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Continuous-phase modulation for DFT-spread localized OFDM SCOPUS

Title
Continuous-phase modulation for DFT-spread localized OFDM
Authors
CHOI, JEONG HOONCHO, JOON HOLEHNERT, JAMES S.
Date Issued
2021-06
Publisher
IEEE
Abstract
Massive machine-type communications to support a large number of low-cost, low-power, and/or low-rate radio-frequency transceivers such as Internet-of-Things (IoT) devices is a major usage scenario of the 5G mobile communication system. To save cost and power, highly nonlinear power amplifiers (PAs) are expected to be used in the devices. However, the envelope fluctuation of the input of a PA may make the output suffer from severe nonlinear distortion. In this paper, a continuous-phase modulation is proposed for discrete-Fourier transform (DFT)-spread localized orthogonal frequency-division multiplexing (OFDM) of π/2-BPSK symbols. In particular, the combination of a spectrum shaping vector and an extra rotation angle is proposed, which enables the use of a receiver that is fully compatible with the current standard. It is shown that the proposed design significantly outperforms the conventional designs in terms of effective signal-to-distortion ratio and error vector magnitude at the cost of a negligible increase in out-of-band emission.
URI
https://oasis.postech.ac.kr/handle/2014.oak/110327
DOI
10.1109/OJCOMS.2021.3089690
ISSN
2644-125X
Article Type
Article
Citation
IEEE Open Journal of the Communications Society, vol. 2, page. 1405 - 1418, 2021-06
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조준호CHO, JOON HO
Dept of Electrical Enginrg
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