SRAN-Radio-Network-Performance-Optimization Actual Exam - Interactive SRAN-Radio-Network-Performance-Optimization Practice Exam

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

SectionWeightObjectives
Topic 1: SRAN Optimization Tools and Reports10-15%- Automated optimization features
- Configuration management for optimization
- Report generation and interpretation
- Nokia NetAct and performance tools
Topic 2: Radio Network Performance Monitoring20-25%- Performance data collection and analysis
- Threshold configuration and alerting
- KPI definition and measurement
- Real-time network monitoring techniques
- Performance monitoring tools and dashboards
Topic 3: Radio Network Optimization Techniques25-30%- Load balancing techniques
- Interference analysis and mitigation
- Capacity optimization strategies
- Parameter tuning best practices
- Coverage optimization methods
- Handover optimization
Topic 4: Performance Troubleshooting20-25%- Troubleshooting tools utilization
- Common performance issues diagnosis
- Optimization case studies
- Root cause analysis methodologies
- Network failure identification and resolution
Topic 5: SRAN Architecture and Fundamentals15-20%- Single RAN integration principles
- SRAN network architecture overview
- SRAN solution components and functions
- Radio access concepts and principles

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Nokia MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 Sample Questions (Q24-Q29):

NEW QUESTION # 24
What is the mandatory prerequisite to implement DSS , or Dynamic Spectrum Sharing ?

Answer: B

Explanation:
The correct answer is D .
DSS allows LTE and 5G NR to share the same spectrum dynamically , instead of requiring a separate dedicated NR carrier. Therefore, dedicated NR spectrum is not mandatory. DSS is also not limited to TDD only; it is commonly used in FDD spectrum refarming scenarios as well. Public RAN references describe DSS as a mechanism where LTE and NR coexist in the same frequency band and share spectrum dynamically.
From an SRAN architecture point of view, the mandatory deployment condition is that the radio platform must support LTE and NR coexistence on the same radio resources. That requires RF module sharing or a DSS-capable shared radio configuration.
So the correct prerequisite is:
RF module sharing.


NEW QUESTION # 25
Single Network Slice Selection Assistance Information , or S-NSSAI , identifies a network slice. Which of the following statements are correct regarding NSSAI ? Refer to the diagram for basic information.

Answer: F

Explanation:
The correct answer is D: A, B, C, and D .
In 5G network slicing, S-NSSAI identifies a single network slice. It is composed of:
SST , or Slice/Service Type
SD , or Slice Differentiator
Statement A is correct.
The combination of SST + SD can uniquely identify a slice. For example, two slices may both use SST 1 for eMBB/MBB-type service, but different SD values can separate them for different enterprises, tenants, or service groups.
Statement B is correct.
SST is mandatory. It is an 8-bit numeric field that indicates the expected slice/service behavior, such as eMBB, URLLC, or mMTC.
Statement C is correct.
SD is optional. It is a 24-bit field used to differentiate multiple slices that may share the same SST.
Statement D is correct.
SST may use standardized values, such as SST 1 for eMBB, SST 2 for URLLC, and SST 3 for mMTC/MIoT.
It may also use operator-specific or non-standardized values depending on deployment requirements.


NEW QUESTION # 26
Regarding the Vo5G / IMS voice and video over 5G feature, which statements are correct?

Answer: H

Explanation:
The correct answer is C: A, B, C, and D .
This question is about Vo5G / VoNR IMS service support in 5G SA. For IMS-based services over 5G, different QoS flows are used for signaling, voice media, and video media.
Statement A is correct.
The feature supports IMS voice and video over 5G in the gNB for FR1 , including both TDD and FDD deployments.
Statement B is correct.
IMS signaling commonly uses 5QI 5 . This QoS flow carries SIP/IMS signaling messages such as registration, session setup, modification, and release.
Statement C is correct.
IMS conversational voice uses 5QI 1 , which is the standardized GBR QoS identifier for conversational voice.
Statement D is correct.
IMS conversational video commonly uses 5QI 2 , which is associated with conversational video traffic.


NEW QUESTION # 27
In the context of mmWave deployments , what is the primary benefit of analog beamforming ?

Answer: B

Explanation:
The correct answer is A .
In mmWave systems, beamforming is essential because FR2 signals suffer from high path loss and blockage.
Analog beamforming uses fewer RF chains than fully digital beamforming, so it is cheaper and less complex in terms of RF hardware, power consumption, and implementation. Research and industry references explain that analog and hybrid beamforming architectures reduce the number of required ADCs/RF chains compared with fully digital beamforming, lowering cost and power complexity.
However, analog beamforming has limitations. It usually forms one beam, or a limited number of beams, at a time from a panel. Supporting multiple independent simultaneous beams and more UEs per sector is more associated with digital or hybrid beamforming, not pure analog beamforming.
Therefore, the primary benefit is:
Low cost and low complexity for coverage at higher mmWave bands.


NEW QUESTION # 28
Which of these is a software solution targeted to provide NPO projects access to rich datasets, modern data analysis and visualization tools, with a high level of automation capability?

Answer: B

Explanation:
The correct answer is D .
NPAS is the correct software solution in this context. A public technical source describes NPAS as providing access to rich datasets and modern data analysis and visualization tools , which matches the wording of the question closely.
In Nokia/NPO project context, this type of platform is used to support network planning and optimization activities by enabling data ingestion, analysis, visualization, and automation. This helps engineers work with large RAN datasets more efficiently during optimization, modernization, and performance-improvement projects.
The other options are not the best match:
GeoSynthesis is more associated with geospatial/planning-style use cases.
MantaRay SON is related to SON automation and optimization functions.
LTEPAT is more LTE-focused and does not match the described broad analytics platform role.
Therefore, the correct answer is:
NPAS.


NEW QUESTION # 29
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