SRAN-Radio-Network-Performance-Optimization Exam Torrent & SRAN-Radio-Network-Performance-Optimization Study Materials & SRAN-Radio-Network-Performance-Optimization Actual Exam

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Nokia SRAN-Radio-Network-Performance-Optimization Exam Syllabus Topics:

SectionWeightObjectives
Topic 1: Mobility and Handover Optimization20%- Handover parameters and algorithms
- Inter-RAT mobility and optimization
- Mobility robustness and optimization
Topic 2: Advanced Optimization and SON Features10%- Energy saving and advanced features
- Self-Organizing Networks (SON) use cases and optimization
Topic 3: Quality of Service and Resource Management15%- QoS parameters, scheduling and admission control
- Radio resource management and optimization
Topic 4: Coverage and Capacity Optimization30%- Coverage analysis, tuning and optimization
- Interference analysis and mitigation techniques
- Capacity planning, load balancing and optimization
Topic 5: SRAN Performance Optimization Fundamentals25%- Key performance indicators (KPIs) definition and measurement
- Performance optimization principles and methodology
- Network performance monitoring and analysis tools

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Nokia MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 Sample Questions (Q10-Q15):

NEW QUESTION # 10
The slice type SST value for Extreme Broadband is typically:

Answer: A

Explanation:
The correct answer is B .
In 5G network slicing, SST means Slice/Service Type . It identifies the high-level service category of a network slice.
Typical standardized SST values are:
SST = 1 # eMBB, enhanced Mobile Broadband
SST = 2 # URLLC, Ultra-Reliable Low-Latency Communication
SST = 3 # MIoT/mMTC, Massive IoT or massive Machine Type Communication
SST = 4 # V2X-related slice type
"Extreme Broadband" is normally aligned with eMBB , because it refers to high data rate, high capacity, and broadband user experience.
Therefore, the SST value for Extreme Broadband is:
1.


NEW QUESTION # 11
In a high-mobility network, the maximum cell size must be restricted to 33 km . Which PRACH format and restricted-set type should be used?

Answer: B

Explanation:
The correct answer is Format 1 / Type B .
For PRACH planning, the selected preamble format must support the required cell radius. Format 0 is too short for a 33 km cell because it is typically suitable only up to around 14.5 km . Format 2 is also not suitable because its practical maximum cell radius is around 29.5 km , which is below the required 33 km . Therefore, a longer PRACH format is needed.
Because the scenario mentions high mobility , an unrestricted PRACH set is not preferred. High-mobility environments require a restricted set to handle Doppler effects and reduce ambiguity in PRACH preamble detection. Between the restricted-set options, Type B is the correct choice for this 33 km high-mobility case.
A matching Nokia-style question source also lists this exact scenario with Format 1 / Type B as option A.


NEW QUESTION # 12
In a high-mobility network, the maximum cell size must be restricted to 33 km . Which PRACH format and restricted-set type should be used?

Answer: B


NEW QUESTION # 13
What is the role of admission control in 5G networks ?

Answer: C

Explanation:
The correct answer is D .
Admission control is responsible for deciding whether a new UE connection, bearer, service, or session can be accepted by the cell without negatively affecting existing users and services.
In 5G RAN, admission control checks available radio resources such as:
* PRB availability
* PDCCH/PUCCH capacity
* UE context capacity
* QoS requirements
* GBR or non-GBR bearer requirements
* Cell load and congestion status
It does not directly manage modulation schemes; that is handled by link adaptation. It also does not directly increase spectral efficiency or optimize downlink throughput, although good admission control indirectly protects user experience and avoids overload.
So the main role of admission control is:
To check whether there are enough resources for new connections.


NEW QUESTION # 14
Choose the correct statement from the options below.

Answer: A

Explanation:
The correct answer is B .
Beamforming is mainly about shaping and directing radio energy toward a UE or a target area. It improves coverage, SINR, and cell-edge performance by focusing the transmitted or received signal in a specific direction.
MIMO , or Multiple Input Multiple Output , uses multiple antenna paths to improve throughput, reliability, and spectral efficiency. MIMO can be used for spatial multiplexing, diversity, or beamforming depending on the antenna system and radio configuration.
Option A is incorrect because beamforming and MIMO are related but not the same.
Option C reverses the definitions.
Option D is incorrect because beamforming and MIMO are commonly used together, especially in Massive MIMO systems.
So the correct statement is:
Beamforming focuses on directing the signal, while MIMO focuses on utilizing multiple paths for data transmission.


NEW QUESTION # 15
......

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