Chirped DFT-s-OFDM: A new single-carrier waveform with enhanced LMMSE noise suppression
Yujie Liu, Yong Liang Guan, David Gonz\'alez G., Halim Yanikomeroglu

TL;DR
This paper introduces chirped DFT-s-OFDM, a novel single-carrier waveform for 6G communications that improves noise suppression and maintains low PAPR, demonstrating full frequency diversity in uplink channels.
Contribution
It proposes a new chirped DFT-s-OFDM waveform that enhances noise suppression and maintains low PAPR, with analysis confirming full frequency diversity in uplink scenarios.
Findings
Achieves full frequency diversity in uplink channels.
Provides a bit error rate upper bound close to simulations.
Maintains low peak-to-average-power ratio.
Abstract
In this paper, a new single-carrier waveform, called chirped discrete Fourier transform spread orthogonal frequency division multiplexing (DFT-s-OFDM), is proposed for the sixth generation of communications. As the initial study on this waveform, its performance is analyzed and evaluated in single-user uplink multiple access communications, using a delay-Doppler channel model with independent and identically distributed path amplitudes and different integer delays. By chirping DFT-s-OFDM in the time domain, it maintains the low peak-to-average-power ratio of DFT-s-OFDM. Thanks to full-band transmission and symbols retransmission enabled by chirping and discrete Fourier transform precoding, it enhances noise suppression of linear minimum mean square error equalization. By using pairwise error probability analysis, the derived bit error rate upper bound is close to the simulated ones and…
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Taxonomy
TopicsOptical Network Technologies · Semiconductor Lasers and Optical Devices · Advanced Fiber Optic Sensors
