DocumentCode :
2136821
Title :
Stochastic geometry analysis of multi-user MIMO cellular networks using Zero-Forcing precoding
Author :
Lu, Wei ; Di Renzo, Marco
Author_Institution :
Laboratory of Signals and Systems (L2S - UMR 8506) - French National Center for Scientific Research (CNRS), École Supérieure d´Électricité (SUPELEC) - University of Paris-Sud XI (UPS-XI), 3 rue Joliot-Curie, 91192 Gif-sur-Yvett
fYear :
2015
fDate :
8-12 June 2015
Firstpage :
1477
Lastpage :
1482
Abstract :
The Equivalent-in-Distribution (EiD)-based approach to the analysis of Single-Input-Single-Output (SISO) cellular networks has recently been introduced [1]. Its rationale relies upon formulating the aggregate other-cell interference in terms of an infinite summation of independent and conditionally distributed Gaussian Random Variables (RVs). This approach leads to exact integral expressions of the error probability for arbitrary bi-dimensional modulations. In this paper, the EiD-based approach is generalized to the performance analysis of multi-user Multiple-Input-Multiple-Output (MIMO) cellular networks, which use Zero-Forcing (ZF) precoding for transmission over Rayleigh fading channels. In the presence of othercell interference and noise, the error probability is formulated in terms of a twofold integral. In interference-limited cellular networks, the mathematical framework simplifies to a single integral expression. The mathematical analysis is substantiated with the aid of extensive Monte Carlo simulations and the performance of multi-user MIMO cellular networks is discussed.
Keywords :
Aggregates; Approximation methods; Error probability; Interference; MIMO; Modulation; Signal to noise ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2015 IEEE International Conference on
Conference_Location :
London, United Kingdom
Type :
conf
DOI :
10.1109/ICC.2015.7248532
Filename :
7248532
Link To Document :
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