English

Linear Precoders for Non-Regenerative Asymmetric Two-way Relaying in Cellular Systems

Information Theory 2013-07-16 v1 math.IT

Abstract

Two-way relaying (TWR) reduces the spectral-efficiency loss caused in conventional half-duplex relaying. TWR is possible when two nodes exchange data simultaneously through a relay. In cellular systems, data exchange between base station (BS) and users is usually not simultaneous e.g., a user (TUE) has uplink data to transmit during multiple access (MAC) phase, but does not have downlink data to receive during broadcast (BC) phase. This non-simultaneous data exchange will reduce TWR to spectrally-inefficient conventional half-duplex relaying. With infrastructure relays, where multiple users communicate through a relay, a new transmission protocol is proposed to recover the spectral loss. The BC phase following the MAC phase of TUE is now used by the relay to transmit downlink data to another user (RUE). RUE will not be able to cancel the back-propagating interference. A structured precoder is designed at the multi-antenna relay to cancel this interference. With multiple-input multiple-output (MIMO) nodes, the proposed precoder also triangulates the compound MAC and BC phase MIMO channels. The channel triangulation reduces the weighted sum-rate optimization to power allocation problem, which is then cast as a geometric program. Simulation results illustrate the effectiveness of the proposed protocol over conventional solutions.

Keywords

Cite

@article{arxiv.1307.3608,
  title  = {Linear Precoders for Non-Regenerative Asymmetric Two-way Relaying in Cellular Systems},
  author = {Rohit Budhiraja and Karthik KS and Bhaskar Ramamurthi},
  journal= {arXiv preprint arXiv:1307.3608},
  year   = {2013}
}

Comments

30 pages, 7 figures, submitted to IEEE Transactions on Wireless Communications

R2 v1 2026-06-22T00:50:50.504Z