signal to confuse the eavesdroppers. Our designs advocate joint optimization of the transmit weights and AN spatial distribution in accordance with the channel state information (CSI) of the intended receiver and eavesdroppers. Our formulated design problems are shown to be NP-hard in general. We deal with this difficulty by using semidefinite relaxation (SDR), an approximation technique based on convex optimization. Interestingly, we prove that SDR can exactly solve the design problems for a practically representative class of problem instances; e.g., when the intended receiver's instantaneous CSI is known. Extensions to the colluding-eavesdropper scenario and the multi-intended-receiver scenario are also examined. Extensive simulation results illustrate that the proposed AN-aided designs can yield significant power savings or SINR enhancement compared to some other methods.
机译:近年来,安全传输技术已成为越来越多的关注,它是阻止开放无线媒体中窃听尝试的可行,强大的替代方案。本文提出了一种基于服务质量(QoS)的观点的秘密发射波束成形方法。具体而言,我们建立以下设计公式:i)限制窃听者的最大允许信噪比(SINR),并且ii)通过有保证的SINR约束或为目标接收器提供满意的SINR SINR最大化。提出的设计结合了一个相对较新的概念,称为人工噪声(AN),其中在传输的信号中添加了适量的AN,以使窃听者感到困惑。我们的设计主张根据目标接收器和窃听者的信道状态信息(CSI),对发射权重和AN空间分布进行联合优化。我们提出的设计问题通常显示为NP难的。我们通过使用半定松弛(SDR)(基于凸优化的近似技术)来解决此难题。有趣的是,我们证明了SDR可以完全解决一类具有实际代表性的问题实例的设计问题。例如,当已知接收方的瞬时CSI时。还检查了共谋窃听者方案和多目标接收者方案的扩展。大量的仿真结果表明,与其他一些方法相比,所提出的AN辅助设计可以节省大量功率或提高SINR。

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