A Novel Differential Detection for Differential OFDM Systems With High Mobility
In conventional differential detection (CDD), the previous received symbol is used as the phase reference for the current received symbol, therefore the channel variation due to fast fading causes an error floor. We propose a novel iterative decision-directed differential detection (iD4) algorithm f...
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Published in | IEEE transactions on broadcasting Vol. 62; no. 2; pp. 398 - 408 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.06.2016
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
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Abstract | In conventional differential detection (CDD), the previous received symbol is used as the phase reference for the current received symbol, therefore the channel variation due to fast fading causes an error floor. We propose a novel iterative decision-directed differential detection (iD4) algorithm for orthogonal frequency division multiplexing (OFDM) systems employing differential PSK modulation in each subcarrier. The core of iD4 is a low complexity time and frequency 2-D estimator which can effectively estimate the channel variation experienced by adjacent time domain symbols. This estimated channel variation is then compensated in the differential detection process. Both theoretical analysis and computer simulations show that significant performance improvement can be achieved using iD4 over the CDD for OFDM receivers in fast fading channels. |
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AbstractList | In conventional differential detection (CDD), the previous received symbol is used as the phase reference for the current received symbol, therefore the channel variation due to fast fading causes an error floor. We propose a novel iterative decision-directed differential detection (iD4) algorithm for orthogonal frequency division multiplexing (OFDM) systems employing differential PSK modulation in each subcarrier. The core of iD4 is a low complexity time and frequency 2-D estimator which can effectively estimate the channel variation experienced by adjacent time domain symbols. This estimated channel variation is then compensated in the differential detection process. Both theoretical analysis and computer simulations show that significant performance improvement can be achieved using iD4 over the CDD for OFDM receivers in fast fading channels. |
Author | Thibault, Louis Yiyan Wu Zhihong Hong Boudreau, Richard Liang Zhang |
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References | ref12 ref14 schramm (ref24) 1997 ref11 ref10 thibault (ref2) 2003; 1 ref1 ref17 ref16 ref19 ref18 failli (ref3) 1989 ouchi (ref13) 2002 ref23 ref26 ref25 ref20 ref22 ref21 zhao (ref15) 1997; 3 ref8 ref7 ref9 ref4 ref6 handa (ref5) 2003; e86 b |
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Snippet | In conventional differential detection (CDD), the previous received symbol is used as the phase reference for the current received symbol, therefore the... |
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SubjectTerms | Channel estimation Channels Correlation DAB decision directed differential detection Digital audio broadcasting Error detection Estimation Estimators Fading fast fading Modulation OFDM Orthogonal Frequency Division Multiplexing Receivers Symbols Time-domain analysis |
Title | A Novel Differential Detection for Differential OFDM Systems With High Mobility |
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