SRAN-Radio-Network-Performance-Optimization Learning Materials - SRAN-Radio-Network-Performance-Optimization Trustworthy Exam Content

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

SectionObjectives
Radio Network Performance Fundamentals- Key performance indicators (KPIs)
  • 1. Accessibility, retainability, and mobility KPIs
    • 2. Throughput and latency KPIs
      LTE/NR Performance Optimization- Optimization techniques
      • 1. Scheduling and resource allocation optimization
        • 2. Handover optimization
          RF Optimization Principles- Coverage and capacity optimization
          • 1. Interference analysis and mitigation
            • 2. Coverage analysis and enhancement
              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. Performance degradation root cause analysis
                    • 2. Fault analysis workflows

                      >> SRAN-Radio-Network-Performance-Optimization Learning Materials <<

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                      Nokia MN: NCSS NPS - SRAN Radio Network Performance Optimization Certification Exam | GS40-NPS-SRPER-E-S03-2510 Sample Questions (Q18-Q23):

                      NEW QUESTION # 18
                      A slice supporting sensors and smart meters would be categorized as:

                      Answer: D

                      Explanation:
                      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.


                      NEW QUESTION # 19
                      Which parameter defines the PRACH format ?

                      Answer: C

                      Explanation:
                      The correct answer is B .
                      The prachConfigurationIndex defines the PRACH configuration, including the PRACH time-domain occasions and the associated PRACH format according to the PRACH configuration tables. In 5G NR, PRACH configuration is based on 3GPP-defined PRACH tables, where the configuration index maps to the PRACH format and PRACH occasion structure.
                      The other options have different meanings:
                      A). msg1-FrequencyStart defines the frequency-domain starting position of PRACH occasion resources.
                      C). prachRootSequenceIndex defines the root sequence used for PRACH preamble generation.
                      D). totalNumberOfRAPreambles defines how many random access preambles are available.
                      Therefore, the parameter that defines the PRACH format is:
                      prachConfigurationIndex.


                      NEW QUESTION # 20
                      In the case of 5G SA, which of the following triggers the Radio Link Failure, or RLF, handling mechanism?

                      Answer: B

                      Explanation:
                      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.


                      NEW QUESTION # 21
                      Evaluate the impact of extended FR2 cell range on power consumption.

                      Answer: B

                      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 # 22
                      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: A

                      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 # 23
                      ......

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