Title :
Joint Maximum Likelihood and Expectation Maximization Methods for Unsupervised Iterative Soft Bit Error Rate Estimation
Author :
Saoudi, Samir ; Dong, Jia ; Ait-Idir, Tarik
Author_Institution :
LabSticc, Inst. Mines-Telecom, Brest, France
Abstract :
This paper addresses the problem of unsupervised soft bit error rate (BER) estimation for any communications system, where no prior knowledge either about transmitted information bits, or the transceiver scheme is available. We show that the problem of BER estimation is equivalent to estimating the conditional probability density functions (pdf)s of soft receiver outputs. Assuming that the receiver has no analytical model of soft observations, we propose a non parametric Kernel-based pdf estimation technique, with Maximum Likelihood based smoothing parameter computation. We then introduce an iterative Stochastic Expectation Maximization algorithm for the estimation of both a priori and a posteriori probabilities of transmitted information bits, and the classification of soft observations according to transmitted bit values. These inputs serve in the iterative Kernel-based estimation procedure of conditional pdfs. We analyze the performance of the proposed unsupervised BER estimator in the framework of a multiuser code division multiple access (CDMA) system with single user detection, and show that attractive performance are achieved compared with conventional Monte Carlo-aided techniques.
Keywords :
Monte Carlo methods; code division multiple access; error statistics; expectation-maximisation algorithm; radio transceivers; stochastic processes; CDMA; Monte Carlo methods; conditional probability density functions; iterative stochastic expectation maximization algorithm; joint maximum likelihood estimation; multiuser code division multiple access; nonparametric Kernel based PDF estimation technique; single user detection; smoothing parameter computation; soft receiver outputs; transceiver scheme; unsupervised iterative soft bit error rate estimation; Bit error rate; Maximum likelihood estimation; Probability density function; Receivers; Reliability; Smoothing methods;
Conference_Titel :
Vehicular Technology Conference (VTC Fall), 2012 IEEE
Conference_Location :
Quebec City, QC
Print_ISBN :
978-1-4673-1880-8
Electronic_ISBN :
1090-3038
DOI :
10.1109/VTCFall.2012.6399320