English

Channel Capacity for Adversaries with Computationally Bounded Observations

Information Theory 2023-11-07 v3 math.IT

Abstract

We study reliable communication over point-to-point adversarial channels in which the adversary can observe the transmitted codeword via some function that takes the nn-bit codeword as input and computes an rnrn-bit output for some given r[0,1]r \in [0,1]. We consider the scenario where the rnrn-bit observation is computationally bounded -- the adversary is free to choose an arbitrary observation function as long as the function can be computed using a polynomial amount of computational resources. This observation-based restriction differs from conventional channel-based computational limitations, where in the later case, the resource limitation applies to the computation of the (adversarial) channel error. For all r[0,1H(p)]r \in [0,1-H(p)] where H()H(\cdot) is the binary entropy function and pp is the adversary's error budget, we characterize the capacity of the above channel. For this range of rr, we find that the capacity is identical to the completely obvious setting (r=0r=0). This result can be viewed as a generalization of known results on myopic adversaries and channels with active eavesdroppers for which the observation process depends on a fixed distribution and fixed-linear structure, respectively, that cannot be chosen arbitrarily by the adversary.

Keywords

Cite

@article{arxiv.2202.02905,
  title  = {Channel Capacity for Adversaries with Computationally Bounded Observations},
  author = {Eric Ruzomberka and Chih-Chun Wang and David J. Love},
  journal= {arXiv preprint arXiv:2202.02905},
  year   = {2023}
}
R2 v1 2026-06-24T09:23:03.029Z