DocumentCode
1260735
Title
Semiblind Turbo Equalization Scheme for LTE Uplink Receiver
Author
Kutz, Gideon ; Bar-Or, A. ; Raphaeli, Dan
Author_Institution
Eng. Fac.-Syst., Tel Aviv Univ., Tel Aviv, Israel
Volume
61
Issue
9
fYear
2012
Firstpage
4199
Lastpage
4205
Abstract
An advanced receiver scheme for long-term evolution (LTE) uplink is proposed. The scheme combines semiblind channel estimation and turbo equalization and is based on an approximate expectation-maximization (EM) algorithm. The receiver iterates between demodulation of the data symbols using frequency-domain soft interference cancelation, turbo decoding, and semiblind channel estimation that utilizes the soft symbols extracted from the turbo decoder output. It is shown that, using the proposed scheme, one can replace most of the dedicated pilots used in the current LTE scheme with data information and obtain significantly better performance with the same bandwidth. Moreover, an efficient implementation of the proposed algorithm utilizing the discrete/fast Fourier transform (DFT/FFT) properties used in the single-carrier orthogonal frequency-division multiplexing (SC-OFDM) scheme is presented.
Keywords
Long Term Evolution; OFDM modulation; approximation theory; channel estimation; discrete Fourier transforms; expectation-maximisation algorithm; frequency-domain analysis; iterative decoding; radio links; radio receivers; radiofrequency interference; turbo codes; DFT properties; FFT properties; LTE uplink receiver; SC-OFDM scheme; advanced receiver scheme; approximate EM algorithm; approximate expectation-maximization algorithm; data information; data symbols; discrete Fourier transform; fast Fourier transform; frequency-domain soft interference cancelation; long-term evolution uplink; receiver iteration; semiblind channel estimation; semiblind turbo equalization scheme; single-carrier orthogonal frequency-division multiplexing scheme; soft symbols extraction; turbo decoder; turbo decoding; Channel estimation; Discrete Fourier transforms; OFDM; Receivers; Silicon carbide; Time domain analysis; Transmitters; Channel estimation; long-term evolution (LTE); single-carrier orthogonal frequency-division multiplexing (SC-OFDM); turbo equalization;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/TVT.2012.2212212
Filename
6262498
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