2026 Well SRAN-Radio-Network-Performance-Optimization Prep | High-quality Exam SRAN-Radio-Network-Performance-Optimization Learning: MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 100% Pass

Our website platform has no viruses and you can download SRAN-Radio-Network-Performance-Optimization test guide at ease. If you encounter difficulties in installation or use of SRAN-Radio-Network-Performance-Optimization exam torrent, we will provide you with remote assistance from a dedicated expert to help you and provide 365 days of free updates that you do not have to worry about what you missed. Whether you are a worker or student, you will save much time to do something whatever you want. It only needs 5-10 minutes after you pay for our SRAN-Radio-Network-Performance-Optimization learn torrent that you can learn it to prepare for your exam. Actually, if you can guarantee that your effective learning time with SRAN-Radio-Network-Performance-Optimization test preps are up to 20-30 hours, you can pass the exam.

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

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

                      >> Well SRAN-Radio-Network-Performance-Optimization Prep <<

                      Exam Nokia SRAN-Radio-Network-Performance-Optimization Learning, Reliable SRAN-Radio-Network-Performance-Optimization Exam Papers

                      You don't have to worry about passing rates of our SRAN-Radio-Network-Performance-Optimization exam questions because of the short learning time. We have always been trying to shorten your study time on the premise of ensuring the passing rate. Perhaps after you have used SRAN-Radio-Network-Performance-Optimization real exam once, you will agree with this point. Our SRAN-Radio-Network-Performance-Optimization Study Materials are really a time-saving and high-quality product! As long as you buy and try our SRAN-Radio-Network-Performance-Optimization practice braindumps, then you will want to buy more exam materials.

                      Nokia MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 Sample Questions (Q31-Q36):

                      NEW QUESTION # 31
                      In a 5G cell , the following parameter has been modified: lowLatencyReservation = 15 .
                      Which percentage of UEs will be reallocated to a higher SR periodicity group whenever the threshold for moving to a higher SR periodicity group is reached?

                      Answer: A

                      Explanation:
                      The correct answer is C .
                      In 5G uplink scheduling, SR , or Scheduling Request , is used by the UE to request uplink resources when it has data to send. SR periodicity affects uplink latency and PUCCH capacity: shorter SR periodicity gives lower latency but consumes more control-channel resources, while longer SR periodicity saves resources but increases delay.
                      The parameter lowLatencyReservation = 15 means 15% of the UE/resource share is reserved for the low- latency SR periodicity group. When the load threshold is reached, the remaining portion can be moved to a higher SR periodicity group.
                      Calculation:
                      100% # 15% = 85%
                      So the percentage of UEs that can be reallocated to a higher SR periodicity group is:
                      0.85 , or 85% .


                      NEW QUESTION # 32
                      Which of the following best describes one of the primary purposes of the Coverage and Quality use case?

                      Answer: C

                      Explanation:
                      The correct answer is B .
                      The Coverage and Quality use case is used in network planning and optimization to identify RF problem areas. These may include:
                      Low RSRP or weak coverage areas
                      Poor SINR or low radio quality areas
                      High interference zones
                      Overshooting cells
                      Coverage holes
                      Areas where users experience poor throughput or poor accessibility
                      This type of use case helps NPO engineers prioritize optimization actions such as antenna tilt changes, azimuth changes, parameter tuning, neighbor optimization, power adjustment, or site expansion.
                      The other options are not the primary purpose:
                      VPN tunnel configuration is a connectivity/security task.
                      LCBIN-to-CSV conversion is a data processing task.
                      Replacing the Kronos parser is a tool-chain or troubleshooting function, not the main purpose of coverage and quality analysis.
                      So the best answer is:
                      To identify problem areas such as low coverage or high interference.


                      NEW QUESTION # 33
                      A customer complains about coverage reduction after modernization of 4G TDD 4x4 sites to Concurrent mMIMO B41/n41 with AEHC module 64T64R . Which of the following statements regarding RF design changes to increase the coverage is correct?

                      Answer: B

                      Explanation:
                      The correct answer is C .
                      In a Concurrent mMIMO B41/n41 AEHC 64T64R deployment, LTE and NR share the same Massive MIMO active antenna system. Public Nokia material identifies AEHC as an AirScale Massive MIMO
                      64T64R B41 radio product, and Nokia's AirScale Massive MIMO portfolio is designed for high-capacity 5G
                      /RAN deployments.
                      Unlike a passive antenna system where coverage is changed mainly by physical/electrical RET, Massive MIMO coverage is strongly influenced by beamforming profiles and beamforming weight parameters . In concurrent LTE/NR operation, the RF design must consider the shared active antenna behavior, not independent passive RET-style tilt control per technology.
                      Therefore, for concurrent 4G/5G mMIMO coverage adjustment, the correct statement is:
                      The tilt/coverage behavior for both 4G and 5G is controlled by mMIMOSecSectorBFProfName and beamforming weight profile parameters.


                      NEW QUESTION # 34
                      In NR SA Option 2, the UE is camped on an SA serving cell. An IRAT handover is triggered for a multi-QCI call, QCI 1 and QCI 6, due to weak coverage of the serving cell. What will happen to both QCIs during the IRAT handover toward LTE?

                      Answer: C

                      Explanation:
                      The correct answer is D.
                      In 5G SA Option 2, NR works independently with the 5G Core, but interworking with LTE/EPC can be supported for mobility continuity. When IRAT handover toward LTE is triggered due to weak NR coverage, the goal is to preserve the active services during mobility.
                      For a multi-QCI service:
                      QCI 1 normally represents the voice bearer, such as VoLTE/IMS voice continuity after movement to LTE.
                      QCI 6 normally represents a non-GBR data bearer.
                      During a supported IRAT handover from NR SA to LTE, both the voice bearer and data bearer can be transferred to LTE, assuming proper interworking, bearer mapping, and LTE coverage availability.
                      Option C is incorrect because IRAT mobility from NR SA to LTE is supported in properly configured networks. Option A is incorrect because the voice bearer is the most critical bearer to preserve. Option B is also not the best answer because the data bearer does not necessarily need to be released during IRAT handover.
                      Therefore, the expected result is:
                      Both QCI 1 voice and QCI 6 data continue on LTE.


                      NEW QUESTION # 35
                      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: E

                      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 # 36
                      ......

                      Our company is a professional certificate study materials provider. We have occupied in this field for years, we are in the leading position of providing exam materials. SRAN-Radio-Network-Performance-Optimization training materials of us is high-quality and accurate, for we have a profession team to verify and update the SRAN-Radio-Network-Performance-Optimization answers and questions. We have received many good feedbacks from our customers for helping pass the exam successfully. Furthermore, we provide you free update for one year after purchasing SRAN-Radio-Network-Performance-Optimization exam dumps from us.

                      Exam SRAN-Radio-Network-Performance-Optimization Learning: https://www.testbraindump.com/SRAN-Radio-Network-Performance-Optimization-exam-prep.html