H35-580_V2.0 Online Version - H35-580_V2.0 Valid Exam Answers

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Huawei H35-580_V2.0 Exam Overview:

Certification Vendor:Huawei
Exam Name:Huawei Certified ICT Associate - 5G Radio Network Planning & Optimization V2.0 (HCIA-5G-RNP&RNO)
Exam Number:H35-580_V2.0
Exam Format:Multiple choice questions, Single choice questions
Available Languages:English
Exam Duration:90 minutes
Related Certifications:HCIA
HCIP-5G
HCIE-5G
Recommended Training:Huawei HCIA-5G Training Courses
Exam Registration:Huawei Talent Certification Portal
Sample Questions:Huawei H35-580_V2.0 Sample Questions
Exam Way:Online or authorized test center proctored exam
Pre Condition:Basic understanding of mobile communications and radio network principles is recommended.
Official Syllabus URL:https://e.huawei.com/en/talent/

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By passing the Huawei H35-580_V2.0 Certification Exam, professionals can demonstrate their expertise in 5G RNP&RNO technologies and enhance their career prospects. HCIA-5G-RNP&RNO V2.0 certification exam is recognized globally and is a valuable addition to the resumes of professionals working in the ICT industry. With the growth of 5G technology, the demand for 5G RNP&RNO professionals is expected to increase, and this certification exam provides professionals with a competitive edge in the job market.

Huawei HCIA-5G-RNP&RNO V2.0 Sample Questions (Q66-Q71):

NEW QUESTION # 66
How many RBs are included when a bandwidth of 100 MHz and a subcarrier spacing of 60 kHz are used in a
5G cell?

Answer: D

Explanation:
Explanation
To find the number of RBs in a 5G cell, we need to know the bandwidth and the subcarrier spacing of the cell.
The bandwidth is the total frequency range allocated for the cell, while the subcarrier spacing is the frequency separation between adjacent subcarriers in the cell. A RB is a group of 12 consecutive subcarriers in the frequency domain 12. Therefore, the number of RBs in a 5G cell can be calculated by dividing the bandwidth by the product of the subcarrier spacing and 12.
Given that the bandwidth is 100 MHz and the subcarrier spacing is 60 kHz, we can use the following formula to find the number of RBs:
Number of RBs = Bandwidth / (Subcarrier spacing * 12) Number of RBs = 100 MHz / (60 kHz * 12) Number of RBs = 100000 kHz / 720 kHz Number of RBs = 138.888...
However, since the number of RBs must be an integer, we need to round it down to the nearest multiple of
3 3. This is because the NR standard defines different frequency ranges for different subcarrier spacings, and each frequency range has a minimum and maximum number of RBs that are multiples of 3 4. For example, for subcarrier spacing of 60 kHz, the frequency range is from 24250.08 MHz to 52600.08 MHz, and the minimum and maximum number of RBs are 66 and 273, respectively.
Therefore, the closest multiple of 3 to 138.888... is 135. However, this number is not valid because it is lower than the minimum number of RBs for subcarrier spacing of 60 kHz. The next valid multiple of 3 is 273, which is also the maximum number of RBs for subcarrier spacing of 60 kHz. Therefore, the correct answer is C. 273.


NEW QUESTION # 67
In order to achieve ideal coverage, what is the clearance requirement around an antenna?

Answer: C

Explanation:
Explanation
In order to achieve ideal coverage, there should be a clearance zone around an antenna of at least d, where d is the Fraunhofer or Rayleigh distance at which the near/far-field transition zone exists 17. This distance depends on the largest dimension of the antenna, D, and the operating wavelength, \uF06C. Ideally, D should be at least a half of a wavelength, which gives a minimum clearance zone of a half-wavelength. For example, at 2.4 GHz, the wavelength is about 0.125 m, so the minimum clearance zone is about 0.0625 m. However, in practical situations, this clearance zone is often compromised and the effects must be determined through simulation or empirical measurement 18. A general guideline is to have a clearance zone of 5-10 m around an antenna to avoid significant degradation of performance 19. Therefore, the best answer is C.


NEW QUESTION # 68
Which of the following items can be used for measurement evaluation in idle mode during coverage problem analysis?

Answer: C

Explanation:
Explanation
According to the HCIA-5G V2.0 Exam Outline, SS-RSRP is the reference signal received power of the synchronization signal block (SSB) in NR systems. It can be used for measurement evaluation in idle mode during coverage problem analysis, which corresponds to option D. OPMI is an indicator of uplink interference power measurement, CSI-RSRP is the reference signal received power of the channel state information reference signal (CSI-RS), and SRS is the sounding reference signal. These indicators are used for measurement evaluation in connected mode, not idle mode, which correspond to options A, B, and C.


NEW QUESTION # 69
The PCFICH and PHICH channels have been deleted from the physical layer in 5G compared with LTE.

Answer: B

Explanation:
According to the 5G NR Protocol Structure Changes - An Overview , the PCFICH and PHICH channels have been deleted from the physical layer in 5G compared with LTE, because they are no longer needed due to the flexible frame structure and numerology of 5G NR.


NEW QUESTION # 70
Which of the following statements about the advantages of the Rayce ray tracing model are correct?(Select All that Apply)

Answer: A,B

Explanation:
Explanation
The Rayce ray tracing model is a propagation model that computes propagation paths using 3-D environment geometry 3. It is based on the shooting and bouncing rays (SBR) method, which launches rays from the transmitter and traces their reflections and diffractions until they reach the receiver or are attenuated below a threshold 4. The Rayce ray tracing model offers more accurate path searching, reflection, and diffraction energy calculation for electromagnetic wave propagation than other models, such as empirical models or deterministic models 5. It also offers higher level prediction accuracy, especially for massive MIMO systems that use beamforming techniques 6. The Rayce ray tracing model is not applicable only to C-band, but also to mmWave and other frequency bands 7.


NEW QUESTION # 71
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