Mixed Coded RF/FSO EH-based Communication System subject to Multiuser interference and Residual hardware impairments
This study investigated the end-to-end performance of a coded dual-hop RF/FSO wireless communication system that operates across both Nakagami- m fading and Málaga- M atmospheric turbulence channels and are supplied with an amplify-and-forward semi-blind energy harvesting fixed-gain relay. Interesti...
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Published in | IEEE access Vol. 11; p. 1 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | This study investigated the end-to-end performance of a coded dual-hop RF/FSO wireless communication system that operates across both Nakagami- m fading and Málaga- M atmospheric turbulence channels and are supplied with an amplify-and-forward semi-blind energy harvesting fixed-gain relay. Interestingly, an average bit error probability is obtained in terms of the Fox's H -function by taking into consideration multiple interferers in the first hop and residual hardware impairments at the relay and destination receivers. Finally, the study explores how the performance of the system under concern is impacted by convolutional self-orthogonal codes. The obtained results showed the suitability of the coding/decoding technique for the energy harvesting aided coded dual-hop communication system, which calls for high performance and minimal computing complexity. |
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AbstractList | This study investigated the end-to-end performance of a coded dual-hop RF/FSO wireless communication system that operates across both Nakagami- m fading and Málaga- M atmospheric turbulence channels and are supplied with an amplify-and-forward semi-blind energy harvesting fixed-gain relay. Interestingly, an average bit error probability is obtained in terms of the Fox's H -function by taking into consideration multiple interferers in the first hop and residual hardware impairments at the relay and destination receivers. Finally, the study explores how the performance of the system under concern is impacted by convolutional self-orthogonal codes. The obtained results showed the suitability of the coding/decoding technique for the energy harvesting aided coded dual-hop communication system, which calls for high performance and minimal computing complexity. To increase spectral and power efficiencies, network coverage, and reduce outage probability, this study investigated the end-to-end performance of a coded dual-hop RF/FSO wireless communication system that operates across both Nakagami-[Formula Omitted] fading and Malaga-[Formula Omitted] atmospheric turbulence channels and is supplied with an amplify-and-forward semi-blind energy harvesting fixed-gain relay in order to increase spectral and power efficiencies, network coverage, and outage probability. We examine the use of CSOC codes at the source and a majority logic decoding method (MLGD) at the destination. Interestingly, our goal is to obtain an average bit error probability analytically by accounting for various interferers in the first hop as well as residual hardware impairments at the relay and destination receivers. As a consequence, the decoding method used in this investigation was shown to be adequate for the SWIPT/TS-assisted RF/FSO-coded AF cooperative communication system, requiring excellent accuracy while having a low computational cost. To increase spectral and power efficiencies, network coverage, and reduce outage probability, this study investigated the end-to-end performance of a coded dual-hop RF/FSO wireless communication system that operates across both Nakagami- <tex-math notation="LaTeX">$m$ </tex-math> fading and Malaga- <tex-math notation="LaTeX">$\mathcal {M}$ </tex-math> atmospheric turbulence channels and is supplied with an amplify-and-forward semi-blind energy harvesting fixed-gain relay in order to increase spectral and power efficiencies, network coverage, and outage probability. We examine the use of CSOC codes at the source and a majority logic decoding method (MLGD) at the destination. Interestingly, our goal is to obtain an average bit error probability analytically by accounting for various interferers in the first hop as well as residual hardware impairments at the relay and destination receivers. As a consequence, the decoding method used in this investigation was shown to be adequate for the SWIPT/TS-assisted RF/FSO-coded AF cooperative communication system, requiring excellent accuracy while having a low computational cost. |
Author | Labghough, Souad Qaraqe, Khalid A. Bouanani, Faissal El Ayoub, Fouad Belkasmi, Mostafa |
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SubjectTerms | 5G mobile communication Atmospheric turbulence Average Bit Error Probability convolutional self orthogonal codes Decoding Energy Harvesting Error analysis Hardware Interference majority logic decoding Maximal-Ratio Combining Mixed RF/FSO system Málaga-<italic xmlns:ali="http://www.niso.org/schemas/ali/1.0/" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">M channels Málaga-M channels Nakagami-<italic xmlns:ali="http://www.niso.org/schemas/ali/1.0/" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">m fading channels Optical wavelength conversion Outages Radio frequency Relay Relays Residual Hardware Impairments Signal to noise ratio Wireless communication Wireless communication systems |
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Title | Mixed Coded RF/FSO EH-based Communication System subject to Multiuser interference and Residual hardware impairments |
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