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Covert Wireless Communication with Artificial Noise Generation

20 September 2017
Ramin Soltani
Dennis Goeckel
Don Towsley
Boulat A. Bash
Saikat Guha
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Abstract

Covert communication conceals the transmission of the message from an attentive adversary. Recent work on the limits of covert communication in additive white Gaussian noise (AWGN) channels has demonstrated that a covert transmitter (Alice) can reliably transmit a maximum of O(n)\mathcal{O}\left(\sqrt{n}\right)O(n​) bits to a covert receiver (Bob) without being detected by an adversary (Warden Willie) in nnn channel uses. This paper focuses on the scenario where other friendly nodes distributed according to a two-dimensional Poisson point process with density mmm are present in the environment. We propose a strategy where the friendly node closest to the adversary, without close coordination with Alice, produces artificial noise. We show that this method allows Alice to reliably and covertly send O(min⁡{n,mγ/2n})\mathcal{O}(\min\{{n,m^{\gamma/2}\sqrt{n}}\})O(min{n,mγ/2n​}) bits to Bob in nnn channel uses, where γ\gammaγ is the path-loss exponent. Moreover, we also consider a setting where there are NwN_{\mathrm{w}}Nw​ collaborating adversaries uniformly and randomly located in the environment and show that in nnn channel uses, Alice can reliably and covertly send O(min⁡{n,mγ/2nNwγ})\mathcal{O}\left(\min\left\{n,\frac{m^{\gamma/2} \sqrt{n}}{N_{\mathrm{w}}^{\gamma}}\right\}\right)O(min{n,Nwγ​mγ/2n​​}) bits to Bob when γ>2\gamma >2γ>2, and O(min⁡{n,mnNw2log⁡2Nw})\mathcal{O}\left(\min\left\{n,\frac{m \sqrt{n}}{N_{\mathrm{w}}^{2}\log^2 {N_{\mathrm{w}}}}\right\}\right)O(min{n,Nw2​log2Nw​mn​​}) when γ=2\gamma = 2γ=2. Conversely, we demonstrate that no higher covert throughput is possible for γ>2\gamma>2γ>2.

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