Title :
Transform domain channel estimation in comb type pilot aided OFDM systems
Author_Institution :
Combat Syst. Div., China Ship Dev. & Design Center, Wuhan, China
Abstract :
Aimed at non-integer-sample spaced OFDM systems, an improved DFT-based channel estimation method for comb-type pilot OFDM systems is proposed, which can diminish noise effectively and recover the dispersive distortion of estimated channel impulse response (CIR) caused by non-integer-sample space delay spread by choosing proper the zero-padding position. In addition, for low SNR environment, ignoring that non-important channel taps containing more noise than channel power energy can lead to more performance improvement. Simulation and analytic results show that the improved channel estimation method is better than frequency-domain interpolation methods and conventional zero-padding methods and is promising for practical engineering applications with good performance and low complexity.
Keywords :
OFDM modulation; channel estimation; discrete Fourier transforms; DFT based channel estimation method; channel power energy; channel taps; comb type pilot aided OFDM systems; dispersive distortion; estimated channel impulse response; noninteger sample space delay spread; transform domain channel estimation; zero padding position; Channel estimation; Delays; Frequency-domain analysis; Interpolation; OFDM; Signal to noise ratio; CIR; OFDM; energy leakage; non-integer-sample space;
Conference_Titel :
Mechatronic Sciences, Electric Engineering and Computer (MEC), Proceedings 2013 International Conference on
Conference_Location :
Shengyang
Print_ISBN :
978-1-4799-2564-3
DOI :
10.1109/MEC.2013.6885586