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Maximizing Miss Detection for Covert Communication Under Practical Constraints

机译:在实际约束下最大化秘密通信的未命中检测

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The goal of covert communication is to establish a communication link between two parties, Alice and Bob, while assuring that a third party, the warden Willie, will not be able to detect the very presence of communication. If the means available to Willie in order to detect transmissions are not limited, requiring Willie's false alarm (FA) plus miss detection (MD) probabilities to be arbitrarily close to 1, results in covert communication with asymptotically negligible rate between Alice and Bob. However, in practice, Alice will require some minimal transmission rate $mathrm {R}_{min }$ to Bob, below which she would prefer not to transmit at all. Willie, on the other hand, might use a practical detector, and fix some false alarm probability. In this paper, we discuss the optimal power allocation by the transmitter Alice, which will result in maximal miss detection probability by Willie, while assuring some minimal channel capacity requirement between Alice and Bob. In particular, assuming that Willie utilizes a filter-bank of energy detectors, we derive the optimal power allocation to maximize Willie's miss detection probability (for low to moderate SNR) and show that it results in constant SNR values along the transmission bandwidth.
机译:秘密通信的目标是在爱丽丝和鲍勃两方之间建立通信链接,同时确保第三方,即监护人威利(Willie)无法检测到通信的存在。如果威利用于检测传输的方法不受限制,则要求威利的错误警报(FA)加上未命中检测(MD)的概率任意接近1,将导致秘密通信,而爱丽丝和鲍勃之间的隐性通信速率可以忽略不计。但是,实际上,爱丽丝要求向鲍勃发送一些最小传输速率$ \ mathrm {R} _ {\ min} $,低于此速率她根本不希望传输。另一方面,威利可能会使用实用的检测器,并修复一些误报概率。在本文中,我们讨论了由发射机Alice进行的最佳功率分配,这将导致Willie获得最大的未命中检测概率,同时确保Alice和Bob之间的一些最小信道容量需求。特别是,假设威利利用能量检测器的滤波器组,我们得出最佳功率分配,以最大化威利的未命中检测概率(对于低到中等的SNR),并表明它导致沿传输带宽的SNR值恒定。

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