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dc.contributor.author | NAURYZBAYEV, GALYMZHAN | |
dc.contributor.author | RABIE, KHALED M. | |
dc.contributor.author | ABDALLAH, MOHAMED | |
dc.contributor.author | ADEBISI, BAMIDELE | |
dc.date.accessioned | 2024-12-11T12:35:26Z | |
dc.date.available | 2024-12-11T12:35:26Z | |
dc.date.issued | 2018 | |
dc.identifier.issn | 2169-3536 | |
dc.identifier.other | doi10.1109/ACCESS.2018.2850369 | |
dc.identifier.uri | http://rep.enu.kz/handle/enu/20116 | |
dc.description.abstract | In this paper, a two-hop amplify-and-forward relaying system, where an energy-constrained relay node entirely depends on the energy scavenged from the source signal, is investigated. This paper analyzes the performance of the energy-harvesting (EH) protocols, namely, ideal relaying receiver, powersplitting relaying (PSR), and time-switching relaying (TSR), over independent but not identically distributed (i.n.i.d.) α-µ fading channels in terms of the ergodic capacity and ergodic outage probability (OP). We derive exact unified and closed-form analytical expressions for the performance metrics with the aforementioned protocols over i.n.i.d. α-µ channels. Three fading scenarios, such as Weibull, Nakagami-m, and Rayleigh channels, are investigated. Provided simulation and numerical results validate our analysis. It is demonstrated that the optimal EH time-switching and power-splitting factors of the corresponding TSR and PSR protocols are critical in achieving the best system performance. Finally, we analyzed the impact of the fading parameters α and µ on the achievable ergodic OP. | ru |
dc.language.iso | en | ru |
dc.publisher | IEEE Access | ru |
dc.subject | Wireless power transfer (WPT) | ru |
dc.subject | α-µ fading | ru |
dc.subject | amplify-and-forward (AF) relaying | ru |
dc.subject | ergodic capacity (EC) | ru |
dc.subject | energy-harvesting (EH) | ru |
dc.subject | outage probability (OP) | ru |
dc.title | On the performance analysis of WPT-Based Dual-Hop AF relaying networks in α-μ Fading | ru |
dc.type | Article | ru |