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Huawei H35-580_V2.0 exam consists of multiple-choice questions that cover a wide range of topics related to 5G network development and deployment. H35-580_V2.0 exam is conducted in English and is available globally through the Huawei Authorized Learning Partner (HALP) network. Candidates who pass the exam will receive a Huawei HCIA-5G-RNP&RNO V2.0 certificate, which is recognized by Huawei and the global telecommunications industry.

To pass the Huawei H35-580_V2.0 (HCIA-5G-RNP&RNO V2.0) Certification Exam, candidates must have a good understanding of the 5G Radio Network Planning and Optimization concepts. They must also have practical experience in designing, deploying and managing 5G Radio Networks. H35-580_V2.0 Exam consists of multiple-choice questions and practical exercises, which test the candidate's theoretical knowledge and practical skills. H35-580_V2.0 exam is challenging but highly rewarding, and it is a great way for IT professionals to demonstrate their expertise in the field of 5G Radio Network Planning and Optimization.

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The ExamBoosts is one of the leading platforms that has been offering real and valid HCIA-5G-RNP&RNO V2.0 (H35-580_V2.0) exam practice test questions. These HCIA-5G-RNP&RNO V2.0 (H35-580_V2.0) exam questions are designed and verified by Huawei H35-580_V2.0 subject matter experts. They work closely together and put all their expertise to check the Huawei H35-580_V2.0 exam questions one by one.

Huawei H35-580_V2.0 (HCIA-5G-RNP&RNO V2.0) Exam is a certification exam offered by Huawei Technologies Co., Ltd. H35-580_V2.0 exam is designed to test the knowledge and skills of professionals who are interested in working with 5G Radio Network Planning and Optimization. H35-580_V2.0 exam covers topics such as 5G network architecture, 5G radio access technology, 5G network planning and optimization, and 5G network troubleshooting. The H35-580_V2.0 Exam is intended for network engineers, network architects, and other professionals who have experience working with 5G networks.

Huawei HCIA-5G-RNP&RNO V2.0 Sample Questions (Q21-Q26):

NEW QUESTION # 21
In order to achieve ideal coverage, what is the clearance requirement around an antenna?

Answer: D

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 # 22
Which of the following AAUs support vertical beamforming?(Select All that Apply)

Answer: A,D

Explanation:
Explanation
According to the 5G Beamforming: An Engineer's Overview, 32T32R and 64T64R AAUs support vertical beamforming. AAU stands for Active Antenna Unit, which is a type of antenna that integrates RF and antenna functions in one unit. Vertical beamforming is a technique that uses multiple antenna elements in a vertical array to form beams in different elevation angles. 32T32R and 64T64R AAUs have enough antenna elements to support vertical beamforming, while 8T8R and 4T4R AAUs do not have enough antenna elements to support vertical beamforming effectively.


NEW QUESTION # 23
Among the A3 event parameters for intra-frequency handover, which of the following parameters cannot be configured individually based on QCI?

Answer: A

Explanation:
CIO is configured per neighbor relation and is not typically differentiated according to QCI.


NEW QUESTION # 24
For a 100 MHz cell, when the downlink uses Type 0 allocation, what is the minimum resource allocated in the frequency domain?

Answer: C


NEW QUESTION # 25
In NSA networking, which of the following methods can be used to support X2 interconnection between an eNodeB and a gNodeB?(Select All that Apply)

Answer: A,B

Explanation:
Explanation
According to the 5G EN-DC Architecture and Interfaces, there are two methods that can be used to support X2 interconnection between an eNodeB and a gNodeB in NSA networking:
Interconnection through CI interfaces on the UMPT boards in different subracks: The UMPT is a universal main processing and transmission unit that provides main processing and transmission functions for a subrack. The UMPT has two CI interfaces that can be used for X2 interconnection with other base stations. The CI interfaces support CPRI, OBSAI, and eCPRI protocols and can use optical fibers or electrical cables for transmission. The CI interfaces can be configured as master or slave interfaces depending on the network topology.
IPRAN interconnection between subracks: IPRAN is an IP-based radio access network that uses IP transport technologies to carry base station traffic over Ethernet or MPLS networks. IPRAN can support X2 interconnection betweendifferent base stations by using IP routers or switches. IPRAN can provide flexible networking, high bandwidth, low latency, and high reliability for X2 interconnection.
The other two methods are not valid for X2 interconnection between an eNodeB and a gNodeB:
Interconnection via backplane in a subrack: This method is only applicable for X2 interconnection between two eNodeBs or two gNodeBs that are installed in the same subrack. The backplane is the internal bus that connects different boards within a subrack. The backplane supports CPRI, OBSAI, and eCPRI protocols and can provide high-speed data transmission between boards.
Interconnection through HEI interfaces on the UBBP boards in different subracks: This method is not supported by Huawei base stations. The HEI interface is a high-speed Ethernet interface that is used for data transmission between base stations and core networks or transport networks. The HEI interface supports S1, Xn, F1, E1, and N2 protocols and can use optical fibers or electrical cables for transmission. The HEI interface cannot be used for X2 interconnection between base stations.
Therefore, the correct answer is A and D.


NEW QUESTION # 26
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