English

Joint Transmission with Limited Backhaul Connectivity

Information Theory 2017-05-16 v1 math.IT

Abstract

Downlink beamforming techniques with low signaling overhead are proposed for joint processing coordinated (JP) multi-point transmission. The objective is to maximize the weighted sum rate within joint transmission clusters. As the considered weighted sum rate maximization is a non-convex problem, successive convex approximation techniques, based on weighted mean-squared error minimization, are applied to devise algorithms with tractable computational complexity. Decentralized algorithms are proposed to enable JP even with limited backhaul connectivity. These algorithms rely provide a variety of alternatives for signaling overhead, computational complexity and convergence behavior. Time division duplexing is exploited to design transceiver training techniques for two scenarios: stream specific estimation and direct estimation. In the stream specific estimation, the base station and user equipment estimate all of the stream specific precoded pilots individually and construct the transmit/receive covariance matrices based on these pilot estimates. With the direct estimation, only the intended transmission is separately estimated and the covariance matrices constructed directly from the aggregate system-wide pilots. The impact of feedback/backhaul signaling quantization is considered, in order to further reduce the signaling overhead. Also, user admission is being considered for time-correlated channels. The enhanced transceiver convergence rate enables periodic beamformer reinitialization, which greatly improves the achieved system performance in dense networks.

Keywords

Cite

@article{arxiv.1705.05252,
  title  = {Joint Transmission with Limited Backhaul Connectivity},
  author = {Jarkko Kaleva and Antti Tölli and Markku Juntti and Randall Berry and Michael Honig},
  journal= {arXiv preprint arXiv:1705.05252},
  year   = {2017}
}
R2 v1 2026-06-22T19:47:18.926Z