Title :
Analytical upper bound on optimum joint decoding capacity of Wyner GCMAC using hadamard inequality
Author :
Shakir, Muhammad Zeeshan ; Durrani, Tariq S. ; Alouini, Mohamed-Slim
Author_Institution :
Div. of Phys. Sci. & Eng., KAUST, Thuwal, Saudi Arabia
Abstract :
This paper presents an original analytical expression for an upper bound on the optimum joint decoding capacity of Wyner circular Gaussian cellular multiple access channel (C-GCMAC) for uniformly distributed mobile terminals (MTs) across the cells. This upper bound is referred to as Hadamard upper bound (HUB) and is a novel application of the Hadamard inequality established by exploiting the Hadamard operation between the channel fading and channel path gain matrices. In this context, we employ an approximation approach based on the estimation of probability density function (PDF) of Hadamard product of two matrices. A closed-form expression has been derived to capture the effect of variable user density in adjacent cells on optimal joint decoding capacity. The results of this paper demonstrate that the analytical HUB based on the proposed approximation approach converges to the theoretical results for medium range of signal to noise ratios and shows a comparable tighter bound on optimum joint decoding capacity.
Keywords :
Gaussian channels; cellular radio; decoding; fading channels; multi-access systems; probability; Hadamard inequality; Hadamard upper bound; Wyner GCMAC; Wyner circular Gaussian cellular multiple access channel; analytical upper bound; channel fading; channel path gain matrices; mobile terminals; optimum joint decoding capacity; probability density function; variable user density; Approximation methods; Decoding; Error correction codes; Fading; Joints; Linear matrix inequalities; Upper bound;
Conference_Titel :
Wireless Communication Systems (ISWCS), 2011 8th International Symposium on
Conference_Location :
Aachen
Print_ISBN :
978-1-61284-403-9
Electronic_ISBN :
2154-0217
DOI :
10.1109/ISWCS.2011.6125287