5g
Factories of the Future
Media & Entertainment
Smart Cities
Smart Energy
Smart Ports
SME Opportunities
Societal Impacts
Technology Development
Telecoms Providers
5G CAM
5G Automotive
5G CAM KPIs
5G CAM Standardisation
5G Corridors
5G Multimodal Connectivity
5G Transport Network
Artificial Intelligence & Machine Learning
Artificial Intelligence & Machine Learning in big data
Artificial Intelligence & Machine Learning technologies
Big data
Big data algorithms
Big data analytics
Collaborative Classification and Models
Business Models, Process Improvement, Contract Management, KPIs and Benchmarking Indexes
Collaboration Risk and Value Sharing
Collaborative Planning and Synchromodality
Customs & Regulatory Compliance
Environmental Performance Management
Logistics Optimisation
Stock Optimisation
Supply Chain Corrective and Preventive Actions (CAPA)
Supply Chain Financing
Supply Chain Visibility
Common Information Objects
Booking
Customs Declarations
Transport Service Description
Transport Status
Waybills
Computing and Processing
Big Data Management and Analytics
Cloud
Edge
Fog
Knowledge Graphs
Machine Learning
MIST
Stream Processing
Connectivity
Architecture
Blockchain
Connectivity Interfaces
Technologies (Bluetooth, Ethernet, Wifi)
Data Management, Simulation and Dashboards
Dashboards
Data Fusion
Data Governance, Integrity, Quality Management and Harmonization
Event Handling
Open Data
Simulation
Statistics and Key Performance Indicators (KPIs)
Data market
Data ecosystem
Data marketplace
Data Platform
Data Providers
Devices
IoT Controllers
IoT Gateways
IoT Sensors
Tracking Sensors
Digitisation Frameworks
Control Towers
Data Pipelines
e-Freight
e-Maritime
National Single Windows
Port Community Systems
Federation
Data Federation
Platform Federation
Industrial IoT Sectors
Rail Sector Active Predictive Maintenance
Interoperability
Data interoperability
Data interoperability mechanisms
Interoperability solutions
Platform interoperability
IoT Secuirty, Privacy and Safety Systems
PKI Technology
Privacy-preservation
Data privacy preserving technologies
Privacy preserving technologies
Project Results
5G-SOLUTIONS Deliverables
5G-SOLUTIONS Publications
CHARIOT Capacity Building and Trainings
CHARIOT Deliverables
CHARIOT Publications
SELIS Deliverables
SELIS Publications and Press Releases
Project Results - 5g Routes
5G-ROUTES Deliverables
5G-ROUTES Innovation
5G-ROUTES Publications
Project Results - TRUSTS
TRUSTS Deliverable
TRUSTS Publications
Safety, Security and Privacy Systems
Access Management
Coordinated Border Management
Information Security
International Organisations
Risk Assessment and Management
Risk Management
Safety and Security Assessment
Source Code Analysis
Sectors and Stakeholders
Airports and Air Transport
Banks, investors and other funding providers
Custom Authorities
Facilities, Warehouses
Freight Forwarders
Inland Waterways
Multimodal Operators
Ports and Terminals
Railway
Retailers
Road Transport
Shippers
Shipping
Smart Buildings
Trusties and other Intermediary Organizations
Urban and Countryside Logistics
Urban Logistics
Sectors and Stakeholders - TRUSTS
Audit & Law firms
Corporate offices
Enterprises
Financial Institutions
Telecommunications
Security
Secured Data
Secured Infrastructure
Secured Platform
Sovereignty
Data sovereignty
Standards
Good Distribution Practices
International data standards
International Organization for Standardization (ISO)
UN/CEFACT
World Customs Organization (WCO)
Supply Chain Management
Business Models, Process Improvement, Contract Management, KPIs and Benchmarking Indexes
Risk Management
Risk-Based Controls
Screening and tracking
Supervision Approach
Technologies
5g
Agile Deployment, Configuration Management
Business Applications
Business Integration Patterns, Publish-Subscribe
Cloud Technologies/Computing, Services Virtualisation
Cognitive
Community Node Platform and Application Monitoring
Connectivity Technologies (Interfaces and Block Chain)
Hybrid S/T Communication and Navigation Platforms
IoT (Sensors, platforms)
Mobile
Physical Internet (PI)
Public key infrastructure (PKI)
Radio-frequency identification (RFID)

5G-SOLUTIONS Publications

Onboarding Vertical Applications on 5G-VINNI Facility
Tranoris, Christos; Cattoni, Andrea; Warren, Dan; Mahmood, Kashif; Everett, Martyn; Ghassemian, Mona; Xie, Min; Grønsund, Pål; Gavras, Anastasius 05/03/2020 00:00:00
The four main 5G sites of 5G-VINNI in UK, Norway, Spain and Greece are now operational. As stated in the project proposal, the target of these 5G sites was to demonstrate 1). that these sites can be accessed and used by vertical industries to set up research trials of innovative use cases and 2). that the key 5G PPP network KPIs can be met. This whitepaper sheds light on these two targets by providing 1). an in-depth tutorial on how to onboard vertical applications on 5G-VINNI facility and 2). by listing the initial KPI results from 5G-VINNI facility.

5G-VINNI adopts Network Slice as a Service (NSaaS) delivery model to offer customized service experience to verticals. The architecture which allows this model is based on guidelines from telecom industry organizations and the normative specifications from standards bodies to ensure interoperability and reproducibility. To this end, TM forum OpenAPIs are exposed towards the verticals from 5G-VINNI service portal and the service catalogue. The APIs allow the verticals to directly trigger necessary operations for service ordering from a 5G-VINNI service catalogue. Upon receiving the order, the customer is offered with a service instance which in case of 5G-VINNI is related to the 5G-VINNI Service Blueprint (SB). The 5G-VINNI-SB is a template capturing the complete description of a given service. This template is used as a reference to conduct service management procedures both at instantiation and at run-time.

To cover the necessities of any vertical with the use of a single service platform, 5G-VINNI has defined four (4) different exposure levels in order to provide customized access and insight into the slice instance. As a general principle, a higher exposure level offers more advanced capability to the vertical albeit requiring much more customization.

Onboarding a vertical on a 5G test platform is challenging as it involves various iterative and parallel steps. The problem is compounded by the introduction of experimentation aspects as it involves monitoring and testing of KPIs when the network slice is in operation. It is therefore of utmost importance that the different stakeholders of 5G system co-design and co-develop different parts of the onboarding process for a successful service operation and KPI testing. This white paper presents in detail the 5G-VINNI vertical onboarding process which can be summarized as consisting of co-design period to understand vertical needs and how to enable them, the co-development period which involves the vertical customer and the 5G facility provider to jointly develop the final service including testing-as-a-service and monitoring-as-a-service and, the operational and KPI testing period which allows the vertical customer to make repeatable and scheduled service orders of the developed service blueprint and perform KPI testing, monitoring and assessment.

The whitepaper concludes with initial KPI results from several categories of tests conducted on the 5G-VINNI facility. These tests, executed using state-of-the-art open source and commercial testing tools, have measured the current capabilities of the 5G-VINNI infrastructure that can be used by verticals as of today.
Reference Link

Attached Documents

The “CHARIOT IoT Search Index” aims to provide a web location where publications, articles, and relevant documents can be centralized hosted in a well-structured and easily accessed way.

Tags

Contact Us
Enter Text
Contact our department
123movie