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Infrastructure-Assisted on-Driving Experience Sharing for Millimeter-Wave Connected Vehicles
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dc.contributor.authorJung, Soyi-
dc.contributor.authorKim, Joongheon-
dc.contributor.authorLevorato, Marco-
dc.contributor.authorCordeiro, Carlos-
dc.contributor.authorKim, Jae Hyun-
dc.date.issued2021-08-01-
dc.identifier.urihttps://dspace.ajou.ac.kr/dev/handle/2018.oak/32161-
dc.description.abstractThis paper proposes on-driving experience sharing algorithms at junctions in infrastructure-assisted vehicles-to-everything networks. For the purpose, a millimeter-wave (mmWave) technology is used because it provides multi-Gbps data rates which is helpful for handling users' short stay times at junctions and spatial reuse due to high beam directionality which is helpful for interference-avoidance among densely deployed vehicles at junctions. To realize on-driving experience sharing, the proposed algorithms focus on joint resource allocation and scheduling for 3GPP-compliant multiple unicast vehicle-to-vehicle (V2V) communications where the vehicles are group leaders (GLs) in 3GPP Mode 4(d). The resource allocation stands for the roadside unit (RSU) allocation to scheduled V2V GL links where RSU is essentially required for overcoming blockage by establishing two-hop relaying. Because vehicles stay for short times at junctions, this paper designs two algorithms without or with delay considerations. Without delay considerations, the joint optimization of RSU allocation and scheduling was originally formulated as mixed 0-1 non-convex optimization. However our proposed algorithm reformulates the problem into mixed 0-1 convex optimization, which is computationally easier to solve. With delay considerations, our proposed algorithm dynamically controls video contents frame rates for time-average on-driving video sharing quality maximization subject to delay constraints, inspired by Lyapunov optimization. Extensive simulation results demonstrate that our algorithms can significantly outperform in a variety of scenarios. Furthermore, we conduct the cost analysis for the proposed algorithms in terms of capital expenditure (CAPEX) and operating expenditure (OPEX).-
dc.description.sponsorshipManuscript received October 1, 2020; revised March 21, 2021; accepted June 23, 2021. Date of publication July 7, 2021; date of current version August 13, 2021. This work was supported in part by the National Research Foundation of Korea (NRF) grant funded by the Korea government (MSIT) under Grant 2021R1A4A1030775, and in part by the MSIT (Ministry of Science and ICT), Korea, under the ITRC (Information Technology Research Center) support Program (IITP-2021-2017-0-01637) supervised by the IITP (Institute for Information & Communications Technology Planning & Evaluation). The review of this article was coordinated by Dr. Fan Bai. (Corresponding authors: Joongheon Kim; Jae-Hyun Kim.) Soyi Jung and Joongheon Kim are with the School of Electrical Engineering, Korea University, Seoul 02841, South Korea (e-mail: jungsoyi@korea.ac.kr; joongheon@korea.ac.kr).-
dc.language.isoeng-
dc.publisherInstitute of Electrical and Electronics Engineers Inc.-
dc.subject.meshAllocation and scheduling-
dc.subject.meshCapital expenditures-
dc.subject.meshDriving experiences-
dc.subject.meshExtensive simulations-
dc.subject.meshInterference avoidance-
dc.subject.meshJoint resource allocations-
dc.subject.meshMillimeter waves (mmwave)-
dc.subject.meshNonconvex optimization-
dc.titleInfrastructure-Assisted on-Driving Experience Sharing for Millimeter-Wave Connected Vehicles-
dc.typeArticle-
dc.citation.endPage7321-
dc.citation.startPage7307-
dc.citation.titleIEEE Transactions on Vehicular Technology-
dc.citation.volume70-
dc.identifier.bibliographicCitationIEEE Transactions on Vehicular Technology, Vol.70, pp.7307-7321-
dc.identifier.doi10.1109/tvt.2021.3094806-
dc.identifier.scopusid2-s2.0-85111226280-
dc.identifier.urlhttp://ieeexplore.ieee.org/xpl/tocresult.jsp?isnumber=8039128&punumber=25-
dc.subject.keywordCAPEX-
dc.subject.keywordmmWave spectrum-
dc.subject.keywordOPEX-
dc.subject.keywordRSU allocation-
dc.subject.keywordscheduling-
dc.subject.keywordV2V-
dc.description.isoafalse-
dc.subject.subareaAutomotive Engineering-
dc.subject.subareaAerospace Engineering-
dc.subject.subareaComputer Networks and Communications-
dc.subject.subareaElectrical and Electronic Engineering-
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