Augmenting SEFDM Performance in High-Doppler Channels

Fuente: arXiv
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Autori principali: Shamsi, Mahdi, Marvasti, Farokh
Natura: Preprint
Pubblicazione: 2023
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author Shamsi, Mahdi
Marvasti, Farokh
author_facet Shamsi, Mahdi
Marvasti, Farokh
contents This paper presents an innovative approach leveraging Spectrally Efficient Frequency Division Multiplexing (SEFDM) with enhancements, including Frequency Domain Cyclic Prefix (FDCP) and Modified Non-Linear (MNL) acceleration, to address challenges arising from delay and Doppler shift in mobile communication channels. Our methodology demonstrates superior performance and enhanced spectral efficiency while incurring minimal computational overhead. We conduct a rigorous evaluation of the SEFDM system model, examining the impact of the MNL acceleration on SEFDM detection, and assessing the effectiveness of FDCP in mitigating Doppler shift effects. Bit Error Rate (BER) results obtained through Regularized Sphere Decoding in diverse simulation scenarios affirm the capability of our proposed solution to effectively manage challenges, ensuring robust and high-quality connectivity in mobile communication networks.
format Preprint
id arxiv_https___arxiv_org_abs_2309_11774
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Augmenting SEFDM Performance in High-Doppler Channels
Shamsi, Mahdi
Marvasti, Farokh
Signal Processing
This paper presents an innovative approach leveraging Spectrally Efficient Frequency Division Multiplexing (SEFDM) with enhancements, including Frequency Domain Cyclic Prefix (FDCP) and Modified Non-Linear (MNL) acceleration, to address challenges arising from delay and Doppler shift in mobile communication channels. Our methodology demonstrates superior performance and enhanced spectral efficiency while incurring minimal computational overhead. We conduct a rigorous evaluation of the SEFDM system model, examining the impact of the MNL acceleration on SEFDM detection, and assessing the effectiveness of FDCP in mitigating Doppler shift effects. Bit Error Rate (BER) results obtained through Regularized Sphere Decoding in diverse simulation scenarios affirm the capability of our proposed solution to effectively manage challenges, ensuring robust and high-quality connectivity in mobile communication networks.
title Augmenting SEFDM Performance in High-Doppler Channels
topic Signal Processing
url https://arxiv.org/abs/2309.11774