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On the Capacity Achieving Input of Amplitude Constrained Vector Gaussian Wiretap Channel

Information Theory 2022-02-02 v1 math.IT

Abstract

This paper studies secrecy-capacity of an nn-dimensional Gaussian wiretap channel under the peak-power constraint. This work determines the largest peak-power constraint Rˉn\bar{\mathsf{R}}_n such that an input distribution uniformly distributed on a single sphere is optimal; this regime is termed the small-amplitude regime. The asymptotic of Rˉn\bar{\mathsf{R}}_n as nn goes to infinity is completely characterized as a function of noise variance at both receivers. Moreover, the secrecy-capacity is also characterized in a form amenable for computation. Furthermore, several numerical examples are provided, such as the example of the secrecy-capacity achieving distribution outside of the small amplitude regime.

Keywords

Cite

@article{arxiv.2202.00586,
  title  = {On the Capacity Achieving Input of Amplitude Constrained Vector Gaussian Wiretap Channel},
  author = {Antonino Favano and Luca Barletta and Alex Dytso},
  journal= {arXiv preprint arXiv:2202.00586},
  year   = {2022}
}

Comments

Extended version of a manuscript submitted to IEEE ISIT 2022