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We present our Nokia SRAN-Radio-Network-Performance-Optimization real questions in PDF format. It is beneficial for those applicants who are busy in daily routines. The SRAN-Radio-Network-Performance-Optimization PDF QUESTIONS contains all the exam questions which will appear in the real test. You can easily get ready for the examination in a short time by just memorizing SRAN-Radio-Network-Performance-Optimization Actual Questions.
| Section | Weight | Objectives |
|---|---|---|
| SRAN Architecture and Fundamentals | 15-20% | - SRAN network architecture overview - SRAN solution components and functions - Single RAN integration principles - Radio access concepts and principles |
| Radio Network Optimization Techniques | 25-30% | - Capacity optimization strategies - Interference analysis and mitigation - Coverage optimization methods - Parameter tuning best practices - Handover optimization - Load balancing techniques |
| SRAN Optimization Tools and Reports | 10-15% | - Automated optimization features - Configuration management for optimization - Report generation and interpretation - Nokia NetAct and performance tools |
| Performance Troubleshooting | 20-25% | - Troubleshooting tools utilization - Common performance issues diagnosis - Optimization case studies - Root cause analysis methodologies - Network failure identification and resolution |
| Radio Network Performance Monitoring | 20-25% | - Performance monitoring tools and dashboards - Performance data collection and analysis - Real-time network monitoring techniques - Threshold configuration and alerting - KPI definition and measurement |
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NEW QUESTION # 26
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 # 27
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: B
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 # 28
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?
Answer: A
NEW QUESTION # 29
What is the mandatory prerequisite to implement DSS , or Dynamic Spectrum Sharing ?
Answer: A
Explanation:
The correct answer is D .
DSS allows LTE and 5G NR to share the same spectrum dynamically , instead of requiring a separate dedicated NR carrier. Therefore, dedicated NR spectrum is not mandatory. DSS is also not limited to TDD only; it is commonly used in FDD spectrum refarming scenarios as well. Public RAN references describe DSS as a mechanism where LTE and NR coexist in the same frequency band and share spectrum dynamically.
From an SRAN architecture point of view, the mandatory deployment condition is that the radio platform must support LTE and NR coexistence on the same radio resources. That requires RF module sharing or a DSS-capable shared radio configuration.
So the correct prerequisite is:
RF module sharing.
NEW QUESTION # 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?
Answer: A
Explanation:
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.
NEW QUESTION # 31
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