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Next-Generation Wireless Technologies (5G and Beyond) Course

USD $59.00 USD $249.00Price range: USD $59.00 through USD $249.00

Explore next-generation wireless technologies, from 5G fundamentals to future advancements like 6G. Learn about 5G architecture, applications, deployment challenges, and analyzing next-gen networks.

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Aim

This course provides a comprehensive introduction to next-generation wireless technologies—covering 5G fundamentals and the emerging landscape of 5G-Advanced and 6G (“beyond 5G”). Participants will learn radio access concepts, spectrum and propagation, massive MIMO, beamforming, network slicing, edge computing, IoT/mMTC, URLLC, private 5G, and the evolving role of AI in network optimization. The program bridges theory with deployment realities such as planning, performance KPIs, security, and compliance. The course culminates in a capstone project where learners design a 5G/6G Network Solution Blueprint for a real-world application (smart manufacturing, smart city, healthcare campuses, logistics hubs, etc.).

Program Objectives

  • 5G Foundations: Understand 5G architecture, core network concepts, and key service types (eMBB, URLLC, mMTC).
  • Radio & Spectrum Literacy: Learn how spectrum bands, propagation, and channel behavior impact design.
  • Advanced RAN: Understand massive MIMO, beamforming, and densification strategies.
  • Network Slicing & Edge: Learn how slicing and MEC enable application-specific performance guarantees.
  • Private 5G: Learn enterprise deployment models for campuses and industrial environments.
  • Security & Reliability: Understand threat models, availability planning, and secure operations.
  • Beyond 5G / 6G Trends: Explore emerging directions such as AI-native networks, THz research, and integrated sensing & communications.
  • Hands-on Outcome: Create an end-to-end network blueprint with KPIs, architecture, and rollout plan.

Program Structure

Module 1: Wireless Evolution and the 5G Value Proposition

  • From 2G to 5G: key technical shifts and why they matter.
  • 5G service classes: eMBB, URLLC, mMTC—use-cases and KPIs.
  • Deployment scenarios: urban, rural, indoor, industrial, and campus networks.
  • Performance vocabulary: latency, reliability, throughput, spectral efficiency, and coverage.

Module 2: 5G Architecture and Core Network Concepts

  • 5G system overview: RAN, transport, and core roles.
  • Core concepts: control/user plane separation, service-based architecture (high-level).
  • Virtualization and cloud-native telecom: NFV/containers concepts and orchestration basics.
  • Standalone vs non-standalone: deployment tradeoffs (conceptual).

Module 3: Radio Fundamentals, Spectrum, and Propagation

  • Spectrum bands: sub-6 GHz vs mmWave—coverage/capacity tradeoffs.
  • Propagation basics: path loss, shadowing, multipath, penetration, and fading concepts.
  • Channel quality metrics: SINR, RSRP/RSRQ concepts (overview) and their impact on user experience.
  • Link budgeting and planning mindset: coverage modeling and practical constraints.

Module 4: Massive MIMO, Beamforming, and Advanced RAN

  • Massive MIMO basics: spatial multiplexing and capacity gains.
  • Beamforming concepts: analog/digital/hybrid beamforming intuition.
  • RAN densification: small cells, indoor coverage, and interference coordination (conceptual).
  • Mobility and handovers: ensuring continuity in dense networks.

Module 5: Network Slicing, QoS, and Edge Computing (MEC)

  • QoS and traffic classes: mapping applications to performance guarantees.
  • Network slicing concepts: isolating resources for enterprise/mission-critical services.
  • MEC: pushing compute closer to users for low latency and local processing.
  • Use-cases: smart factories, AR/VR, video analytics, and connected vehicles (overview).

Module 6: 5G for IoT and Industry (mMTC + URLLC)

  • IoT at scale: device density, power constraints, and connectivity patterns.
  • URLLC concepts: deterministic-ish behavior, jitter control, and reliability targets (high-level).
  • Industrial networking needs: time-sensitive communications and operational safety constraints.
  • Integration with existing systems: Wi-Fi, Ethernet, LPWAN, and hybrid architectures.

Module 7: Private 5G Networks and Enterprise Deployment

  • Why private 5G: security, QoS control, and operational autonomy.
  • Deployment models: on-prem core, hosted core, shared RAN, and neutral host concepts.
  • Site survey and planning: indoor propagation, coverage design, and capacity planning mindset.
  • Operational readiness: monitoring, SLAs, and network operations basics.

Module 8: Security, Privacy, and Resilience

  • Threat landscape: signaling attacks, SIM/identity risks, misconfiguration, and supply chain concerns.
  • Security controls: authentication concepts, encryption, segmentation, and zero-trust mindset.
  • Resilience planning: redundancy, failover, disaster recovery, and uptime KPIs.
  • Compliance awareness: lawful intercept considerations and data governance basics (high-level).

Module 9: 5G-Advanced and 6G (“Beyond 5G”) Trends

  • 5G-Advanced: enhanced RAN intelligence, improved XR support, and better energy efficiency (overview).
  • 6G directions: AI-native networks, integrated sensing & communications, digital twins for networks (conceptual).
  • New spectrum exploration: sub-THz/THz research motivations and constraints (overview).
  • Sustainability: network energy optimization and greener infrastructure planning.

Final Project

  • Create a Next-Gen Wireless Network Blueprint for a selected use-case.
  • Include: requirements (KPIs), spectrum and site assumptions, architecture (RAN/core/edge), slicing/QoS plan, security plan, and rollout roadmap.
  • Example projects: private 5G for smart manufacturing, 5G-enabled smart port logistics, campus network with MEC for AR training, or a city-scale sensor network using 5G IoT + edge analytics.

Participant Eligibility

  • Students and professionals in Telecommunications, Electronics, Computer Science, Networking, or related fields.
  • IT/OT professionals working on smart factories, campuses, smart cities, and IoT deployments.
  • Engineers and managers evaluating private 5G or edge-enabled connectivity solutions.
  • Basic networking concepts are helpful but not required.

Program Outcomes

  • 5G & Beyond Literacy: Understand core concepts behind 5G, 5G-Advanced, and emerging 6G directions.
  • Network Design Skill: Ability to map requirements into RAN/core/edge architecture and KPI-driven planning.
  • Enterprise Readiness: Ability to design a private 5G solution with QoS, security, and rollout planning.
  • Security Awareness: Understanding of key risks and resilience measures in next-gen wireless deployments.
  • Portfolio Deliverable: A complete blueprint suitable for proposals, pilots, or program planning.

Program Deliverables

  • Access to e-LMS: Modules, reference notes, and case studies.
  • Design Toolkit: KPI requirements template, site planning checklist, slicing/QoS worksheet, and security baseline checklist.
  • Case Exercises: Spectrum tradeoff analysis, edge placement planning, and private 5G architecture sketching task.
  • Project Guidance: Mentor feedback for blueprint refinement.
  • Final Assessment: Certification after assignments + capstone submission.
  • e-Certification and e-Marksheet: Digital credentials provided upon successful completion.

Future Career Prospects

  • 5G / Private Network Solutions Associate
  • RAN Planning & Optimization Associate
  • Edge Computing & Network Architecture Associate
  • Telecom Security & Resilience Associate
  • 6G Research & Innovation Associate (Early-Stage)

Job Opportunities

  • Telecom Operators & Vendors: Network planning, rollout, optimization, and enterprise solutions roles.
  • System Integrators: Private 5G deployments for factories, campuses, and logistics hubs.
  • Smart Manufacturing & OT Teams: Connectivity architecture and reliability planning for industrial IoT.
  • Smart City Programs: City-scale connectivity + edge analytics projects and sensor network integration.
  • Research Labs & Startups: Work on beyond-5G/6G concepts, AI-native networking, and next-gen radio innovation.
Category

E-LMS, E-LMS+Videos, E-LMS+Videos+Live

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Certification

  • Upon successful completion of the workshop, participants will be awarded a Certificate of Completion, validating their skills and knowledge in advanced AI ethics and regulatory frameworks. This certification can be added to your LinkedIn profile or shared with employers to demonstrate your commitment to ethical AI practices.

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