Phase Noise Resilient Three-Level Continuous-Phase Modulation for DFT-Spread OFDM

10/12/2021
by   Markku Renfors, et al.
0

A novel OFDM-based waveform with low peak-to-average power ratio (PAPR) and high robustness against phase noise (PN) is presented. It follows the discrete Fourier transform spread orthogonal frequency division multiplexing (DFT-s-OFDM) signal model. 3MSK, is inspired by continuous-phase frequency shift keying (FSK), but it uses three frequencies in the baseband model – specifically, 0 and ± f_symbol/4, where f_symbol is the symbol rate – which effectively constrains the phase transitions between consecutive symbols to 0 and ±π/2 rad. Motivated by the phase controlled model of modulation, different degrees of phase continuity can be achieved, while supporting receiver processing with low complexity. The signal characteristics are improved by generating an initial time-domain nearly constant envelope signal at higher than the symbol rate. This helps to reach smooth phase transitions between 3MSK symbols. Also the possibility of using excess bandwidth is investigated by transmitting additional non-zero subcarriers outside active subcarriers of the basic DFT-s-OFDM model, which provides the capability to greatly reduce the PAPR. Due to the fact that the information is encoded in the phase transitions, a receiver model that tracks the phase variations without needing reference signals is developed. To this end, it is shown that this new modulation is well-suited for non-coherent receivers, even under strong phase noise (PN) conditions, thus allowing to reduce the overhead of reference signals. Evaluations of this physical-layer modulation and waveform scheme are performed in terms of transmitter metrics such as PAPR, OOB emissions and achievable output power after the power amplifier (PA). Finally, coded radio link evaluations are also shown and provided, demonstrating that 3MSK has a similar BER performance as that of traditional QPSK.

READ FULL TEXT

page 4

page 6

page 7

page 8

page 10

page 11

page 12

page 13

research
10/03/2019

Low Complexity LMMSE Receiver for OTFS

Orthogonal time frequency space modulation is a two dimensional (2D) del...
research
06/25/2023

Fine-grained Modulation for Zigbee Codeword Translation

In Zigbee backscatter systems, tags piggyback information by adding phas...
research
12/09/2018

How to Increase the Achievable Information Rate by Per-Channel Dispersion Compensation

Deploying periodic inline chromatic dispersion compensation enables redu...
research
01/06/2020

On the Phase Sequences and Permutation Functions in the SLM Scheme for OFDM-IM Systems

In orthogonal frequency division multiplexing with index modulation (OFD...
research
01/28/2018

A Comparison of SC-FDE and UW DFT-s-OFDM for Millimeter Wave Communications

In this study, we compare the single-carrier (SC) waveform adopted in IE...
research
02/09/2021

Frequency-Shift Chirp Spread Spectrum Communications with Index Modulation

This paper introduces a novel frequency-shift chirp spread spectrum (FSC...

Please sign up or login with your details

Forgot password? Click here to reset