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Practical Pulse-Shaping Waveforms for Reduced-Cyclic-Prefix OTFS

delete2019-01-01
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PRE
AI
P
P. Raviteja
Y
Yi Hong
E
Emanuele Viterbo *
E
E. Biglieri
DOI:10.1109/TVT.2018.2878891delete
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Abstract

Abstract

En 中文
In this paper, we model MxN orthogonal time frequency space modulation (OTFS) over a P-path doubly dispersive channel with delays less than tau(max) and Doppler shifts in the range (nu(min), nu(max)). We first derive in a simple matrix form the input-output relation in the delay-Doppler domain for practical (e.g., rectangular) pulse-shaping waveforms, next generalize it to arbitrary waveforms. This relation extends the original OTFS input-output approach, which assumes ideal pulse-shaping waveforms that are bi-orthogonal in both time and frequency. We show that the OTFS input-output relation has a simple sparse structure that enables one to use low-complexity detection algorithms. Different from previous work, only a single cyclic prefix is added at the end of the OTFS frame, significantly reducing the overhead, without incurring any penalty from the loss of bi-orthogonality of the pulse-shaping waveforms. Finally, we compare the OTFS performance with different pulse-shaping waveforms, and show that the reduction of out-of-band power may introduce nonuniform channel gains for the transmitted symbols, thus impairing the overall error performance.
Keywords:
OTFS
circulant matrices
delay-Doppler domain
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Journal

IEEE Transactions on Vehicular Technology cover
IEEE Transactions on Vehicular Technology
IF:
7.1
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1.8W
Citations:
6.6W

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M
Monash University
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Papers: 5.4W
Citations: 79
P
Pompeu Fabra University
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Citations: 11