English

Covert Communication in the Presence of an Uninformed Jammer

Information Theory 2017-06-27 v3 math.IT

Abstract

Recent work has established that when transmitter Alice wishes to communicate reliably to recipient Bob without detection by warden Willie, with additive white Gaussian noise (AWGN) channels between all parties, communication is limited to O(n)\mathcal{O}(\sqrt{n}) bits in nn channel uses. However, this assumes Willie has an accurate statistical characterization of the channel. When Willie has uncertainty about such and his receiver is limited to a threshold test on the received power, Alice can transmit covertly with a power that does not decrease with nn, thus conveying O(n)\mathcal{O}(n) bits covertly and reliably in nn uses of an AWGN channel. Here, we consider covert communication of O(n)\mathcal{O}(n) bits in nn channel uses while generalizing the environment and removing any restrictions on Willie's receiver. We assume an uninformed "jammer" is present to help Alice, and we consider AWGN and block fading channels. In some scenarios, Willie's optimal detector is a threshold test on the received power. When the channel between the jammer and Willie has multiple fading blocks per codeword, a threshold test on the received power is not optimal. However, we establish that Alice can remain covert with a transmit power that does not decrease with nn even when Willie employs an optimal detector.

Keywords

Cite

@article{arxiv.1608.00698,
  title  = {Covert Communication in the Presence of an Uninformed Jammer},
  author = {Tamara V. Sobers and Boulat A. Bash and Saikat Guha and Don Towsley and Dennis Goeckel},
  journal= {arXiv preprint arXiv:1608.00698},
  year   = {2017}
}

Comments

14 pages, 4 figures