Title :
Robust MIMO-OFDM System for Frequency-Selective Mobile Wireless Channels
Author :
Al-Dweik, Arafat ; Kalbat, Fatma ; Muhaidat, Sami ; Filio, Oscar ; Ali, Shirook M.
Author_Institution :
Sch. of Eng., Univ. of Guelph, Guelph, ON, Canada
Abstract :
This paper presents a novel technique to enhance the robustness of space-frequency block coded (SFBC) orthogonal frequency-division multiplexing (OFDM) systems. The proposed system shapes the channel matrix of a frequency-selective fading channel into a piecewise flat fading over each block of two adjacent subcarriers. Analytical and simulation results show that the proposed scheme substantially outperforms the conventional SFBC in frequency-selective fading channels, which assumes that the channel parameters are equal over the duration of the codeword. Moreover, we demonstrate that the proposed system offers a superior performance in fast time-varying channels where the interference that results from the channel variations acts only as an additive noise. In addition to its superior performance, the proposed system has low computational complexity, because it is based on the short-block-length Walsh-Hadamard transform.
Keywords :
Hadamard transforms; MIMO communication; OFDM modulation; block codes; channel coding; communication complexity; fading channels; orthogonal codes; time-varying channels; SFBC; computational complexity; frequency-division multiplexing system; frequency-selective fading channel; frequency-selective mobile wireless channel; piecewise flat fading channel; robust MIMO-OFDM system; short-block-length Walsh-Hadamard transform; space-frequency block coded system; time-varying channel; Bit error rate; Decoding; OFDM; Receivers; Standards; Transmitting antennas; Vectors; Frequency-selective channels; orthogonal frequency-division multiplexing (OFDM); precoding; space???frequency block coded (SFBC); space???time block codes (STBCs);
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2014.2340736