Quadratically Constrained Myopic Adversarial Channels

01/18/2018
by   Yihan Zhang, et al.
0

We study communication in the presence of a jamming adversary where quadratic power constraints are imposed on the transmitter and the jammer. The jamming signal is assumed to be a function of the codebook, and a noncausal but noisy observation of the transmitted codeword. For a certain range of the noise-to-signal ratios (NSRs) of the transmitter and the jammer, we are able to characterize the capacity of this channel under deterministic encoding. For the remaining NSR regimes, we determine the capacity under the assumption of a small amount of common randomness (at most O((n)) bits in one sub-regime, and at most O(n^2) bits in the other sub-regime) available to the encoder-decoder pair. Our proof techniques involve a novel myopic list-decoding result for achievability and a Plotkin-type push attack for the converse in a subregion of the NSRs, which may be of independent interest.

READ FULL TEXT

page 3

page 4

page 5

page 6

page 7

page 8

page 28

research
05/13/2022

The Capacity of Causal Adversarial Channels

We characterize the capacity for the discrete-time arbitrarily varying c...
research
04/04/2018

The Capacity of Anonymous Communications

We consider the communication scenario where K transmitters are each con...
research
01/08/2020

Quadratically Constrained Two-way Adversarial Channels

We study achievable rates of reliable communication in a power-constrain...
research
04/15/2021

Stochastic-Adversarial Channels : Online Adversaries With Feedback Snooping

The growing need for reliable communication over untrusted networks has ...
research
10/18/2018

Ratio List Decoding

We extend the notion of list decoding to ratio list decoding which invo...
research
01/29/2021

Zero-Error Communication over Adversarial MACs

We consider zero-error communication over a two-transmitter deterministi...
research
09/08/2020

Tight List-Sizes for Oblivious AVCs under Constraints

We study list-decoding over adversarial channels governed by oblivious a...

Please sign up or login with your details

Forgot password? Click here to reset