English

Universal Polar Codes for More Capable and Less Noisy Channels and Sources

Information Theory 2016-01-22 v3 math.IT

Abstract

We prove two results on the universality of polar codes for source coding and channel communication. First, we show that for any polar code built for a source PX,ZP_{X,Z} there exists a slightly modified polar code - having the same rate, the same encoding and decoding complexity and the same error rate - that is universal for every source PX,YP_{X,Y} when using successive cancellation decoding, at least when the channel PYXP_{Y|X} is more capable than PZXP_{Z|X} and PXP_X is such that it maximizes I(X;Y)I(X;Z)I(X;Y) - I(X;Z) for the given channels PYXP_{Y|X} and PZXP_{Z|X}. This result extends to channel coding for discrete memoryless channels. Second, we prove that polar codes using successive cancellation decoding are universal for less noisy discrete memoryless channels.

Keywords

Cite

@article{arxiv.1312.5990,
  title  = {Universal Polar Codes for More Capable and Less Noisy Channels and Sources},
  author = {David Sutter and Joseph M. Renes},
  journal= {arXiv preprint arXiv:1312.5990},
  year   = {2016}
}

Comments

10 pages, 3 figures