Latest SRAN-Radio-Network-Performance-Optimization Braindumps Questions, SRAN-Radio-Network-Performance-Optimization PDF Questions

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

SectionObjectives
Topic 1: RF Optimization Principles- Coverage and capacity optimization
  • 1. Coverage analysis and enhancement
    • 2. Interference analysis and mitigation
      Topic 2: SRAN Architecture Overview- SRAN network structure and components
      • 1. Radio access network elements overview
        • 2. LTE/NR integration principles
          Topic 3: Radio Network Performance Fundamentals- Key performance indicators (KPIs)
          • 1. Accessibility, retainability, and mobility KPIs
            • 2. Throughput and latency KPIs
              Topic 4: LTE/NR Performance Optimization- Optimization techniques
              • 1. Scheduling and resource allocation optimization
                • 2. Handover optimization
                  Topic 5: Troubleshooting and Performance Analysis- Network issue identification and resolution
                  • 1. Fault analysis workflows
                    • 2. Performance degradation root cause analysis

                      >> Latest SRAN-Radio-Network-Performance-Optimization Braindumps Questions <<

                      2026 SRAN-Radio-Network-Performance-Optimization: Marvelous Latest MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 Braindumps Questions

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                      Nokia MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 Sample Questions (Q27-Q32):

                      NEW QUESTION # 27
                      In the context of radio capacity management , what is the significance of Scheduling Request periodicity ?

                      Answer: C

                      Explanation:
                      The correct answer is C .
                      Scheduling Request , or SR , is used by the UE to request uplink resources when it has uplink data to send.
                      The SR periodicity defines how often the UE gets an opportunity to send this scheduling request.
                      A shorter SR periodicity means the UE can request uplink resources more quickly, which improves uplink latency. However, it consumes more PUCCH/control-channel resources, reducing the number of UEs that can be efficiently supported.
                      A longer SR periodicity saves control-channel resources and can support more connected users, but it increases uplink access delay.
                      Therefore, SR periodicity is important because it creates a trade-off between:
                      Lower latency and higher connected-user capacity.


                      NEW QUESTION # 28
                      Which of the following statements does not apply to mmWave radio propagation ?

                      Answer: A

                      Explanation:
                      The correct answer is C .
                      At mmWave / FR2 frequencies , radio propagation is more challenging than in low-band or mid-band spectrum. Diffraction becomes weaker, blockage is more severe, foliage attenuation is high, and building penetration loss is significant. This is why mmWave networks usually require dense site grids, line-of-sight or near-line-of-sight paths, and strong beamforming. Industry mmWave references consistently describe high path loss, high penetration loss, and the need for directional antenna systems to compensate for these losses.
                      Option C does not apply because water absorption and atmospheric absorption generally become more relevant at higher frequencies, not lower. Rain, humidity, and oxygen/water-vapor absorption are important considerations for mmWave link budgets.
                      So the statement that does not apply to mmWave propagation is:
                      Low water absorption at high frequencies.


                      NEW QUESTION # 29
                      At which mark are all conditions fulfilled for energy saving , so the cell will be switched off? Refer to the image below.

                      Answer: A

                      Explanation:
                      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.


                      NEW QUESTION # 30
                      Evaluate the impact of extended FR2 cell range on power consumption.

                      Answer: C

                      Explanation:
                      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.


                      NEW QUESTION # 31
                      What is the role of admission control in 5G networks ?

                      Answer: A


                      NEW QUESTION # 32
                      ......

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