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Lee, Jaiyong
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Programmable Chip Based High Performance MEC Router for Ultra-Low Latency and High Bandwidth Services in Distributed Computing Environment

Author(s)
Kong, SeokHwanDipjyoti, SaikiaLee, Jaiyong
Issued Date
2020-12
DOI
10.1587/transinf.2020PAL0001
URI
https://scholarworks.unist.ac.kr/handle/201301/49718
Fulltext
https://www.jstage.jst.go.jp/article/transinf/E103.D/12/E103.D_2020PAL0001/_article
Citation
IEICE TRANSACTIONS ON INFORMATION AND SYSTEMS, v.E103-D, no.12, pp.2525 - 2527
Abstract
Abstract
With the spread of smart cities through 5G and the development of IoT devices, the number of services requiring firm assurance of high capacity and ultra-low delay quality in various forms is increasing. However, continuous growth of large data makes it difficult for a centralized cloud to ensure quality of service. For this, a variety of distributed application architecture researches, such as MEC (Mobile|Mutli-access Edge Computing), are in progress. However, vendor-dependent MEC technology based on VNF (Virtual Network Function) has performance and scalability issues when deploying a variety of 5G-based services. This paper proposes PRISM-MECR, an SDN (Software Defined Network) based hardware accelerated MEC router using P4[3] programmable chip, to improve forwarding performance while minimizing load of host CPU cores in charge of forwarding among MEC technologies.
Publisher
IEICE-INST ELECTRONICS INFORMATION COMMUNICATIONS ENG
ISSN
1745-1361
Keyword (Author)
SDNMECULLVNF

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