English

Delay-Optimal Power and Precoder Adaptation for Multi-stream MIMO Systems

Information Theory 2009-06-02 v1 math.IT

Abstract

In this paper, we consider delay-optimal MIMO precoder and power allocation design for a MIMO Link in wireless fading channels. There are LL data streams spatially multiplexed onto the MIMO link with heterogeneous packet arrivals and delay requirements. The transmitter is assumed to have knowledge of the channel state information (CSI) as well as the joint queue state information (QSI) of the LL buffers. Using LL-dimensional Markov Decision Process (MDP), we obtain optimal precoding and power allocation policies for general delay regime, which consists of an online solution and an offline solution. The online solution has negligible complexity but the offline solution has worst case complexity O((N+1)L){\cal O}((N+1)^L) where NN is the buffer size. Using {\em static sorting} of the LL eigenchannels, we decompose the MDP into LL independent 1-dimensional subproblems and obtained low complexity offline solution with linear complexity order O(NL){\cal O}(NL) and close-to-optimal performance.

Keywords

Cite

@article{arxiv.0906.0298,
  title  = {Delay-Optimal Power and Precoder Adaptation for Multi-stream MIMO Systems},
  author = {Vincent K. N. Lau and Yan Chen},
  journal= {arXiv preprint arXiv:0906.0298},
  year   = {2009}
}
R2 v1 2026-06-21T13:08:22.430Z