Soft information forwarding design for a two-way relaying channel
Xu Jin, Jun Li, Zihuai Lin, Branka S. Vucetic · 2014
In this paper we investigate novel soft mutual information forwarding (MIF) protocols in a two-way relay channel (TWRC), where two sources exchange information with the help of an intermediate relay. Based on the estimated signals from the two sources, the relay calculates the soft mutual information, and then broadcasts it to the two sources. In specific, we propose two MIF protocols, namely, network coded MIF (NC-MIF) and superposition coded MIF (SC-MIF), suitable to different channel conditions. The expressions derived for the received signal-to-noise ratio (SNR) at the sources reveal that if both source-to-relay channels are in good conditions, the NC-MIF outperforms the SC-MIF. Otherwise, the SC-MIF is superior to the NC-MIF. For the TWRC with varying channels, we further develop an adaptive scheme, which enables the dynamic switch between the two protocols, depending on the received SNR at the sources. Furthermore, the threshold that determines the switch of the protocols is developed as a close-form expression. Simulation results show that our adaptive scheme outperforms all the existing relaying protocols in the fading channels.