DocumentCode
49247
Title
Alternative Awaiting and Broadcast for Two-Way Relay Fading Channels
Author
Jianquan Liu ; Meixia Tao ; Youyun Xu
Author_Institution
Dept. of Electron. Eng., Shanghai Jiao Tong Univ., Shanghai, China
Volume
62
Issue
6
fYear
2013
fDate
Jul-13
Firstpage
2841
Lastpage
2846
Abstract
We investigate a two-way relay (TWR) fading channel where two source nodes wish to exchange information with the help of a relay node. Given traditional TWR protocols, transmission rates in both directions are known to be limited by the hop with lower capacity, i.e., the min operations between uplink and downlink. In this paper, we propose a new transmission protocol, called alternative awaiting and broadcast (AAB), to cancel the min operations in the TWR fading channels. The operational principles, a new upper bound on ergodic sum capacity (ESC), and a convergence behavior of the average delay of signal transmission (ST) (in the relay buffer) for the proposed AAB protocol are analyzed. Moreover, we propose a suboptimal encoding/decoding solution for the AAB protocol and derive an achievable ergodic sum rate (ESR) with a corresponding average delay of ST. Numerical results show that 1) the proposed AAB protocol significantly improves the achievable ESR compared with the traditional TWR protocols, and 2) considering the average delay of system service (SS) (in the source buffer), the average delay of ST induced by the proposed AAB protocol is very small and negligible.
Keywords
channel capacity; channel coding; delays; fading channels; protocols; radio broadcasting; relay networks (telecommunication); AAB transmission protocol; ESC; ESR; SS; ST delay; TWR fading channel; TWR protocol; alternative awaiting and broadcast; ergodic sum capacity; ergodic sum rate; information exchange; relay node; signal transmission; source node; suboptimal decoding; suboptimal encoding; system service; transmission rate; two way relay; upper bound; Delay; Downlink; Fading; Protocols; Relays; Uplink; Upper bound; Alternative awaiting and broadcast (AAB); ergodic sum rate (ESR); partial decoding; physical-layer network coding (PLNC); two-way relay (TWR);
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/TVT.2013.2245690
Filename
6457512
Link To Document