학술논문

Coordinate Interleaved Faster-Than-Nyquist Signaling
Document Type
Periodical
Source
IEEE Communications Letters IEEE Commun. Lett. Communications Letters, IEEE. 27(1):229-233 Jan, 2023
Subject
Communication, Networking and Broadcast Technologies
Symbols
Binary phase shift keying
Detectors
Receivers
Transmitters
Interference
Maximum likelihood estimation
Coordinate interleaving
constructive inter-symbol interference
low-complexity detection
faster-than-Nyquist
Language
ISSN
1089-7798
1558-2558
2373-7891
Abstract
Faster-than-Nyquist (FTN) signaling is an attractive transmission technique which accelerates data symbols beyond the Nyquist rate to improve the spectral efficiency; however, at the expense of higher computational complexity to remove the introduced intersymbol interference (ISI). In this work, we introduce a novel FTN signaling transmission technique, named coordinate interleaved FTN (CI-FTN) signaling that exploits the ISI at the transmitter to generate constructive interference for every pair of the counter-clockwise rotated binary phase shift keying (BPSK) data symbols. In particular, the proposed CI-FTN signaling interleaves the in-phase (I) and the quadrature (Q) components of the counter-clockwise rotated BPSK symbols to guarantee that every pair of consecutive symbols has the same sign, and hence, has constructive ISI. At the receiver, we propose a low-complexity detector that makes use of the constructive ISI introduced at the transmitter. Simulation results show the merits of the CI-FTN signaling and the proposed low-complexity detector compared to conventional Nyquist and FTN signaling.