Which of the following defines a vertical Network Slice?
A. When it serves a given customer for a specific purpose, such as anational energy network.
B. When it cross all the network layers from the radio up to the core.
C. When it serves a given common purpose, for a use case with a defined QoS (eg a use case in transportation, in energy).
D. When it operates on the same layerof the ISO/OSI model.
Which of the following statements are applicable to the technology of massive MIMO? (Select 3)
A. Several data flows are sent at the same time on the same frequency.
B. The signals on each antenna are made orthogonal.
C. The data flows are sent at the same time on different frequencies.
D. Transmit diversity is used in case of poor radio conditions.
What are the five key features of 5G Core?
A. Dynamic Control plane,Adaptive Architecture, Converged-Access-Network, Stateless and Network Self- healing
B. Dynamic Control plane, Service Based Architecture, Multi-Access-Network, State- efficiency and Network Slicing
C. Dynamic Control plane, Adaptive Architecture, Multi-Access-Network, Stateless and Network Slicing
D. Control and User Planes Separation, Service Based Architecture, Multi-Access-Network, State-efficiency and Network Slicing
Which of the following is not a benefit of Network Slicing?
A. Priority between different flows
B. Privacy and segmentation between flows
C. Recovery of network flows when they fail
D. Differentiated QoS flows, for different services
What is the role of 5G in meeting the automation needs of Industry 4.0?
A. 5G plays a minor role on Industry 4.0 because the requirements are mainly focused on mMTC and IoT.
B. 5G requirements for Industry 4.0 are mainly focusedon Ultra high bandwidth needs.
C. 5G plays an important role on Industry 4.0 because it enables the cloud automation with baremetal platforms.
D. 5G requirements for Industry 4.0 are mainly focused on ultra low latency characteristics but also fromhigh throughput and massive connectivity.
A. Service based architecture, stateless networkfunctions, Cloud-ready network functions and modular network functions.
B. Client/Server architecture, stateless network functions, Cloud-ready network functions and modular network functions.
C. Client/Server architecture, Cloud-ready network functions,and modular network functions.
What does 5G bring to Industry 4.0? (Choose two.)
A. 5G will generate a huge amount of data and Information Technology will provide the computing platform with analytics and AI.
B. 5G provides the connectivity (bandwidth, latency and reliability) needed to exchange data for OT and IT functionality.
C. 5G brings nothing to Industry 4.0.
D. 5G will generate a huge amount of data with mMTC and IT platforms are expected to suffer from this.
When considering Cloud and Transport orchestration, evaluate whether the following statement is true or false: NFVO is to Cloud what SDN is to Transport.
A. False
B. True
Which of the following is not a part of an E2E Network Slice?
A. Cloud Slice
B. Core Slice
C. Access Slice
D. Transport Slice
You and a colleague are discussing the challenges to be resolved in order to make digitization and automation a reality in all industries. He is arguing that the solution is to have faster access connectivity, but you don't agree. You are trying to convince him of the need for an end-to-end solution. The new 5G network should be built end-to-end to enable industries' quest for value. What arguments can you provide to support your position?
A. Increasing throughput is not enough. A faster and automated transport network, a distributed cloud where applications would run depending on their latency and reliability requirements, a core network that automatically handles any type of access, and a security framework to guarantee the security in every layer of the network are also needed.
B. The network consists of many layers that include access, transport, core, cloud, and all of the applications running in the cloud. Increasing throughput in access is not enough. The bit rate needs to be increased in all of the other layers as well.
C. Increasing the access throughput might be worthwhile but applications that support ahigher bit rate should also be a consideration.
D. Increasing the throughput is enough. There is no need to change the network end-to- end.