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H35-561 Exam Questions & Answers

HCIP LTE RNP&RNO V1.0  •  Huawei

60 Questions Updated Jul 2026 99% Pass Rate
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About H35-561 Exam

The H35-561 HCIP LTE RNP&RNO V1.0 certification exam by Huawei is a comprehensive assessment designed for network professionals seeking to validate their expertise in LTE radio network planning and radio network optimization. This advanced certification covers critical topics including radio network architecture, coverage optimization, capacity planning, interference management, and performance analysis. Candidates will demonstrate proficiency in utilizing Huawei's tools and methodologies to design, deploy, and optimize LTE networks effectively. The exam targets experienced telecom engineers, network planners, and optimization specialists who want to advance their careers and enhance their technical credentials in the rapidly evolving mobile telecommunications industry.

To successfully pass the H35-561 exam, candidates benefit significantly from utilizing updated exam dumps and comprehensive practice tests that mirror the actual certification assessment. These study resources provide detailed explanations of complex concepts, real-world scenarios, and challenging questions that reinforce understanding of LTE network fundamentals and optimization techniques. Practice tests help identify knowledge gaps and build confidence before the actual exam, while exam dumps offer quick reference materials for last-minute review. By combining theoretical study with hands-on practice using these preparation materials, aspiring HCIP-certified professionals can maximize their chances of achieving a passing score and establishing themselves as qualified experts in LTE radio network planning and optimization.

Exam Topics & Objectives

TE Network Fundamentals
Radio Network Planning
Radio Network Optimization
LTE Security
LTE Operations and Maintenance
Emerging Technologies in LTE
Practical LTE Implementation

4-Week Study Plan for H35-561

Week 1: TE Network Fundamentals & Radio Network Planning Foundations

  • Study LTE network architecture (EPC, RAN, core network components)
  • Review frequency bands, spectrum allocation, and bandwidth configurations
  • Learn channel structure: physical channels (PDSCH, PUSCH, PUCCH, PRACH)
  • Understand reference signals and their purposes (CRS, SRS, DMRS)
  • Study path loss models and propagation mechanisms for RNP
  • Practice link budget calculations for downlink and uplink
  • Review coverage planning basics and cell range estimation
  • Complete 50+ practice questions on network fundamentals

Week 2: Radio Network Planning Advanced Topics & Initial Optimization Concepts

  • Master site planning and dimensioning procedures
  • Study interference analysis and mitigation strategies (ICIC, eICIC)
  • Learn capacity planning and traffic forecasting methods
  • Review antenna types, gains, and their impact on coverage patterns
  • Understand power control mechanisms and their planning implications
  • Study handover procedures and their role in RNP
  • Begin optimization fundamentals: KPIs (RSRP, SINR, throughput)
  • Learn drive test procedures and measurement types
  • Complete lab exercises on network planning tools simulation

Week 3: Radio Network Optimization, LTE Security & Operations

  • Deep dive into RNO: coverage optimization, capacity optimization, quality optimization
  • Study parameter optimization (cell-specific offset, CQI offset, TTT)
  • Learn neighbor cell list management and handover optimization
  • Review load balancing and traffic steering techniques
  • Study LTE security architecture: EPS security, authentication, encryption
  • Understand NAS and AS security procedures
  • Learn key establishment and derivation processes
  • Study OMC functions, OAM architecture, and fault management
  • Review performance monitoring and KPI analysis methods
  • Complete 60+ mixed practice questions on RNO and security

Week 4: LTE Operations & Emerging Technologies - Final Review & Practice Exams

  • Study troubleshooting procedures and common LTE issues
  • Learn maintenance operations: software updates, configuration management
  • Review alarm handling and performance optimization workflows
  • Study CoMP (Coordinated Multi-Point) concepts and implementation
  • Learn D2D communication and its impact on networks
  • Review LTE-M and NB-IoT integration in LTE networks
  • Understand network slicing preparedness for 5G evolution
  • Study emerging RAN technologies relevant to LTE optimization
  • Take 2 full-length mock exams (100 questions each) under timed conditions
  • Review weak areas from mock exam results
  • Perform final review of all seven exam domains
  • Study exam question patterns and answer explanation details

Sample H35-561 Questions

Practice with real exam-style questions. Reveal answers to verify your knowledge.

Q1 MultipleChoice

Which of the following options are EPS bearers? (multiple choices)

Q2 MultipleChoice

Antenna feed adjustment refers to the adjustment of antenna azimuth and downtilt angle. The most commonly used method is to eliminate cross-area coverage, weak coverage, and PCI mode 3 conflicting cells.

Q3 MultipleChoice

Which signaling is triggered by the statistics of the successful RRC connection establishment?

Q4 MultipleChoice

In order to improve the efficiency of importing and analyzing data, Assistant supports drive test log filtering. What types of filtering methods are divided into? (multiple choice)

Q5 MultipleChoice

Regarding the description of TA, which of the following options is wrong?

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Frequently Asked Questions

The H35-561 is Huawei's HCIP (Huawei Certified ICT Professional) certification exam for LTE RNP&RNO (Radio Network Planning & Radio Network Optimization) V1.0. It validates professionals' expertise in planning and optimizing LTE radio networks according to Huawei standards.

This certification is ideal for network engineers, radio network planners, and optimization specialists working with LTE networks. It's particularly suitable for professionals who want to advance their career in Huawei's LTE ecosystem and demonstrate advanced technical competency.

The exam covers LTE network architecture, radio propagation principles, network planning methodologies, site survey techniques, parameter configuration, and optimization strategies. It also includes coverage prediction, capacity planning, and troubleshooting of LTE radio networks.

Typically, Huawei certification exams require a passing score of 600 out of 1000 points. However, candidates should verify the current passing criteria with Huawei's official exam documentation, as requirements may be updated periodically.

Candidates should study Huawei's official training materials, take authorized training courses, and practice with sample questions and lab exercises. Hands-on experience with LTE network planning tools and real-world network scenarios is highly recommended for success.
Exam Details
  • Exam CodeH35-561
  • VendorHuawei
  • Total Questions60
  • LanguageEnglish
  • Last UpdatedJul 22, 2026
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