DocumentCode :
839920
Title :
Data sources for simulation of m-ary systems
Author :
Charles, S.A. ; Pollard, J.K.
Volume :
150
Issue :
5
fYear :
2003
Abstract :
It has been generally assumed that binary data from a maximum-length pseudo-random binary source can be grouped into m-ary symbols that will uniformly cover constellation points in a modulation scheme due to the central limit theorem. This is not the case. Sources based on the Galois field GF(16) are introduced and compared to binary, GF(2), ones in terms of the mean and variability of the resulting bit error rate (BER) estimate using a single carrier quadrature amplitude modulation (16-QAM) system as an example. The use of data sources over GF(16) for Monte Carlo simulation of the example system eliminates BER estimate variability with certain channels. Such variability is important when the channel is such that some of the constellation points cause higher probabilities of error than others. The approach is then extended to orthogonal frequency division multiplex (OFDM) m-ary systems. It is found that it is important to map separate Galois field data sources to each sub-carrier in the case of OFDM systems. There is found to be some residual BER estimate variability. The extension of the approach to systems employing forward error correction coding and interleaving is discussed
Keywords :
Galois fields <simul. of m-ary systs., data sources>; Monte Carlo methods <simul. of m-ary systs., data sources>; OFDM modulation <simul. of m-ary systs., data sources>; binary codes <simul. of m-ary systs., data sources>; digital simulation <simul. of m-ary systs., data sources>; error statistics <simul. of m-ary systs., data sources>; forward error correction <simul. of m-ary systs., data sources>; interleaved codes <simul. of m-ary systs., data sources>; quadrature amplitude modulation <simul. of m-ary systs., data sources>; random sequences <simul. of m-ary systs., data sources>; 16-QAM; BER estimate variability; Galois field; Monte Carlo simulation; OFDM systems; binary data; bit error rate; central limit theorem; coding; forward error correction; frequency field data sources; interleaving; m-ary symbols; m-ary systems simulation; maximum-length pseudo-random binary source; orthogonal frequency division multiplexing; quadrature amplitude modulation; sub-carrier;
fLanguage :
English
Journal_Title :
Communications, IEE Proceedings-
Publisher :
iet
ISSN :
1350-2425
Type :
jour
DOI :
10.1049/ip-com:20030519
Filename :
1251676
Link To Document :
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