HCSP-Field-5GtoB Service Planning and Design V1.0 Updated Training Material & H35-663 Study Pdf Vce & HCSP-Field-5GtoB Service Planning and Design V1.0 Actual Exam Questions
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Huawei H35-663 (HCSP-Field-5GtoB Service Planning and Design V1.0) Certification Exam is a certification exam designed for professionals who want to gain expertise in 5G network service planning and design. HCSP-Field-5GtoB Service Planning and Design V1.0 certification exam covers all aspects of 5G network planning, including the design of 5G network architecture, network capacity planning, network security, and service deployment.
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Huawei H35-663 (HCSP-Field-5GtoB Service Planning and Design V1.0) Exam is an industry-recognized certification that validates the skills and knowledge required for designing and planning 5GtoB (business) services. HCSP-Field-5GtoB Service Planning and Design V1.0 certification is designed for professionals who are responsible for designing and implementing 5G networks for businesses. The Huawei H35-663 Exam covers a wide range of topics, including 5G network architecture, service planning and design, and network optimization.
Huawei HCSP-Field-5GtoB Service Planning and Design V1.0 Sample Questions (Q46-Q51):
NEW QUESTION # 46
What are the different types of 5G network slicing? Select all that apply.
Answer: D
Explanation:
All of the above are types of 5G network slicing. Radio Access Network (RAN) slicing involves the allocation of dedicated radio resources to specific user groups or services. Core Network slicing involves the separation of network functions and resources to support specific service requirements. Transport Network slicing involves the partitioning of transport resources to support specific service requirements. Service Function chaining slicing involves the chaining of network functions to provide end-to-end services with specific characteristics.
NEW QUESTION # 47
If an operator wants to design a 5G network for a dense urban area, which of the following factors should they consider?
Answer: A
Explanation:
If an operator wants to design a 5G network for a dense urban area, they should consider bandwidth requirements, antenna type, and interference.
Dense urban areas are characterized by a high density of people and buildings, which can present significant challenges for 5G network design. Bandwidth requirements may be higher in dense urban areas due to the large number of people and devices accessing the network, which can create congestion and slow down network performance. Antenna type is also important, as the operator will need to choose antennas that can provide sufficient coverage in densely populated areas with tall buildings and other obstacles. Interference can also be a major issue in dense urban areas, as the large number of wireless signals can interfere with each other and degrade network performance.
To overcome these challenges, operators may need to deploy more small cells to provide additional coverage and capacity in dense urban areas. Small cells are low-power cellular base stations that can be deployed in areas where traditional cell towers may not be feasible, such as on buildings, light poles, or other street furniture. By deploying more small cells and choosing the right antenna types, operators can provide better coverage and higher bandwidth to customers in dense urban areas.
NEW QUESTION # 48
What are the key network functions in 5GtoB service planning and design?
Answer: A
Explanation:
The key network functions in 5GtoB service planning and design include user equipment (UE) and base stations, core network and cloud infrastructure, and network management and orchestration.
User equipment (UE) and base stations are the physical components of the 5G network that provide wireless connectivity to end-user devices. UE includes smartphones, tablets, and other mobile devices, while base stations include radio access network (RAN) components such as small cells and macro cells.
The core network and cloud infrastructure provide the backend functions of the 5G network, including data processing, storage, and transmission. The core network includes components such as the mobile edge computing (MEC) platform, which enables applications to run closer to the end-user device, and the network function virtualization (NFV) infrastructure, which allows network functions to be virtualized and run on cloud servers.
Network management and orchestration are critical components of 5GtoB service planning and design. They enable network operators to manage and control the 5G network, including monitoring network performance, configuring network components, and optimizing network resources. Network management and orchestration also enable network operators to provision new services and applications quickly and efficiently, improving time-to-market for new 5G services.
Overall, the key network functions in 5GtoB service planning and design work together to provide a high-performance, scalable, and flexible 5G network that can meet the diverse needs of business customers.
NEW QUESTION # 49
If an operator wants to improve 5G network performance in a high-traffic area, which of the following techniques should they use?
Answer: C
Explanation:
To improve 5G network performance in a high-traffic area, an operator can use both carrier aggregation and massive MIMO techniques.
Carrier aggregation involves combining multiple frequency bands to increase available bandwidth and improve network capacity. This technique can help operators support higher data rates and reduce network congestion in areas with high traffic volumes.
Massive MIMO (Multiple Input Multiple Output) involves using a large number of antennas to transmit and receive signals simultaneously. This technique can help improve network capacity, coverage, and reliability by reducing interference and increasing spectral efficiency.
By using both carrier aggregation and massive MIMO techniques, operators can improve 5G network performance in high-traffic areas and provide better user experiences to their customers.
NEW QUESTION # 50
What is the purpose of service level agreements (SLAs) in 5GtoB service planning and design?
Answer: B
Explanation:
The purpose of service level agreements (SLAs) in 5GtoB service planning and design is to define the performance targets and guarantees for 5G services.
Service level agreements (SLAs) are contracts that define the level of service that a network operator will provide to its business customers. In the context of 5GtoB service planning and design, SLAs are used to establish specific performance targets and guarantees for 5G services, such as network availability, latency, bandwidth, and other quality-of-service metrics.
By defining performance targets and guarantees in SLAs, network operators can ensure that they meet the needs and expectations of their business customers. SLAs provide a framework for measuring and monitoring service performance, and can help to identify areas where improvements are needed.
SLAs also help to manage the relationship between the service provider and the customer by providing a clear understanding of what services will be provided and at what level of quality. In the event of a dispute or conflict, SLAs provide a framework for resolving issues and ensuring that both parties are satisfied with the outcome.
Overall, SLAs are a critical component of 5GtoB service planning and design, as they help to ensure that network operators provide high-quality services that meet the needs of their business customers.
NEW QUESTION # 51
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