In this paper, we consider a common unicast beamforming network where Alice utilizes the communication to Carol as a cover and covertly transmits a message to Bob without being recognized by Willie. We investigate the beamformer design of Alice to maximize the covert rate to Bob when Alice has either perfect or imperfect knowledge about Willie's channel state information (WCSI). For the perfect WCSI case, the problem is formulated under the perfect covert constraint, and we develop a covert beamformer by applying semidefinite relaxation and the bisection method. Then, to reduce the computational complexity, we further propose a zero-forcing beamformer design with a single iteration processing. For the case of the imperfect WCSI, the robust beamformer is developed based on a relaxation and restriction approach by utilizing the property of Kullback-Leibler divergence. Furthermore, we derive the optimal decision threshold of Willie, and analyze the false alarm and the missed detection probabilities in this case. Finally, the performance of the proposed beamformer designs is evaluated through numerical experiments.
翻译:在本文中,我们考虑一个普通的单向光束成型网络,爱丽丝将给卡罗尔的通信用作掩护,秘密地向鲍勃传递信息,但威利不会认出。我们调查爱丽丝的光束设计,以便在爱丽丝对威利频道国家信息有完美或不完善的了解时,最大限度地向鲍勃提供隐蔽率。对于完美的WCSI,问题是在完美的隐蔽限制下形成的,我们通过应用半无限制的放松和两节法来开发隐蔽的光束。然后,为了减少计算的复杂性,我们进一步建议采用单一的循环处理方法,进行零推进波形设计。对于不完善的WCSI,强势光束是通过利用Kullback-Lebellr差异的特性来开发的放松和限制方法开发的。此外,我们从威利的优化决策门槛出发,分析本案中错误的警报和误差的探测概率。最后,通过数字实验来评估拟议的光谱设计的执行情况。