English

Upper Bounds on the Capacity of Binary Channels with Causal Adversaries

Information Theory 2016-11-17 v3 Cryptography and Security math.IT

Abstract

In this work we consider the communication of information in the presence of a causal adversarial jammer. In the setting under study, a sender wishes to communicate a message to a receiver by transmitting a codeword (x1,...,xn)(x_1,...,x_n) bit-by-bit over a communication channel. The sender and the receiver do not share common randomness. The adversarial jammer can view the transmitted bits xix_i one at a time, and can change up to a pp-fraction of them. However, the decisions of the jammer must be made in a causal manner. Namely, for each bit xix_i the jammer's decision on whether to corrupt it or not must depend only on xjx_j for jij \leq i. This is in contrast to the "classical" adversarial jamming situations in which the jammer has no knowledge of (x1,...,xn)(x_1,...,x_n), or knows (x1,...,xn)(x_1,...,x_n) completely. In this work, we present upper bounds (that hold under both the average and maximal probability of error criteria) on the capacity which hold for both deterministic and stochastic encoding schemes.

Keywords

Cite

@article{arxiv.1204.2587,
  title  = {Upper Bounds on the Capacity of Binary Channels with Causal Adversaries},
  author = {Bikash Kumar Dey and Sidharth Jaggi and Michael Langberg and Anand D. Sarwate},
  journal= {arXiv preprint arXiv:1204.2587},
  year   = {2016}
}

Comments

To appear in the IEEE Transactions on Information Theory; shortened version appeared at ISIT 2012