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MEC/Cloud Orchestrator to Facilitate Private/Local Beyond 5G with MEC and Proof-of-Concept Implementation.
Nakazato, Jin; Li, Zongdian; Maruta, Kazuki; Kubota, Keiichi; Yu, Tao; Tran, Gia Khanh; Sakaguchi, Kei; Masuko, Soh.
  • Nakazato J; Tokyo Institute of Technology, Tokyo 152-8552, Japan.
  • Li Z; Tokyo Institute of Technology, Tokyo 152-8552, Japan.
  • Maruta K; Tokyo Institute of Technology, Tokyo 152-8552, Japan.
  • Kubota K; Tokyo Institute of Technology, Tokyo 152-8552, Japan.
  • Yu T; Tokyo Institute of Technology, Tokyo 152-8552, Japan.
  • Tran GK; Tokyo Institute of Technology, Tokyo 152-8552, Japan.
  • Sakaguchi K; Tokyo Institute of Technology, Tokyo 152-8552, Japan.
  • Masuko S; Rakuten Mobile, Inc., Tokyo 151-0051, Japan.
Sensors (Basel) ; 22(14)2022 Jul 08.
Article en En | MEDLINE | ID: mdl-35890825
ABSTRACT
The emergence of 5G-IoT opens up unprecedented connectivity possibilities for new service use cases and players. Multi-access edge computing (MEC) is a crucial technology and enabler for Beyond 5G, supporting next-generation communications with service guarantees (e.g., ultra-low latency, high security) from an end-to-end (E2E) perspective. On the other hand, one notable advance is the platform that supports virtualization from RAN to applications. Deploying Radio Access Networks (RAN) and MEC, including third-party applications on virtualization platforms, and renting other equipment from legacy telecom operators will make it easier for new telecom operators, called Private/Local Telecom Operators, to join the ecosystem. Our preliminary studies have discussed the ecosystem for private and local telecom operators regarding business potential and revenue and provided numerical results. What remains is how Private/Local Telecom Operators can manage and deploy their MEC applications. In this paper, we designed the architecture for fully virtualized MEC 5G cellular networks with local use cases (e.g., stadiums, campuses). We propose an MEC/Cloud Orchestrator implementation for intelligent deployment selection. In addition, we provide implementation schemes in several cases held by either existing cloud owners or private and local operators. In order to verify the proposal's feasibility, we designed the system level in E2E and constructed a Beyond 5G testbed at the Ookayama Campus of the Tokyo Institute of Technology. Through proof-of-concept in the outdoor field, the proposed system's feasibility is verified by E2E performance evaluation. The verification results prove that the proposed approach can reduce latency and provide a more stable throughput than conventional cloud services.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Ecosistema / Nube Computacional Idioma: En Año: 2022 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Ecosistema / Nube Computacional Idioma: En Año: 2022 Tipo del documento: Article