
Microwave Link Engineering For Telecom Transmission
Download this premium online course featuring high-quality video training, step-by-step lessons, practical demonstrations, and expert instruction. With Microwave Link Engineering For Telecom Transmission, you'll gain practical knowledge through structured learning, hands-on examples, and real-world applications. This comprehensive eLearning resource is ideal for students, professionals, freelancers, and lifelong learners looking to develop valuable skills and stay current with modern industry practices at their own pace.
Published 9/2026
Created by Dr. Moazzam Tiwana
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Beginner | Genre: eLearning | Language: English | Duration: 50 Lectures ( 2h 3m ) | Size: 926 MB
Microwave Link Communication & Components, Network Topologies, Antennas, Link Planning and Design, Frequency Planning
What you'll learn
⚡ Understand microwave communication systems, including IDU, ODU, antennas, modulation, capacity, and adaptive modulation.
⚡ Compare 1+0, 1+1, hot-standby, cold-standby, diversity, and 2+0 CCDP microwave link configurations.
⚡ Identify microwave network topologies and elements, including chain, ring, star, tree, terminal, and relay stations.
⚡ Line-of-Sight (LOS) and path-profile analysis for microwave links.
⚡ Evaluate Fresnel zone clearance and K-factor effects on microwave link paths.
⚡ Understand the key engineering steps involved in planning reliable microwave links for telecom transmission.
⚡ Understand complete microwave link budget process, including antenna gain, EIRP, FSPL, losses, and fade margin
⚡ Apply frequency and channel planning principles, including the HI/LO channel planning rule.
Requirements
❗ Basic understanding of telecommunications
❗ Principles of wireless communications
Description
In the rapidly evolving world of telecommunications, microwave links remain the backbone of critical infrastructure, connecting cell towers, enterprises, and core networks. For telecom and RF professionals, understanding how microwave links are designed, configured, and planned is an essential skill.
This comprehensive course will take you on a deep dive into the world of microwave transmission. Starting from the basic physics of radio waves, you will journey through the entire lifecycle of a microwave project—from understanding the hardware components inside the Indoor and Outdoor Units (IDU/ODU) to mastering the complex calculations of link budget planning.
You will learn the "why" and "how" behind network topologies, frequency selection, and redundancy configurations. By the end of this course, you will not only understand the theory but will be ready to apply your knowledge to real-world network planning scenarios.
Whether you are atelecom engineer, RF engineer, network planner, field engineer, engineering student, or IT professional looking to expand into telecommunications, this course provides a practical foundation for understanding microwave link engineering and telecom transmission. Here is the outline of the course
Section 1: Introduction
✨ What Is a Microwave Communication Link?
✨ Radio-Wave Propagation Modes
✨ Why Use Microwave Communication Links?
Section 2: Components of a Microwave Communication System
✨ Main Components of a Microwave Communication System
✨ Why Are the IDU and ODU Separated?
✨ Functions of the Indoor Unit (IDU)
✨ Functions of the Outdoor Unit (ODU)
✨ Parabolic Dish Antennas
✨ Parabolic Antenna Gain
✨ Modulation and Link Capacity
✨ Adaptive Modulation and Its Benefits
Section 3: Microwave Link Configurations
✨ Introduction to Microwave Link Configurations
✨ 1+0 Configuration
✨ 1+1 Configuration
✨ 1+1 Hot-Standby Configuration
✨ 1+1 Cold-Standby Configuration
✨ 1+1 Diversity Configuration
✨ Frequency Diversity
✨ Space Diversity
✨ Polarization Diversity
✨ 2+0 Configuration Using Co-Channel Dual Polarization (CCDP)
Section 4: Microwave Frequency Bands and Channel Plans
✨ Principles of Microwave Frequency-Band Selection
✨ RF Channel Configuration Concepts
✨ Example: 15 GHz Channel Arrangement
Section 5: Microwave Network Topologies
✨ Chain (Cascade) Topology
✨ Ring Topology
✨ Star Topology
✨ Tree Topology
Section 6: Microwave Network Elements
✨ Types of Microwave Network Elements: Terminal and Relay Stations
✨ Types of Microwave Network Elements: Pivotal and Add/Drop Relay Stations
✨ Passive Relay Stations
✨ Active Relay Stations
✨ Microwave Antenna Adjustment Procedure
Section 7: Microwave Link Planning Process
✨ Define Microwave Link
Requirements
and Gather Site Information✨ Path Profile and Line-of-Sight (LOS) Analysis
✨ Fresnel Zone Clearance Analysis
✨ Fresnel Zone Clearance Analysis with the K-Factor
✨ Frequency, Bandwidth, and Modulation Selection
✨ Link Budget Design
✨ Transmit Power and Cable Loss
✨ Parabolic Antenna Gain
✨ Effective Isotropic Radiated Power (EIRP)
✨ Free-Space Path Loss (FSPL)
✨ Other Fixed Losses
✨ Complete Link Budget Calculation
✨ Fade Margin
✨ Frequency Planning for Microwave Links
✨ HI/LO Channel Planning Rule
✨ Channel Planning Example
✨ Applying the HI/LO Channel Planning Rule in a Ring Configuration
Who this course is for
⭐ Telecom engineers and RF engineers working with microwave transmission systems.
⭐ Network planning and transmission engineers involved in microwave link design and deployment.
⭐ Field and installation engineers who want to understand microwave link configurations and planning
⭐ Engineering students and graduates interested in telecommunications and microwave communication
⭐ IT and telecom professionals looking to develop practical microwave link engineering skills
Homepage
https://www.udemy.com/course/microwave-link-engineering-for-telecom-transmission
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