Title :
Golay sequence aided channel estimation for millimeter-wave WPAN systems
Author :
Kimura, Ryuji ; Funada, Riku ; Nishiguchi, Y. ; Ming Lei ; Baykas, Tuncer ; Chin-Sean Sum ; Junyi Wang ; Rahman, Aminur ; Shoji, Yozo ; Harada, Hiroshi ; Kato, Shigeo
Author_Institution :
Nat. Inst. of Inf. & Commun. Technol., Yokosuka
Abstract :
In order to design a simple and highly accurate channel estimator for wireless personal area network systems, this paper proposes Golay sequence aided channel estimation. To evaluate the performance of proposed channel estimation, bit error rate performance of single-carrier transmission with frequency-domain equalization has been analyzed by computer simulation. When 8PSK modulation and Reed-Solomon coding RS(255, 239) as forward error correction are used, the proposed Golay sequence aided channel estimation works very well in millimeter-wave and non line-of-sight fading environments with a 1.8 dB degradation of Eb/N0 at 10-6 of bit error rate against the ideal channel estimation, which is practically acceptable. Moreover, comparing with Chu sequence aided channel estimation, the proposed Golay sequence aided channel estimation improves 0.4 dB of Eb/N0 at the bit error rate while achieving much less hardware than Chu sequence aided one, which is very important for mobile terminal applications.
Keywords :
Golay codes; Reed-Solomon codes; channel estimation; error statistics; forward error correction; modulation; personal area networks; wireless channels; 8PSK modulation; Chu sequence aided channel estimation; Golay sequence aided channel estimation; Reed-Solomon coding; bit error rate; channel estimator; forward error correction; frequency-domain equalization; millimeter-wave WPAN systems; single-carrier transmission; wireless personal area network; Bit error rate; Channel estimation; Computer simulation; Fading; Forward error correction; Frequency domain analysis; Modulation coding; Performance analysis; Reed-Solomon codes; Wireless personal area networks; Golay sequences; IEEE802.15.3c; channel estimation; frequency-domain equalization; millimeter-wave; wireless personal area networks;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 2008. PIMRC 2008. IEEE 19th International Symposium on
Conference_Location :
Cannes
Print_ISBN :
978-1-4244-2643-0
Electronic_ISBN :
978-1-4244-2644-7
DOI :
10.1109/PIMRC.2008.4699819