arXiv · 1106.2888
On Achievable Rate Regions of the Asymmetric AWGN Two-Way Relay Channel
Abstract
This paper investigates the additive white Gaussian noise two-way relay channel, where two users exchange messages through a relay. Asymmetrical channels are considered where the users can transmit data at different rates and at different power levels. We modify and improve existing coding schemes to obtain three new achievable rate regions. Comparing four downlink-optimal coding schemes, we show that the scheme that gives the best sum-rate performance is (i) complete-decode-forward, when both users transmit at low signal-to-noise ratio (SNR); (ii) functional-decode-forward with nested lattice codes, when both users transmit at high SNR; (iii) functional-decode-forward with rate splitting and time-division multiplexing, when one user transmits at low SNR and another user at medium--high SNR.
Explore related subjects
Keep this discovery
Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson. 2011-06-15. On Achievable Rate Regions of the Asymmetric AWGN Two-Way Relay Channel. https://doi.org/10.1109/isit.2011.6034256
Cite the original work for its findings. Save a collection to share your selection of sources.