TY - JOUR
T1 - Spectral precoding for cyclic-prefixed OFDMA with interleaved subcarrier allocation
AU - Chen, Wei Chang
AU - Chung, Char Dir
PY - 2013/11
Y1 - 2013/11
N2 - Spectrally precoded orthogonal frequency-division multiple access (OFDMA) using cyclic prefix and interleaved subcarrier allocation (IOFDMA) is a useful rectangularly pulsed OFDMA signaling format for it exploits high spectral compactness and frequency diversity characteristics. In this paper, two new spectral precoders of the largest precoding rate are developed for IOFDMA in order to provide improved spectral compactness and reduce implementation complexity, respectively. Specifically, a new correlative precoder is developed and shown to minimize the dominant spectral coefficient among all correlative precoders of the largest precoding rate and thus can construct IOFDMA signals providing extremely high spectral compactness. Besides, a multiple-stage spectral precoding technique is proposed to construct a low-complexity orthogonally precoded IOFDMA with power spectral sidelobes decaying as f -2L-2 for L>1, where L is the number of stages. The corresponding orthogonally precoded IOFDMA signals conveying independent zero-mean data are shown to provide the same power spectrum as existing orthogonally precoded IOFDMA signals of the largest precoding rate while requiring much less complexity.
AB - Spectrally precoded orthogonal frequency-division multiple access (OFDMA) using cyclic prefix and interleaved subcarrier allocation (IOFDMA) is a useful rectangularly pulsed OFDMA signaling format for it exploits high spectral compactness and frequency diversity characteristics. In this paper, two new spectral precoders of the largest precoding rate are developed for IOFDMA in order to provide improved spectral compactness and reduce implementation complexity, respectively. Specifically, a new correlative precoder is developed and shown to minimize the dominant spectral coefficient among all correlative precoders of the largest precoding rate and thus can construct IOFDMA signals providing extremely high spectral compactness. Besides, a multiple-stage spectral precoding technique is proposed to construct a low-complexity orthogonally precoded IOFDMA with power spectral sidelobes decaying as f -2L-2 for L>1, where L is the number of stages. The corresponding orthogonally precoded IOFDMA signals conveying independent zero-mean data are shown to provide the same power spectrum as existing orthogonally precoded IOFDMA signals of the largest precoding rate while requiring much less complexity.
KW - Orthogonal frequency-division multiple access
KW - Sidelobe suppression
KW - Spectral compactness
KW - Spectral precoding
KW - Subcarrier allocation
UR - https://www.scopus.com/pages/publications/84890440116
U2 - 10.1109/TCOMM.2013.101813.130309
DO - 10.1109/TCOMM.2013.101813.130309
M3 - ???researchoutput.researchoutputtypes.contributiontojournal.article???
AN - SCOPUS:84890440116
SN - 0090-6778
VL - 61
SP - 4616
EP - 4629
JO - IEEE Transactions on Communications
JF - IEEE Transactions on Communications
IS - 11
M1 - 6648359
ER -