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Industrial Networks and Intelligent Systems. 6th EAI International Conference, INISCOM 2020, Hanoi, Vietnam, August 27–28, 2020, Proceedings

Research Article

Downlink Resource Sharing and Multi-tier Caching Selection Maximized Multicast Video Delivery Capacity in 5G Ultra-Dense Networks

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  • @INPROCEEDINGS{10.1007/978-3-030-63083-6_2,
        author={Thanh-Minh Phan and Nguyen-Son Vo and Minh-Phung Bui and Quang-Nhat Tran and Hien M. Nguyen and Antonino Masaracchia},
        title={Downlink Resource Sharing and Multi-tier Caching Selection Maximized Multicast Video Delivery Capacity in 5G Ultra-Dense Networks},
        proceedings={Industrial Networks and Intelligent Systems. 6th EAI International Conference, INISCOM 2020, Hanoi, Vietnam, August 27--28, 2020, Proceedings},
        proceedings_a={INISCOM},
        year={2020},
        month={11},
        keywords={5G ultra-dense networks Caching and clustering D2D multicast communications Resource sharing Video applications and services},
        doi={10.1007/978-3-030-63083-6_2}
    }
    
  • Thanh-Minh Phan
    Nguyen-Son Vo
    Minh-Phung Bui
    Quang-Nhat Tran
    Hien M. Nguyen
    Antonino Masaracchia
    Year: 2020
    Downlink Resource Sharing and Multi-tier Caching Selection Maximized Multicast Video Delivery Capacity in 5G Ultra-Dense Networks
    INISCOM
    Springer
    DOI: 10.1007/978-3-030-63083-6_2
Thanh-Minh Phan1, Nguyen-Son Vo2,*, Minh-Phung Bui3, Quang-Nhat Tran3, Hien M. Nguyen4, Antonino Masaracchia5
  • 1: Ho Chi Minh City University of Transport
  • 2: Institute of Fundamental and Applied Sciences, Duy Tan University
  • 3: Van Lang University
  • 4: Faculty of Electrical-Electronic Engineering, Duy Tan University
  • 5: Queen’s University Belfast
*Contact email: vonguyenson@duytan.edu.vn

Abstract

In this paper, we propose a downlink resource sharing and multi-tier caching selection (DRS-MCS) solution for video streaming applications and services (VASs) in 5G ultra-dense networks (UDNs). The DRS-MCS allows mobile users (MUs) to experience the VASs by multicasting from three-tier caching placements, i.e., macro base station (MBS), femtocell base stations (FBSs), and mobile devices. To do so, the MUs are categorized into three types including 1) sharing users (SUs) that own downlink resources being shared for device-to-device (D2D) communications, 2) caching helpers (CHs) that cache the requested videos for multicasting over D2D communications, and 3) requesting users (RUs) that request the videos. The CHs and the RUs are grouped into different clusters, each cluster has a number of CHs and RUs in close vicinity for D2D multicast communications. We then formulate the DRS-MCS optimization problem. By solving the problem, the DRS-MCS solution can select not only the best pairs of SUs and CHs for D2D multicast communications but also the best caching placements for multicasting in each cluster, so as to maximize the total video capacity delivered to the RUs. Simulation results are shown to demonstrate the benefits of the proposed DRS-MCS solution compared to other conventional multicasting schemes.

Keywords
5G ultra-dense networks Caching and clustering D2D multicast communications Resource sharing Video applications and services
Published
2020-11-21
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-030-63083-6_2
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