paper

Analysis of Finite Field Spreading for Multiple-Access Channel

arXiv:1203.2721

Abstract

Finite field spreading scheme is proposed for a synchronous multiple-access channel with Gaussian noise and equal-power users. For each user, information bits are spread \emph{jointly} into a length- vector by multiplications on GF(). Thus, each information bit is dispersed into transmitted symbols, and the finite field despreading (FF-DES) of each bit can take advantage of independent receiving observations. To show the performance gain of joint spreading quantitatively, an extrinsic information transfer (EXIT) function analysis of the FF-DES is given. It shows that the asymptotic slope of this EXIT function increases as increases and is in fact the absolute slope of the bit error rate (BER) curve at the low BER region. This means that by increasing the length of information bits for joint spreading, a larger absolute slope of the BER curve is achieved. For , the BER curve of the finite field spreading has a larger absolute slope than that of the single-user transmission with BPSK modulation.

18 pages, 5 figures, submitted to IEEE Transactions on Information Theory