DocumentCode :
1106512
Title :
Multiuser Detection in a Dynamic Environment– Part I: User Identification and Data Detection
Author :
Biglieri, Ezio ; Lops, Marco
Author_Institution :
Univ. Pompeu Fabra, Barcelona
Volume :
53
Issue :
9
fYear :
2007
Firstpage :
3158
Lastpage :
3170
Abstract :
In random-access communication systems, the number of active users varies with time, and has considerable bearing on receiver´s performance. Thus, techniques aimed at identifying not only the information transmitted, but also that number, play a central role in those systems. An example of application of these techniques can be found in multiuser detection (MUD). In typical MUD analyses, receivers are based on the assumption that the number of active users is constant and known at the receiver, and coincides with the maximum number of users entitled to access the system. This assumption is often overly pessimistic, since many users might be inactive at any given time, and detection under the assumption of a number of users larger than the real one may impair performance. The main goal of this paper is to introduce a general approach to the problem of identifying active users and estimating their parameters and data in a random-access system where users are continuously entering and leaving the system. The tool whose use we advocate is random-set theory (RST): applying this, we derive optimum receivers in an environment where the set of transmitters comprises an unknown number of elements. In addition, we can derive Bayesian-filter equations which describe the evolution with time of the a posteriori probability (APP) density of the unknown user parameters, and use this density to derive optimum detectors. In this paper, we restrict ourselves to interferer identification and data detection, while in a companion paper we shall examine the more complex problem of estimating users´ parameters.
Keywords :
Bayes methods; filtering theory; interference (signal); multiuser detection; set theory; Bayesian-fllter equations; MUD; RST; a posteriori probability; data detection; dynamic environment; interferer identification; multiuser detection; random-access communication systems; random-set theory; receiver; user identification; Ad hoc networks; Bayesian methods; Communication systems; Detectors; Equations; Multiaccess communication; Multiuser detection; Parameter estimation; Set theory; Transmitters; Bayesian recursions; Multiuser detection; random set theory;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2007.903115
Filename :
4294149
Link To Document :
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