TY - JOUR
T1 - A Complexity-Reduced QRD-SIC Detector for Interleaved OTFS
AU - Shao, Hua
AU - Zhang, Haijun
AU - Zhou, Huan
AU - Wang, Jianquan
AU - Wang, Ning
AU - Nallanathan, Arumgam
N1 - Publisher Copyright:
© 2002-2012 IEEE.
PY - 2023/2/1
Y1 - 2023/2/1
N2 - Signal detectors are quite important to attain the diversity of doubly-dispersive wireless channels. Detectors based on message-passing (MP) of factor graphs have been regarded as the way to achieve the near-optimal performance for OTFS. In this paper, by deriving the pattern of the multipath vectorized channel matrix of the orthogonal time frequency space (OTFS) system, it is shown that short girth (i.e. girth-4) may exist in the Tanner graphs, which will degrade the performance of MP detectors, especially with high modulation orders. By introducing interleavers at the transmitter and receiver, the vectorized channel matrix turns out to be a sparse upper block Heisenberg matrix, whose structure is beneficial for the computation of matrix QR decomposition (QRD). Successive interference canceling (SIC) detectors based on QRD and sorted QRD are constructed to eliminate the cross-symbol interference and improve the reliability of the symbol-level channel. Simulation results show that for 4QAM, the QRD-based SIC detectors can achieve about 4dB gain at 10-2 over the non-SIC detectors, while the sorted QRD-based SIC detectors can bring an additional 2dB at 10-3, which is only 1dB gap from the MP. For 16QAM, the sorted SIC detectors show superior BER performance than the MP method, and for 64QAM, the MP detector reaches the error floor while SIC detectors show their excellent performance in all configurations.
AB - Signal detectors are quite important to attain the diversity of doubly-dispersive wireless channels. Detectors based on message-passing (MP) of factor graphs have been regarded as the way to achieve the near-optimal performance for OTFS. In this paper, by deriving the pattern of the multipath vectorized channel matrix of the orthogonal time frequency space (OTFS) system, it is shown that short girth (i.e. girth-4) may exist in the Tanner graphs, which will degrade the performance of MP detectors, especially with high modulation orders. By introducing interleavers at the transmitter and receiver, the vectorized channel matrix turns out to be a sparse upper block Heisenberg matrix, whose structure is beneficial for the computation of matrix QR decomposition (QRD). Successive interference canceling (SIC) detectors based on QRD and sorted QRD are constructed to eliminate the cross-symbol interference and improve the reliability of the symbol-level channel. Simulation results show that for 4QAM, the QRD-based SIC detectors can achieve about 4dB gain at 10-2 over the non-SIC detectors, while the sorted QRD-based SIC detectors can bring an additional 2dB at 10-3, which is only 1dB gap from the MP. For 16QAM, the sorted SIC detectors show superior BER performance than the MP method, and for 64QAM, the MP detector reaches the error floor while SIC detectors show their excellent performance in all configurations.
KW - block Heisenberg matrix
KW - detectors
KW - OTFS
KW - QR decomposition
KW - temporal interleaver
UR - http://www.scopus.com/inward/record.url?scp=85137605682&partnerID=8YFLogxK
U2 - 10.1109/TWC.2022.3199714
DO - 10.1109/TWC.2022.3199714
M3 - 文章
AN - SCOPUS:85137605682
SN - 1536-1276
VL - 22
SP - 950
EP - 960
JO - IEEE Transactions on Wireless Communications
JF - IEEE Transactions on Wireless Communications
IS - 2
ER -