English

Optimality of Simple Layered Superposition Coding in the 3 User MISO BC with Finite Precision CSIT

Information Theory 2018-05-16 v2 math.IT

Abstract

We study the K=3K=3 user multiple input single output (MISO) broadcast channel (BC) with M=3M=3 antennas at the transmitter and 11 antenna at each receiver, from the generalized degrees of freedom (GDoF) perspective, under the assumption that the channel state information at the transmitter (CSIT) is limited to finite precision. In particular, our goal is to identify a parameter regime where a simple layered superposition (SLS) coding scheme achieves the entire GDoF region. With αij\alpha_{ij} representing the channel strength parameter for the link from the jthj^{th} antenna of the transmitter to the ithi^{th} receiver, we prove that SLS is GDoF optimal without the need for time-sharing if max(αki,αim)αii\max(\alpha_{ki},\alpha_{im})\leq\alpha_{ii} and αki+αimαii+αkm\alpha_{ki}+\alpha_{im}\le\alpha_{ii}+\alpha_{km} for all i,k[3],m[M]i,k\in[3],m\in[M]. The GDoF region under this condition is a convex polyhedron. The result generalizes to arbitrary M3M\geq 3.

Keywords

Cite

@article{arxiv.1801.07419,
  title  = {Optimality of Simple Layered Superposition Coding in the 3 User MISO BC with Finite Precision CSIT},
  author = {Arash Gholami Davoodi and Syed Ali Jafar},
  journal= {arXiv preprint arXiv:1801.07419},
  year   = {2018}
}

Comments

51 pages, 6 figures, generalizations to K users have been added, submitted to the IT Transactions