Title :
RLS-based frequency-domain DFE for uplink SC-FDMA
Author :
Iqbal, Naveed ; Zerguine, Azzedine ; Al-Dhahir, Naofal
Author_Institution :
Electr. Eng. Dept., King Fahd Univ. of Pet. & Miner., Dhahran, Saudi Arabia
Abstract :
The decision feedback equalizer is well known to outperform a linear equalizer in highly frequency-selective fading channels. In this paper, we develop a low-complexity Adaptive Frequency Domain Decision Feedback Equalizer (AFD-DFE) for Single-Carrier Frequency Division Multiple Access (SC-FDMA) systems. Both the feedforward and feedback filters operate in the frequency-domain and are adapted using the block Recursive Least Squares (RLS) algorithm. Since this DFE design operation is performed entirely in the frequency-domain, the complexity of the block RLS algorithm can be reduced substantially when compared to its time-domain counterpart by exploiting matrix structure in the frequency-domain. We also show that the RLS-based AFD-DFE not only enjoys a significant reduction in computational complexity when compared to the frequency-domain non-adaptive channel-estimate-based MMSE-DFE but its performance is also better than that of the practical MMSE DFE (with decision errors) and close to the ideal MMSE DFE (with correct decisions).
Keywords :
decision feedback equalisers; fading channels; frequency division multiple access; least squares approximations; RLS; adaptive frequency domain DFE; block recursive least squares algorithm; decision feedback equalizer; fading channel; feedback filter; feedforward filter; frequency division multiple access system; frequency selective channel; low complexity DFE; single carrier FDMA; uplink SC-FDMA; Computational complexity; Decision feedback equalizers; Discrete Fourier transforms; Feedforward neural networks; Frequency-domain analysis;
Conference_Titel :
Signals, Systems and Computers, 2014 48th Asilomar Conference on
Print_ISBN :
978-1-4799-8295-0
DOI :
10.1109/ACSSC.2014.7094609