CE-OFDM Schemes: Spectral Characterization and Optimum Performance
Date
2017
Embargo
Advisor
Coadvisor
Journal Title
Journal ISSN
Volume Title
Publisher
Springer Science+Business Medi
Language
English
Alternative Title
Abstract
Constant envelope orthogonal frequency division multiplexing (CE-OFDM)
techniques have been recently proposed to allow the use of power-efficient saturated
amplifiers, since those signals do not have the high peak-to-average ratio of OFDM signals,
but maintain most of the OFDM advantages. However, the nonlinear nature of the phase
modulation process inherent to CE-OFDM schemes gives rise to both theoretical challenges
(analytical difficulties due to the nonlinear processes involved) and practical
challenges (spectral widening and possible performance degradation due to nonlinear
distortion effects). In this work, we present accurate expressions for the average power
spectral density of CE-OFDM signals. Making use of recent results that indicate performance
gains associated to the optimum detection of nonlinearly distorted multicarrier
signals, we also investigate the optimum detection of CE-OFDM signals considering both
additive white Gaussian noise channels and frequency-selective channels with Rayleigh
fading, providing theoretical expressions for the asymptotic gains as well as the correspondent
approximate bit-error-rate results.
Keywords
Multicarrier Signals, Nonlinear Distortion, Optimum Detection, Performance Evaluation
Document Type
Journal article
Publisher Version
10.1007/s11277-017-4333-x
Dataset
Citation
Guerreiro, J., Dinis, R. & Montezuma, P. Wireless Pers Commun (2017) 96: 2965. https://doi.org/10.1007/s11277-017-4333-x
Identifiers
TID
Designation
Access Type
Open Access