Signal detection for orthogonal space-time block coding over time-selective fading channels: The H/sub i/ systems
One major assumption in all orthogonal space-time block coding (O-STBC) schemes is that the channel remains static over the length of the code word. However, time-selective fading channels do exist, and in such case conventional O-STBC detectors can suffer from a large error floor in the high signal...
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Published in | IEEE transactions on wireless communications Vol. 5; no. 1; pp. 40 - 46 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
IEEE
01.01.2006
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Online Access | Get full text |
ISSN | 1536-1276 |
DOI | 10.1109/TWC.2006.1576524 |
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Abstract | One major assumption in all orthogonal space-time block coding (O-STBC) schemes is that the channel remains static over the length of the code word. However, time-selective fading channels do exist, and in such case conventional O-STBC detectors can suffer from a large error floor in the high signal-to-noise ratio (SNR) cases. As a sequel to the authors' previous papers on this subject, this paper aims to eliminate the error floor of the H/sub i/-coded O-STBC system (i = 3 and 4) by employing the techniques of: 1) zero forcing (ZF) and 2) parallel interference cancellation (PIC). It is. shown that for an H/sub i/-coded system the PIC is a much better choice than the ZF in terms of both performance and computational complexity. Compared with the, conventional H/sub i/ detector, the PIC detector incurs a moderately higher computational complexity, but this can well be justified by the enormous improvement. |
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AbstractList | One major assumption in all orthogonal space-time block coding (O-STBC) schemes is that the channel remains static over the length of the code word. However, time-selective fading channels do exist, and in such case conventional O-STBC detectors can suffer from a large error floor in the high signal-to-noise ratio (SNR) cases. As a sequel to the authors' previous papers on this subject, this paper aims to eliminate the error floor of the H/sub i/-coded O-STBC system (i = 3 and 4) by employing the techniques of: 1) zero forcing (ZF) and 2) parallel interference cancellation (PIC). It is. shown that for an H/sub i/-coded system the PIC is a much better choice than the ZF in terms of both performance and computational complexity. Compared with the, conventional H/sub i/ detector, the PIC detector incurs a moderately higher computational complexity, but this can well be justified by the enormous improvement. |
Author | Zheng, F.-C. Burr, A.G. |
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References | ref14 ref11 ref10 ref2 ref1 ref17 zheng (ref15) 2003; 1 ref16 ref8 enescu (ref13) 2002 ref7 ref9 ref4 ref3 zheng (ref6) 2003; 1 ref5 tastsanis (ref12) 1996; 53 |
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SubjectTerms | Bit error rate Block codes Computational complexity Detectors Fading Interference cancellation Maximum likelihood decoding Signal detection Signal to noise ratio Wireless communication |
Title | Signal detection for orthogonal space-time block coding over time-selective fading channels: The H/sub i/ systems |
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