Computing, IT Systems, and Emerging Technologies Mali

5G Network Architecture and Deployment Training Course

5G network architecture and deployment has moved from radio upgrade planning to whole-platform transformation, because service-based core design, Standalone migration, and network slicing now shape capacity, latency, and security outcomes across the full mobile stack.5G network architecture and deployment is the discipline of designing, validating, and operationalizing 5G Core, RAN, transport, and deployment models in line with 3GPP guidance and network performance targets. It enables professionals to assess migration readiness, configure deployment scenarios, and document architecture decisions that support low-latency and scalable services. For telecom network architects, RAN engineers, core network planners, solution architects, and 5G program leads, the pressure now comes from cloud-native integration, automation of network operations, and the need to defend every design choice with measurable KPIs and security controls.

This course bridges that gap with practical work on 3GPP release-driven architecture, SBA design, NSA-to-SA transition planning, and deployment artefacts such as migration maps, core function diagrams, RAN planning worksheets, and rollout decision logs. You leave with a structured way to turn 5G network architecture and deployment decisions into evidence-based designs that can be reviewed, implemented, and reported with confidence.

Duration
5 Days
Duration
Certificate
Certificate
Included
Delivery
Instructor-Led
Delivery
Level
Advanced
Level
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USD 1,050
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Mon - Fri (5 Days)
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Mon - Fri (5 Days)
USD 1,050

Classroom Training

In-person sessions at premier locations

Nairobi Kenya
Mon - Fri
5 Days
USD 1,800
Kigali Rwanda
Mon - Fri
5 Days
USD 2,100
Dubai United Arab Emirates (UAE)
Mon - Fri
5 Days
USD 4,600
Zanzibar Tanzania
Mon - Fri
5 Days
USD 2,900
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In-person training at our premier venues — pick a city and date that works for you.

Location Duration Fee Language
Nairobi, Kenya Mon - Fri (5 Days) USD 1,800 English See dates & reserve →
Kigali, Rwanda Mon - Fri (5 Days) USD 2,100 English See dates & reserve →
Dubai, United Arab Emirates (UAE) Mon - Fri (5 Days) USD 4,600 English See dates & reserve →
Zanzibar, Tanzania Mon - Fri (5 Days) USD 2,900 English See dates & reserve →
Abuja, Nigeria Mon - Fri (5 Days) USD 3,100 English See dates & reserve →
Addis Ababa, Ethiopia Mon - Fri (5 Days) USD 2,700 English See dates & reserve →
Mombasa, Kenya Mon - Fri (5 Days) USD 1,900 English See dates & reserve →
Cape Town, South Africa Mon - Fri (5 Days) USD 4,200 English See dates & reserve →
Johannesburg, South Africa Mon - Fri (5 Days) USD 3,800 English See dates & reserve →
Kampala, Uganda Mon - Fri (5 Days) USD 2,100 English See dates & reserve →
Pretoria, South Africa Mon - Fri (5 Days) USD 3,600 English See dates & reserve →
Lagos, Nigeria Mon - Fri (5 Days) USD 2,500 English See dates & reserve →
Arusha, Tanzania Mon - Fri (5 Days) USD 2,000 English See dates & reserve →
Dar es Salaam, Tanzania Mon - Fri (5 Days) USD 2,094 English See dates & reserve →
Accra, Ghana Mon - Fri (5 Days) USD 3,800 English See dates & reserve →
Bangalore, India Mon - Fri (5 Days) USD 4,600 English See dates & reserve →
Muscat, Oman Mon - Fri (5 Days) USD 4,800 English See dates & reserve →
Naivasha, Kenya Mon - Fri (5 Days) USD 1,900 English See dates & reserve →

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About the Course

Organizations investing in 5G want designs they can prove, not just diagrams they can present. In 5G network architecture and deployment, you need to show competence in 3GPP-aligned design logic, Service-Based Architecture (SBA), Standalone and Non-Standalone deployment planning, RAN and core separation, and KPI-driven capacity reasoning. This matters because the architecture choices you make affect latency, throughput, roaming behavior, security exposure, and how quickly a network can support new services.

This course turns scattered technical knowledge into a practical design system for 5G network architecture and deployment. You will practice using 3GPP architecture concepts, SBA component mapping, NSA-to-SA migration analysis, network slicing design, PFCP awareness, and CUPS planning, while also being introduced to adjacent topics such as MEC and EPC interworking at an overview level. What you will learn: you will analyze 5G network architecture, map core and RAN functions, and design deployment options for Standalone and Non-Standalone scenarios. You will also build a migration plan, a deployment checklist, and a technical reporting pack that can support stakeholder review.

Advanced 5G work is often constrained by spectrum availability, transport readiness, legacy EPC dependencies, security review cycles, and uneven cloud maturity. This 5G network architecture and deployment course is designed for professionals who must make credible decisions under those constraints, where the cost of a weak design appears later as poor coverage, unstable handover behavior, or delayed service launch.


Target Audience

This course is built for telecom professionals who already work with mobile network design and now need to handle 5G network architecture and deployment decisions with greater precision. It suits people who must translate architecture choices into migration plans, planning outputs, security considerations, and executive-ready technical reports.

  • 5G Network Architect responsible for core and RAN design decisions
  • RAN Planning Engineer handling coverage, capacity, and deployment assumptions
  • Core Network Engineer validating 5GC functions and service flows
  • Telecom Solution Architect shaping enterprise and operator deployment options
  • Mobile Network Optimization Engineer reviewing KPI and performance impacts
  • 5G Program Manager coordinating rollout dependencies and milestones
  • Transport Network Engineer aligning fronthaul, midhaul, and backhaul readiness
  • Network Security Architect assessing 5GC security and identity controls
  • EPC Migration Specialist planning NSA to SA transition paths
  • Telco Cloud Architect supporting cloud-native 5GC deployment models

Course Objectives

This course equips you to plan, execute, and measure 5G network architecture and deployment initiatives that improve design credibility, support deployment readiness, and strengthen technical governance.

  • Assess 5G readiness using 3GPP architecture concepts, NSA and SA deployment models, and migration constraints.
  • Apply Service-Based Architecture (SBA) principles to map 5GC functions, interfaces, and service dependencies.
  • Design a 5G core architecture diagram with CUPS, network slicing, and EPC interworking considerations.
  • Build a 5G RAN deployment plan using coverage, capacity, and spectrum planning assumptions.
  • Calculate deployment trade-offs using KPI logic for latency, throughput, and scaling scenarios.
  • Evaluate architecture choices against 3GPP release assumptions, security risks, and transport limitations.
  • Navigate stakeholder review requirements for core, RAN, transport, and security design sign-off.
  • Synthesize findings into a deployment brief, migration roadmap, and technical reporting pack.

Requirements & Prerequisites

Prerequisites: You should already have working knowledge of LTE/4G architecture, radio access terminology, and IP networking fundamentals. Familiarity with 3GPP concepts, core network functions, and basic telecom planning terminology will help you get the most from the 5G network architecture and deployment exercises. Delivery note: No coding is required. Advanced concepts are taught at the operational application level, with architecture design and planning exercises based on real deployment scenarios, not production engineering.


Local Application and Business Return in Mali

How participants can apply the training in local operating conditions, and the return their organisation can plan for.

How participants apply this

Participants apply this course by mapping 5G core, RAN, and transport dependencies before deployment decisions are made. In day-to-day work, that means reviewing rollout options, identifying what can stay on LTE-based infrastructure and what must move to a standalone core, and documenting the impact on latency, capacity, and resilience. They can also use the course outputs to support vendor evaluation, migration sequencing, and internal design reviews. For project teams, the practical value is a clearer architecture pack that can be shared across radio, core, operations, and leadership functions.

Expected ROI

Within 6–12 months, the main return is fewer design reworks and better deployment sequencing because teams can identify architecture gaps earlier. Organizations also gain stronger rollout governance, since the course encourages evidence-based decisions and clearer documentation for migration, testing, and acceptance. Over time, this typically reduces delivery risk and improves the quality of cross-team coordination on complex mobile upgrades. The business outcome is a more predictable path to higher-capacity and lower-latency services.

Training Methodology

This is a practical, outcome-driven course designed to turn 5G network architecture and deployment aspiration into measurable action and credible reporting.

Methodology includes:

  • Calculate coverage and capacity assumptions using RAN planning worksheets and KPI inputs.
  • Simulate an NSA-to-SA migration decision under spectrum and transport constraints.
  • Assess a 5GC design against SBA, CUPS, and 3GPP release assumptions.
  • Map stakeholder approval paths for radio, core, transport, and security sign-off.
  • Review cases from telecom operator, private network, IoT, and smart-city deployments.
  • Build a rollout brief and architecture register under time and budget limits.
  • Reflect on design assumptions using KPI benchmarks, latency targets, and security findings.

Upcoming Sessions

Next available dates worldwide

Virtual

(Zoom) Training
USD 1,050
29th Jun-3rd Jul 2026

Nairobi

Kenya
USD 1,800
6th Jul-10th Jul 2026

Kigali

Rwanda
USD 2,100
6th Jul-10th Jul 2026

Dubai

United Arab Emirates (UAE)
USD 4,600
29th Jun-3rd Jul 2026

Addis Ababa

Ethiopia
USD 2,700
29th Jun-3rd Jul 2026

Abuja

Nigeria
USD 3,100
13th Jul-17th Jul 2026

Zanzibar

Tanzania
USD 2,900
20th Jul-24th Jul 2026

Mombasa

Kenya
USD 1,900
29th Jun-3rd Jul 2026

Cape Town

South Africa
USD 4,200
20th Jul-24th Jul 2026

Johannesburg

South Africa
USD 3,800
6th Jul-10th Jul 2026

Pretoria

South Africa
USD 3,600
29th Jun-3rd Jul 2026

Kampala

Uganda
USD 2,100
13th Jul-17th Jul 2026

Lagos

Nigeria
USD 2,500
29th Jun-3rd Jul 2026

Certification

Recognized credentials that advance your career

Participants who complete the 5G Network Architecture and Deployment Training Program earn a Trainingcred Certificate of Achievement, demonstrating professional competence and alignment with global standards in learning and development.

NITA Accredited

Accredited by the National Industrial Training Authority, ensuring programs meet nationally recognized standards of quality and relevance.

CPD Certified

Recognized by the CPD Certification Service, ensuring every program meets internationally benchmarked standards of professional excellence.

Why this course earns its place on your CV

Accredited training, practitioner trainers, and peers on the same career track — the three things real expertise is built on.

Effective Learning & Skill Development

  • Build expertise with structured, outcome-driven learning.
  • Equip individuals and teams with skills that grow with industry needs.
  • Reinforce learning through real-world scenarios, case studies and practical exercises.

Career Growth & Professional Advancement

  • Apply what you learn with a proven methodology that ensures lasting impact.
  • Develop immediately usable skills that translate directly into workplace success.
  • Gain the expertise needed for career advancement and leadership roles.

Training Optimization & Learning Excellence

  • Tailor training to industry-specific challenges and organizational goals.
  • Use data-driven insights and automation to enhance training effectiveness.
  • Evaluate progress and ensure long-term learning success.

Real Results from Real Professionals

Thousands of professionals have transformed their careers through our training programs. Now, it's your turn.

Local market advisory

Course relevance for Mali

A country-specific view of market pressure, regulatory context, and practical business return behind this training.

  • Market context
  • Regulatory fit
  • Business application

Why this course matters in Mali

A market-specific advisory on the operating pressures this course helps teams address.

5G network architecture and deployment matters in Mali because operators and enterprise buyers are moving from basic coverage expansion toward more capable, software-driven mobile networks that can support higher capacity, lower latency, and more flexible service delivery. For teams planning radio, core, transport, and migration work, the course helps turn 5G design choices into deployment decisions that can be defended on cost, performance, and security grounds. It is most relevant for telecom network architects, RAN and core engineers, transport planners, and program leads who need to decide how to evolve from legacy mobile cores toward standalone 5G-ready architecture.
Migration planning is the main decision point

In a market like Mali, the key question is not whether 5G architecture exists, but how to sequence NSA-to-SA migration without disrupting existing mobile services. That makes rollout planning, dependency mapping, and cutover governance more valuable than isolated radio design.

Core and transport become as important as radio

5G performance depends on the full stack, so teams must align core network functions, backhaul capacity, and latency targets rather than treating the RAN as the only engineering workstream. This course supports cross-functional decisions between radio, IP transport, and core teams.

Operational evidence matters more than theoretical design

Because 5G architecture choices affect throughput, reliability, and security controls, local operators need documentation they can use in vendor reviews, rollout approvals, and executive reporting. The course is relevant where teams must justify architecture choices with measurable KPIs and implementation artefacts.

This training is timely because 5G deployments are increasingly shaped by cloud-native core design, service-based architecture, and phased migration from non-standalone to standalone networks. In Mali, that raises the need for engineers who can translate architecture decisions into practical rollout plans, especially where operators must protect service continuity while modernising mobile infrastructure.

Regulatory context in Mali

The local regulators, laws, and frameworks shaping this discipline, with the curriculum mapped to what teams need to know.

2

Regulators

  • AMRTP National telecom regulator relevant to spectrum, licensing, and network deployment oversight for 5G rollouts.
  • MCENMA Government ministry relevant to digital infrastructure policy and national telecom modernization priorities.

Frequently Asked Questions

Got questions? We've gathered the answers to common queries to help you feel confident and informed.

No. The course is useful for teams moving from LTE planning into 5G because it explains the architectural building blocks, migration logic, and deployment decisions in a structured way. It is especially helpful for engineers who already understand mobile networks but need to work on 5G core and standalone planning.

Network architecture, RAN, core, transport, and operations teams should attend first because they shape the technical design and rollout sequence. Program managers and solution architects also benefit because they need to coordinate vendor, budget, and migration decisions across the full network stack.

Delegates should be able to produce migration maps, core function diagrams, rollout decision logs, and RAN planning worksheets. Those outputs help teams compare deployment scenarios and explain why a specific architecture was selected.

It gives internal teams a better basis for reviewing vendor proposals because they can test whether the proposed architecture fits their latency, scalability, and security requirements. That makes procurement and technical acceptance more evidence-based.

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