Javascript must be enabled to continue!
Optimizing power amplifier efficiency through PAPR reduction in optical FBMC for VLC applications
View through CrossRef
Abstract
This paper presents a comprehensive evaluation of the proposed PTS-PSO technique for reducing the peak-to-average power ratio (PAPR) and improving bit error rate (BER) performance in optical FBMC systems with various QAM modulations. For PAPR analysis, complementary cumulative distribution function (CCDF) results are provided for 256-QAM, 128-QAM, and 64-QAM schemes. At a CCDF of 10
−3
, the proposed method consistently achieves the lowest PAPR compared to unmodified optical FBMC, clipping, SLM, and conventional PTS. The PAPR reductions are most pronounced for 64-QAM, where a 6.7 dB improvement over the baseline is observed, while gains of 4.4 dB and 4.9 dB are achieved for 256-QAM and 128-QAM, respectively. BER performance analysis for 256-QAM and 64-QAM further demonstrates the superiority of the proposed method. At a BER of 10
−3
, the PTS-PSO approach achieves substantial SNR reductions, reaching gains up to 10.8 dB compared to the baseline and maintaining notable advantages over clipping, SLM, and PTS. These results confirm that the proposed PTS-PSO scheme offers significant performance enhancements in both PAPR and BER metrics, providing a highly effective solution for improving spectral efficiency and transmission quality in optical FBMC systems.
Walter de Gruyter GmbH
Title: Optimizing power amplifier efficiency through PAPR reduction in optical FBMC for VLC applications
Description:
Abstract
This paper presents a comprehensive evaluation of the proposed PTS-PSO technique for reducing the peak-to-average power ratio (PAPR) and improving bit error rate (BER) performance in optical FBMC systems with various QAM modulations.
For PAPR analysis, complementary cumulative distribution function (CCDF) results are provided for 256-QAM, 128-QAM, and 64-QAM schemes.
At a CCDF of 10
−3
, the proposed method consistently achieves the lowest PAPR compared to unmodified optical FBMC, clipping, SLM, and conventional PTS.
The PAPR reductions are most pronounced for 64-QAM, where a 6.
7 dB improvement over the baseline is observed, while gains of 4.
4 dB and 4.
9 dB are achieved for 256-QAM and 128-QAM, respectively.
BER performance analysis for 256-QAM and 64-QAM further demonstrates the superiority of the proposed method.
At a BER of 10
−3
, the PTS-PSO approach achieves substantial SNR reductions, reaching gains up to 10.
8 dB compared to the baseline and maintaining notable advantages over clipping, SLM, and PTS.
These results confirm that the proposed PTS-PSO scheme offers significant performance enhancements in both PAPR and BER metrics, providing a highly effective solution for improving spectral efficiency and transmission quality in optical FBMC systems.
Related Results
Performance enhancement and PAPR reduction for MIMO based QAM-FBMC systems
Performance enhancement and PAPR reduction for MIMO based QAM-FBMC systems
Filter Bank Multi-Carrier (FBMC) is attracting significant interest as a multi-carrier modulation (MCM) approach for future communication systems. It offers numerous advantages in ...
Optical-OFDM VLC System: Peak-to-Average Power Ratio Enhancement and Performance Evaluation
Optical-OFDM VLC System: Peak-to-Average Power Ratio Enhancement and Performance Evaluation
Visible Light Communication (VLC) systems are favoured for numerous applications due to their extensive bandwidth and resilience to electromagnetic interference. This study delinea...
Throughput improvement in ACO-OFDM-based VLC systems using noise cancellation and precoding techniques
Throughput improvement in ACO-OFDM-based VLC systems using noise cancellation and precoding techniques
AbstractOne of the primary challenges faced by visible light communication (VLC) systems employing optical orthogonal frequency division multiplexing is the peak-to-average power r...
Experimental Study of a Transmission System Based on FBMC/OQAM
Experimental Study of a Transmission System Based on FBMC/OQAM
Introduction. This paper investigates a transmission system based on FBMC/OQAM multiplexing. This system is characterized by a high spectral efficiency, thereby attracting interest...
A dynamic multicast routing protocol for visible light communication networks
A dynamic multicast routing protocol for visible light communication networks
Due to the current challenges of wireless communications, optical wireless communications, like visible light communication (VLC), have become very popular in the last decade for l...
Etude de liaisons SISO, SIMO, MISO et MIMO à base de formes d'ondes FBMC-OQAM et de récepteurs Widely Linear
Etude de liaisons SISO, SIMO, MISO et MIMO à base de formes d'ondes FBMC-OQAM et de récepteurs Widely Linear
Au cours des vingt dernières années, le débit croissant des communications radiofréquences a imposé la mise en œuvre de techniques d'égalisation de plus en plus complexes. Pour rés...
Improved PAPR Reduction Technique in 5G Systems: Addressing Limitations and Challenges with Computational Techniques
Improved PAPR Reduction Technique in 5G Systems: Addressing Limitations and Challenges with Computational Techniques
A high peak-to-average power ratio (PAPR) in the Orthogonal Frequency Division Multiplexing (OFDM) system reduces the efficiency of the power amplifier (PA) at the transmitter. Thi...
PAPR Reduction of FBMC Signals Based on Uniform and Linear PDF Companding Schemes
PAPR Reduction of FBMC Signals Based on Uniform and Linear PDF Companding Schemes
Abstract
In this paper, two new companders are designed to reduce the ratio of peak to average power (PAPR) experienced by filter bank multicarrier (FBMC) signals. ...

