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Optimal Power Allocation for Artificial Noise Under Imperfect CSI Against Spatially Random Eavesdroppers

机译:非理想CSI下针对空间随机窃听者的人工噪声的最优功率分配

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摘要

In this paper, we study the secure multiantenna transmission with artificial noise (AN) under imperfect channel state information (CSI) in the presence of spatially randomly distributed eavesdroppers. We derive the optimal solutions of the power allocation between the information signal and the AN for minimizing the secrecy outage probability (SOP) under a target secrecy rate and for maximizing the secrecy rate under an SOP constraint, respectively. Moreover, we provide an interesting insight that channel estimation error affects the optimal power allocation strategy in opposite ways for the two given objectives. When the estimation error increases, more power should be allocated to the information signal if we aim to decrease the rate-constrained SOP, whereas more power should be allocated to the AN if we aim to increase the SOP-constrained secrecy rate.
机译:在本文中,我们研究了在空间随机分布的窃听者存在的情况下,在不完善的信道状态信息(CSI)下使用人工噪声(AN)进行的安全多天线传输。我们分别得出了信息信号和AN之间功率分配的最佳解决方案,分别用于在目标保密率下最小化保密中断概率(SOP)和在SOP约束下最大化保密率。此外,我们提供了一个有趣的见解,即信道估计误差会以相反的方式影响两个给定目标的最佳功率分配策略。当估计误差增加时,如果我们旨在降低速率受限的SOP,则应将更多功率分配给信息信号,而如果我们旨在提高SOP受约束的保密速率,则应将更多功率分配给AN。

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