학술논문

Performance Analysis of Power-Constrained DFT-Precoded ACO-OFDM Using Weighted Bussgang Theorem
Document Type
Periodical
Source
IEEE Communications Letters IEEE Commun. Lett. Communications Letters, IEEE. 28(2):372-376 Feb, 2024
Subject
Communication, Networking and Broadcast Technologies
OFDM
Discrete Fourier transforms
Precoding
Peak to average power ratio
Symbols
Optical distortion
Distortion
PAPR
DFT precoding
optical wireless communications
power constraint
Language
ISSN
1089-7798
1558-2558
2373-7891
Abstract
The application of DFT precoding in mitigating peak-to-average power ratio issues in asymmetrically clipped orthogonal frequency division multiplexing (ACO-OFDM) under power constraints is well-established. However, analytical solutions for assessing the communication performance of power-constrained ACO-OFDM remain a challenge. This is primarily due to the non-Gaussian distribution of the DFT-precoded ACO-OFDM signal, rendering the classical Bussgang theorem ineffective for modeling clipping noise. In our study, we introduce the weighted Bussgang theorem as an alternative method to evaluate the communication performance of the DFT-precoded ACO-OFDM system. Our numerical results demonstrate the effectiveness of this approach in analyzing SNR and BER performance.