有効的なSRAN-Radio-Network-Performance-Optimizationテスト対策書 &合格スムーズSRAN-Radio-Network-Performance-Optimization日本語的中対策 |完璧なSRAN-Radio-Network-Performance-Optimization最新試験情報

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

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Nokia SRAN-Radio-Network-Performance-Optimization日本語的中対策 & SRAN-Radio-Network-Performance-Optimization最新試験情報

SRAN-Radio-Network-Performance-Optimization証明書を所有して、自分が有能であることを証明し、特定の分野で優れた実用的な能力を高めることができます。したがって、GoShikenあなたは有能な人々とみなされ、尊敬されます。テストSRAN-Radio-Network-Performance-Optimization認定に合格すると、目標を実現するのに役立ちます。また、SRAN-Radio-Network-Performance-Optimizationガイドトレントを購入すると、SRAN-Radio-Network-Performance-Optimization試験に簡単に合格できます。 SRAN-Radio-Network-Performance-Optimization試験問題は最も専門的な専門家によって書かれているため、SRAN-Radio-Network-Performance-Optimization学習教材の品質は素晴らしいです。そして、試験に合格するために、MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510学習ガイドを常に最新の状態に保ちます。

Nokia MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 認定 SRAN-Radio-Network-Performance-Optimization 試験問題 (Q13-Q18):

質問 # 13
At which mark are all conditions fulfilled for energy saving , so the cell will be switched off? Refer to the image below.

正解:C

解説:
The correct answer is B , which corresponds to mark C in the diagram.
In the diagram, the energy-saving process follows these stages:
Before mark B , the cell is entering the power-saving period, but the required load condition has not yet been satisfied for the required duration.
At mark B , the measured load has gone below the configured threshold, but the cell is not switched off immediately. The system must confirm that the load remains below the required threshold for the configured time.
At mark C , the load has stayed below the required threshold for the required duration, shown as 5 minutes in the diagram. At this point, all conditions are fulfilled, and the cell can be switched off. The diagram also shows the state becoming:
energySavingState = energySaving
Marks D and E are already inside or near the later part of the power-saving period. Mark E is associated with operator suspension/exit behavior, not the initial moment when all switch-off conditions are first fulfilled.


質問 # 14
Consider that the UE is performing handover from LTE to NR with the help of features CB007742 / CB008731 . Referring to the picture below, at what stage can the handover be triggered from LTE to NR?

正解:C

解説:
The correct answer is C: From Stage 3 .
In LTE-to-NR mobility, the handover or redirection decision is normally based on a combination of:
LTE serving-cell signal level becoming weak enough, and
NR neighbor-cell signal level becoming strong enough.
From the diagram:
In Stage 1 , LTE is still good and NR is still weak, so LTE-to-NR HO should not be triggered.
In Stage 2 , the NR neighbor signal is improving, but the required combined LTE/NR mobility condition is not yet fully satisfied.
In Stage 3 , the NR neighbor signal has crossed the required NR threshold, while the LTE serving-cell signal has degraded enough to justify moving the UE from LTE to NR. This is the first valid stage where LTE-to- NR HO can be triggered.
In Stage 4 , NR is already clearly strong, but the handover could already have been triggered earlier in Stage 3.


質問 # 15
Evaluate the impact of extended FR2 cell range on power consumption.

正解:C

解説:
The correct answer is C .
In FR2/mmWave , uplink coverage is often the limiting factor because UE transmit power is much lower than gNodeB transmit power, and mmWave propagation suffers from high path loss and blockage. Ericsson's mmWave coverage discussion also notes that high-band coverage is limited by uplink signal quality and high- band propagation characteristics.
When the FR2 cell range is extended, UEs farther from the serving cell must transmit uplink signals over a more difficult radio path. This usually requires higher UE transmit power, more robust MCS, more repetitions or retransmissions, and potentially longer uplink activity. As a result, UE battery consumption can increase.
Therefore, extended FR2 range generally:
Increases power consumption because UEs need more energy to transmit uplink signals.


質問 # 16
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?

正解:D


質問 # 17
In the case of 5G SA, which of the following triggers the Radio Link Failure, or RLF, handling mechanism?

正解:C

解説:
The correct answer is C.
In 5G SA, Radio Link Failure handling is mainly UE-driven. The UE monitors the radio link quality using lower-layer indications such as in-sync and out-of-sync indications. If the UE receives enough out-of-sync indications, it starts the relevant RLF timer, commonly associated with T310 behavior. If the link does not recover before the timer expires, the UE declares Radio Link Failure and starts recovery, such as RRC re- establishment.
The gNodeB can detect uplink problems and may release or reconfigure the UE, but the classical RLF handling mechanism is triggered at the UE side.
So the correct answer is:
UE indication timer only.


質問 # 18
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