Channel Optimized Predistortion in Self-Heterodyne Direct Conversion Architecture for OFDM Systems(Wireless Communication Technologies)
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概要
- 論文の詳細を見る
This paper presents a novel technique to compensate intermodulation distortion of a self-heterodyne direct conversion OFDM system in multipath propagation environments. A self-heterodyne direct conversion system has an advantage that simple receivers can be built that are completely immune to any phase noise or frequency offset. This system, however, has a disadvantage that the nonlinear square-law detector at the receiver of the self-heterodyne direct conversion system gives rise to second order intermodulation distortion. In this study, channel estimation is performed using a training sequence and then the predistortion coefficients with regard to estimated channel parameters are derived to compensate the receiver nonlinearity. Transmit power distribution is employed to overcome multipath fading channels as well. Computer simulation demonstrates that the proposed approach improves the BER performance of the self-heterodyne direct conversion OFDM system in a multipath fading channel. This scheme gives advantage to multi-carrier systems that are much more sensitive to frequency and phase error than single-carrier systems.
- 社団法人電子情報通信学会の論文
- 2007-06-01
著者
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Lee Jong-ho
Telecommunication R & D Center Samsung Electronics
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Kim Seong-cheol
School Of Electrical Engineering And Computer Science Seoul National University
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Yang Jun-seok
Telecommunication R & D Center Samsung Electronics
関連論文
- Corrections to "Carrier Frequency Synchronization for OFDM Systems in the Presence of Phase Noise"
- Channel Optimized Predistortion in Self-Heterodyne Direct Conversion Architecture for OFDM Systems(Wireless Communication Technologies)
- Joint Channel Estimation and Phase Noise Suppression for OFDM Systems