Title :
On the Alternative Relaying Gaussian Diamond Channel with Conferencing Links
Author :
Chuan Huang ; Shuguang Cui
Author_Institution :
Dept. of Electr., Comput. & Energy Eng., Arizona State Univ., Tempe, AZ, USA
Abstract :
In this paper, the Gaussian diamond relay channel is considered, which consists of one source-destination pair and two relay nodes connected with rate-limited out-of-band conferencing links. In particular, we focus on the half-duplex alternative relaying strategy, in which the two relays operate alternatively over time. With different amounts of delay, two conferencing strategies are proposed, each of which can be implemented by either a general two-side conferencing scheme (for which both of the two conferencing links are used) or a special-case one-side conferencing scheme (for which only one of the two conferencing links is used). Based on the most general two-side conferencing scheme, we derive the achievable rates by using the decode-and-forward (DF) relaying scheme. By further exploiting the properties of the optimal solutions, the simpler one-side conferencing is shown to achieve the same rate as the two-side conferencing in term of the achievable rates under arbitrary channel conditions. Based on this result, the DF rate in closed-form is obtained, and the principle to use which one of the two conferencing links for one-side conferencing is also established. Moreover, the DF scheme is shown to be upper-bound-achieving under certain relay scheduling and conferencing strategy. Finally, numerical results are provided to validate our analysis.
Keywords :
Gaussian channels; decode and forward communication; radio links; relay networks (telecommunication); scheduling; DF relaying scheme; decode-and-forward relaying scheme; general two-side conferencing scheme; half-duplex alternative relaying strategy; rate-limited out-of-band conferencing links; relay nodes; relay scheduling; relaying Gaussian diamond channel; source-destination pair; special-case one-side conferencing scheme; upper-bound-achieving scheme; Decoding; Delay; Diamonds; Encoding; Relays; Upper bound; Wireless communication; Diamond relay channel; decode-and-forward (DF); one-side conferencing; two-side conferencing;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2013.010413.120278