A Novel Hybrid Precoding-Companding Technique for Peak-to-Average Power Ratio Reduction in 5G and beyond

Author:

Mounir MohamedORCID,El_Mashade Mohamed B.ORCID,Berra SalahORCID,Gaba Gurjot SinghORCID,Masud MehediORCID

Abstract

Several high-speed wireless systems use Orthogonal Frequency Division Multiplexing (OFDM) due to its advantages. 5G has adopted OFDM and is expected to be considered beyond 5G (B5G). Meanwhile, OFDM has a high Peak-to-Average Power Ratio (PAPR) problem. Hybridization between two PAPR reduction techniques gains the two techniques’ advantages. Hybrid precoding-companding techniques are attractive as they require small computational complexity to achieve high PAPR reduction gain. Many precoding-companding techniques were introduced to increasing the PAPR reduction gain. However, reducing Bit Error Rate (BER) and out-of-band (OOB) radiation are more significant than increasing PAPR reduction gain. This paper proposes a new precoding-companding technique to better reduce the BER and OOB radiation than previous precoding-companding techniques. Results showed that the proposed technique outperforms all previous precoding-companding techniques in BER enhancement and OOB radiation reduction. The proposed technique reduces the Error Vector Magnitude (EVM) by 15 dB compared with 10 dB for the best previous technique. Additionally, the proposed technique increases high power amplifier efficiency (HPA) by 11.4%, while the best previous technique increased HPA efficiency by 9.8%. Moreover, our proposal achieves PAPR reduction gain better than the most known powerful PAPR reduction technique with a 99% reduction in required computational complexity.

Funder

Taif University

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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1. A Low Complexity Iterative SC-FDE Receiver for Massive MIMO Systems;IEEE Transactions on Vehicular Technology;2024-07

2. A complexity efficient PAPR reduction scheme for FBMC-based VLC systems;Opto-Electronics Review;2024-01-03

3. PAPR reduction techniques in MIMO-OFDM communication systems;AIP Conference Proceedings;2024

4. A Hybrid Clipping and SLM Technique for PAPR Reduction in OFDM Systems;Communications in Computer and Information Science;2024

5. A New Hybrid Precoding-Partial Transmit Sequence Method for PAPR Reduction in Multicarrier Wireless Communication Systems;Proceedings of the National Academy of Sciences, India Section A: Physical Sciences;2023-12-18

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