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A Data Pilot-Aided Temporal Convolutional Network for Channel Estimation in IEEE 802.11p Vehicle-to-Vehicle Communications

dc.contributor.authorNgorima, S.Aen.ZA
dc.contributor.authorHelberg, A. S. Jen.ZA
dc.contributor.authorDavel, M.Hen.ZA
dc.date.accessioned2025-10-21T06:27:31Zen.ZA
dc.date.issued2024en.ZA
dc.descriptionConference Contribution, Faculty of Engineering, Multilingual Speech Technologies (MUST)-- Potchefstroom Campusen.ZA
dc.description.abstractIn modern communication systems, having an accurate channel estimator is crucial. However, when there is mobility, it becomes difficult to estimate the channel and the pilot signals, which are used for channel estimation, become insufficient. In this paper, we introduce the use of Temporal Convolutional Networks (TCNs) with data pilot-aided (DPA) channel estimation and temporal averaging (TA) to estimate vehicle-to-vehicle same direction with Wall (VTV-SDWW) channels. The TCN-DPA-TA estimator showed an improvement in Bit Error Rate (BER) performance of up to 1 order of magnitude. Furthermore, the BER performance of the TCN-DPA without TA also improved by up to 0.7 magnitude compared to the best classical estimator.en.ZA
dc.description.sponsorshipAcknowledgment The authors gratefully acknowledge the financial support of this study by the Telkom CoE at NWU and NITheCS.en.ZA
dc.identifier.citationDavel, M.H. et al. 2024. A Data Pilot-Aided Temporal Convolutional Network for Channel Estimation in IEEE 802.11p Vehicle-to-Vehicle Communications. Cornell University, (2024), Pp 356-361, [https://arxiv.org/pdf/2502.03246]en.ZA
dc.identifier.urihttps://arxiv.org/pdf/2502.03246en.ZA
dc.identifier.urihttp://hdl.handle.net/10394/43714en.ZA
dc.language.isoenen.ZA
dc.publisherCornell Universityen.ZA
dc.subjectChannel Estimationen.ZA
dc.subjectDeep Learningen.ZA
dc.subjectVehicle-To-Vehicleen.ZA
dc.subjectTemporal Convolutional Networksen.ZA
dc.subjectIEEE 802.11pen.ZA
dc.subjectWireless Communicationsen.ZA
dc.titleA Data Pilot-Aided Temporal Convolutional Network for Channel Estimation in IEEE 802.11p Vehicle-to-Vehicle Communicationsen.ZA
dc.typeArticleen.ZA

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