Performance analysis of multiple-input multiple-output orthogonal frequency division multiplexing system using arithmetic optimization algorithm

•Novel RDWT-AOA integration for optimizing interference mitigation and improving performance.•82.95 % lower error rates and 39.88 % higher data rates compared to current methods.•Enhanced spectral efficiency for UHDR transmission in 5 G MIMOOFDM systems.•RDWT resolves down sampling issues, improving...

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Published inComputer standards and interfaces Vol. 92; p. 103934
Main Authors R, Deepa, R, Karthick, Velusamy, Jayaraj, R, Senthilkumar
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.03.2025
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ISSN0920-5489
DOI10.1016/j.csi.2024.103934

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Abstract •Novel RDWT-AOA integration for optimizing interference mitigation and improving performance.•82.95 % lower error rates and 39.88 % higher data rates compared to current methods.•Enhanced spectral efficiency for UHDR transmission in 5 G MIMOOFDM systems.•RDWT resolves down sampling issues, improving bandwidth and orthogonality.•AOA optimizes ICI cancellation, further boosting system efficiency. This research aims to optimize the interference mitigation and improve system performance metrics, such as bit error rates, inter-carrier interference (ICI), and inter-symbol interference (ISI), by integrating the Redundant Discrete Wavelet Transform (RDWT) with the Arithmetic Optimization Algorithm (AOA). This will increase the spectral efficiency of MIMOOFDM systems for ultra-high data rate (UHDR) transmission in 5 G networks. The most important contribution of this study is the innovative combination of RDWT and AOA, which effectively addresses the down sampling issues in DWT-OFDM systems and significantly improves both error rates and data rates in high-speed wireless communication. Fifth-generation wireless networks require transmission at ultra-high data rates, which necessitates reducing ISI and ICI. Multiple-input multiple-output orthogonal frequency division multiplexing (MIMOOFDM) is employed to achieve the UHDR. The bandwidth and orthogonality of DWT-OFDM (discrete wavelet transform-based OFDM) are increased; however system performance is degraded due to down sampling. The redundant discrete wavelet transform (RDWT) is proposed for eliminating down sampling complexities. Simulation results demonstrate that RDWT effectively lowers bit error rates, ICI, and ISI by increasing the carrier-to-interference power ratio (CIR). The Arithmetic Optimization Algorithm is used to optimize ICI cancellation weights, further enhancing spectrum efficiency. The proposed method is executed in MATLAB and achieves notable performance gains: up to 82.95 % lower error rates and 39.88 % higher data rates compared to the existing methods. The integration of RDWT with AOA represents a significant advancement in enhancing the spectral efficiency of MIMOOFDM systems for UHDR transmission in 5 G networks. The proposed method not only enhances system performance but also lays a foundation for future developments in high-speed wireless communication by addressing down sampling issues and optimizing interference mitigation.
AbstractList •Novel RDWT-AOA integration for optimizing interference mitigation and improving performance.•82.95 % lower error rates and 39.88 % higher data rates compared to current methods.•Enhanced spectral efficiency for UHDR transmission in 5 G MIMOOFDM systems.•RDWT resolves down sampling issues, improving bandwidth and orthogonality.•AOA optimizes ICI cancellation, further boosting system efficiency. This research aims to optimize the interference mitigation and improve system performance metrics, such as bit error rates, inter-carrier interference (ICI), and inter-symbol interference (ISI), by integrating the Redundant Discrete Wavelet Transform (RDWT) with the Arithmetic Optimization Algorithm (AOA). This will increase the spectral efficiency of MIMOOFDM systems for ultra-high data rate (UHDR) transmission in 5 G networks. The most important contribution of this study is the innovative combination of RDWT and AOA, which effectively addresses the down sampling issues in DWT-OFDM systems and significantly improves both error rates and data rates in high-speed wireless communication. Fifth-generation wireless networks require transmission at ultra-high data rates, which necessitates reducing ISI and ICI. Multiple-input multiple-output orthogonal frequency division multiplexing (MIMOOFDM) is employed to achieve the UHDR. The bandwidth and orthogonality of DWT-OFDM (discrete wavelet transform-based OFDM) are increased; however system performance is degraded due to down sampling. The redundant discrete wavelet transform (RDWT) is proposed for eliminating down sampling complexities. Simulation results demonstrate that RDWT effectively lowers bit error rates, ICI, and ISI by increasing the carrier-to-interference power ratio (CIR). The Arithmetic Optimization Algorithm is used to optimize ICI cancellation weights, further enhancing spectrum efficiency. The proposed method is executed in MATLAB and achieves notable performance gains: up to 82.95 % lower error rates and 39.88 % higher data rates compared to the existing methods. The integration of RDWT with AOA represents a significant advancement in enhancing the spectral efficiency of MIMOOFDM systems for UHDR transmission in 5 G networks. The proposed method not only enhances system performance but also lays a foundation for future developments in high-speed wireless communication by addressing down sampling issues and optimizing interference mitigation.
ArticleNumber 103934
Author R, Karthick
R, Deepa
R, Senthilkumar
Velusamy, Jayaraj
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Keywords Redundant discrete wavelet transform
Arithmetic optimization algorithm
Discrete wavelet transform
Enhanced spectral efficiency
Language English
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Snippet •Novel RDWT-AOA integration for optimizing interference mitigation and improving performance.•82.95 % lower error rates and 39.88 % higher data rates compared...
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SubjectTerms Arithmetic optimization algorithm
Discrete wavelet transform
Enhanced spectral efficiency
Redundant discrete wavelet transform
Title Performance analysis of multiple-input multiple-output orthogonal frequency division multiplexing system using arithmetic optimization algorithm
URI https://dx.doi.org/10.1016/j.csi.2024.103934
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