DocumentCode :
1736674
Title :
Stability Region of an Efficient Bidirectional Regenerative Half-duplex Relaying Protocol
Author :
Oechtering, Tobias J. ; Boche, Holger
Author_Institution :
Technical University of Berlin, Heinrich Hertz Chair for Mobile Communication, Einsteinufer 25, 10587 Berlin, Germany, Phone/Fax: +49-30-31428-165/320, tobias.oechtering@mk.tu-berlin.de
fYear :
2006
Firstpage :
380
Lastpage :
384
Abstract :
In this work, a stability optimal rate allocation policy for two M/G/1-¿ queues in a three node scenario with peak power constraints is characterized in closed form. Between two nodes, bidirectional communication is realized by a half-duplex decode-and-forward relay node. A centralized controller adapts slotwise the optimal discrete-time resource allocation according to the block-fading channel and queue state. In the memoryless Gaussian multiple access mode, the two nodes transmit their information to the relay node. In the memoryless Gaussian broadcast mode, the relay node forwards both information to their destinations. Since each destination node knows its own interference, efficient re-encoding increases the achievable broadcast rates. It results from "standard" Lyapunov drift technique that the stability region facilitated by the proposed rate allocation policy is equal to the ergodic achievable rate region.
Keywords :
Bidirectional control; Broadcasting; Centralized control; Communication system control; Decoding; Optimal control; Protocols; Relays; Resource management; Stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Theory Workshop, 2006. ITW '06 Punta del Este. IEEE
Conference_Location :
Punta del Este, Uruguay
Print_ISBN :
1-4244-0035-X
Electronic_ISBN :
1-4244-0036-8
Type :
conf
DOI :
10.1109/ITW.2006.322843
Filename :
4117498
Link To Document :
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