DocumentCode :
137249
Title :
Submodular structure and optimal quantization in Gaussian multiple access relay networks
Author :
Riemensberger, Maximilian ; Gerdes, Lennart ; Utschick, Wolfgang
Author_Institution :
Associate Inst. for Signal Process., Tech. Univ. Munchen, München, Germany
fYear :
2014
fDate :
22-25 June 2014
Firstpage :
319
Lastpage :
323
Abstract :
We discuss noisy network coding bounds on the capacity region of Gaussian multiple access relay networks. These networks feature a single destination node and multiple nodes that can be either sources or relays or both. We show that simple inner and outer bounds on the capacity region obtained from noisy network coding exhibit a submodular structure and differ only in a constant, which is independent of the channel parameters and grows linearly only in the number of dedicated relay nodes. This tightens previous results where the gap grows linear in the total network size. Furthermore, the combination of submodularity with convexity of the bound expressions with respect to the optimal quantization noise parameters leads to an efficient characterization of a noisy network coding achievable rate region for multiple access relay networks via Lagrangian duality.
Keywords :
Gaussian noise; multi-access systems; network coding; quantisation (signal); relay networks (telecommunication); Gaussian multiple access relay network; Lagrangian duality; dedicated relay node; multiple node; noisy network coding bound; optimal quantization noise parameter; single destination node; submodular structure; Network coding; Noise; Noise measurement; Quantization (signal); Relay networks (telecommunications); Vectors; Network coding; multiple access; polymatroid; relay channel; submodular function; wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Advances in Wireless Communications (SPAWC), 2014 IEEE 15th International Workshop on
Conference_Location :
Toronto, ON
Type :
conf
DOI :
10.1109/SPAWC.2014.6941695
Filename :
6941695
Link To Document :
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