DocumentCode :
1330502
Title :
New OFDM Channel Estimation with Dual-ICI Cancellation in Highly Mobile Channel
Author :
Kwak, Kyungchul ; Lee, Sungeun ; Min, Hyunkee ; Choi, Sooyong ; Hong, Daesik
Volume :
9
Issue :
10
fYear :
2010
fDate :
10/1/2010 12:00:00 AM
Firstpage :
3155
Lastpage :
3165
Abstract :
The number of coefficients for estimating time-varying channel is generally much larger than the maximum number of observable data. Linearly time-varying channel (LTV) models have been widely used as a way of reducing the number of these channel parameters. This approach allows estimation using the channel slope and channel frequency response between symbols. A fatal problem with this approach, however, is that before it is even initiated, the estimated channel in the frequency domain has already been degraded by inter-carrier interference (ICI). We demonstrate this by analyzing the channel estimation mean square error (MSE) and signal to interference and noise ratio (SINR) after ICI cancellation with respect to the LTV model. We then propose a new channel estimation technique using dual-ICI cancellation which resolves this problem by pre-canceling ICI for the channel estimation using the channel of the previous symbol and post-canceling ICI for symbol detection with the more accurate channel information. The process is initialized using the first symbol as a preamble to estimate the channel in the time domain. Performance comparisons of MSE and SINR show that the proposed method is better suited to fast-fading channels than the conventional method, where ICI dominates the interference and noise power.
Keywords :
OFDM modulation; channel estimation; fading channels; frequency response; frequency-domain analysis; intercarrier interference; mean square error methods; time-varying channels; LTV models; MSE; OFDM channel estimation; SINR; channel frequency response; channel parameters; channel slope; dual-ICI cancellation; fast-fading channels; frequency domain; inter-carrier interference; linearly time-varying channel models; mean square error; mobile channel; signal to interference and noise ratio; time-varying channel estimation; AWGN; Channel estimation; Discrete Fourier transforms; Estimation; Interference; OFDM; Time-varying channels; ICI cancellation; OFDM; channel estimation; time varying channel;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2010.090210.091458
Filename :
5581210
Link To Document :
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