DocumentCode :
3268079
Title :
Phase Noise Suppression in OFDM systems in Presence of IQ Imbalance
Author :
Tang, Shigang ; Gong, Ke ; Pan, Changyong ; Yang, Zhixing ; Peng, Kewu
Author_Institution :
Dept. of Electron. Eng., Tsinghua Univ., Beijing
Volume :
2
fYear :
2006
fDate :
25-28 June 2006
Firstpage :
1184
Lastpage :
1188
Abstract :
The implementation of OFDM system suffers from the effect of phase noise and IQ imbalance, which disturb the orthogonality between subcarriers and cause intercarrier interference (ICI). When treated separately, effective algorithms, such as the ICI self-cancellation scheme, exist for suppression of phase noise as well as IQ imbalance. However, with both effects present, such algorithms do not lead to effective suppression. In this paper, we propose a novel technique to jointly combat the IQ imbalance and phase noise at baseband. An IQ imbalance estimation and compensation module, which is robust against phase noise, is added in the ICI self-cancellation based OFDM system. After the IQ imbalance has been compensated in the time domain, the ICI self-cancellation scheme of data-conjugate method is used to suppress the phase noise and the residual IQ imbalance. This scheme has a fast convergence and a nearly optimal BER performance even for large IQ imbalance in AWGN channel. In multipath channel, even for large IQ imbalance, this joint suppression scheme offers frequency diversity gain and as a result, the BER performance surpasses that of the conventional OFDM system without IQ imbalance and phase noise
Keywords :
AWGN channels; OFDM modulation; error statistics; intercarrier interference; interference suppression; multipath channels; BER; ICI self-cancellation scheme; IQ imbalance estimation; OFDM systems; additive white Gaussian noise channels; bit error rate; data-conjugate method; frequency diversity gain; intercarrier interference; multipath AWGN channel; phase noise suppression; time domain compensation module; AWGN channels; Baseband; Bit error rate; Convergence; Interference; Multipath channels; Noise robustness; OFDM; Phase estimation; Phase noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications, Circuits and Systems Proceedings, 2006 International Conference on
Conference_Location :
Guilin
Print_ISBN :
0-7803-9584-0
Electronic_ISBN :
0-7803-9585-9
Type :
conf
DOI :
10.1109/ICCCAS.2006.284858
Filename :
4064099
Link To Document :
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