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Experimental verification of SDN/NFV in integrated mmwave access and mesh backhaul networks

Nakamura, M. (författare)
Tokyo Institute of Technology, JPN
Nishiuchi, H. (författare)
Tokyo Institute of Technology, JPN
Nakazato, J. (författare)
Tokyo Institute of Technology, JPN
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Koslowski, K. (författare)
Fraunhofer HHI, DEU
Daube, J. (författare)
Fraunhofer HHI, DEU
Santos, Ricardo, 1990- (författare)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013)
Tran, G. K. (författare)
Tokyo Institute of Technology, JPN
Sakaguchi, K. (författare)
Tokyo Institute of Technology, JPN
visa färre...
 (creator_code:org_t)
Institute of Electronics, Information and Communication, Engineers, IEICE, 2021
2021
Engelska.
Ingår i: IEICE transactions on communications. - : Institute of Electronics, Information and Communication, Engineers, IEICE. - 0916-8516 .- 1745-1345. ; E104B:3, s. 217-228
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • In this paper, a Proof-of-Concept (PoC) architecture is constructed, and the effectiveness of mmWave overlay heterogeneous network (HetNet) with mesh backhaul utilizing route-multiplexing and Multi-access Edge Computing (MEC) utilizing prefetching algorithm is verified by measuring the throughput and the download time of real contents. The architecture can cope with the intensive mobile data traffic since data delivery utilizes multiple backhaul routes based on the mesh topology, i.e. route-multiplexing mechanism. On the other hand, MEC deploys the network edge contents requested in advance by nearby User Equipment (UE) based on pre-registered context information such as location, destination, demand application, etc. to the network edge, which is called prefetching algorithm. Therefore, mmWave access can be fully exploited even with capacity-limited backhaul networks by introducing the proposed algorithm. These technologies solve the problems in conventional mmWave HetNet to reduce mobile data traffic on backhaul networks to cloud networks. In addition, the proposed architecture is realized by introducing wireless Software Defined Network (SDN) and Network Function Virtualization (NFV). In our architecture, the network is dynamically controlled via wide-coverage microwave band links by which UE's context information is collected for optimizing the network resources and controlling network infrastructures to establish backhaul routes and MEC servers. In this paper, we develop the hardware equipment and middleware systems, and introduce these algorithms which are used as a driver of IEEE802.11ad and open source software. For 5G and beyond, the architecture integrated in mmWave backhaul, MEC and SDN/NFV will support some scenarios and use cases.

Ämnesord

NATURVETENSKAP  -- Data- och informationsvetenskap -- Datavetenskap (hsv//swe)
NATURAL SCIENCES  -- Computer and Information Sciences -- Computer Sciences (hsv//eng)

Nyckelord

5G
HetNet
MEC
Mesh backhaul
MmWave
NFV
Orchestration
PoC
Prefetching algorithm
Route-multiplexing
SDN
Testbed
Heterogeneous networks
Mesh generation
MESH networking
Middleware
Millimeter waves
Network function virtualization
Open source software
Open systems
Context information
Experimental verification
Heterogeneous Network (HetNet)
Middleware system
Mobile data traffic
Network infrastructure
Proposed architectures
5G mobile communication systems
Computer Science
Datavetenskap

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