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

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

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                      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 (Q27-Q32):

                      質問 # 27
                      The slice type SST value for Extreme Broadband is typically:

                      正解:D

                      解説:
                      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.


                      質問 # 28
                      A slice supporting sensors and smart meters would be categorized as:

                      正解:A

                      解説:
                      The correct answer is A .
                      Sensors and smart meters are typical massive IoT use cases. They usually involve a very large number of devices sending small amounts of data, often with low mobility and low power requirements.
                      This type of traffic fits mMTC , or massive Machine Type Communications .
                      Why the other options are not correct:
                      URLLC is used for very low-latency and highly reliable services, such as industrial automation, remote control, or mission-critical applications.
                      eMBB is used for high-throughput broadband services, such as video, fixed wireless access, or enhanced mobile internet.
                      DNN is not a slice category. It means Data Network Name and identifies the data network the UE connects to, similar to APN in LTE.
                      Therefore, a slice supporting sensors and smart meters is categorized as:
                      mMTC.


                      質問 # 29
                      Regarding the Vo5G / IMS voice and video over 5G feature, which statements are correct?

                      正解:A

                      解説:
                      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.


                      質問 # 30
                      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:A

                      解説:
                      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.


                      質問 # 31
                      At which mark are all conditions fulfilled for energy saving , so the cell will be switched off? Refer to the image below.

                      正解:B

                      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 # 32
                      ......

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