Dense Wavelength Division Multiplexing (DWDM) is the key to the world’s telecommunications infrastructure which has a huge transmission capacity
DWDM systems allow much greater bandwidth over existing optical systems. For anyone involved with telecom and information technology, understanding this technology is a critical requirement.
In this course, the trainee will learn the networks architectures, components, design, and the Applications of the DWDM Â
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Target Audience: Â Â Â Â
This course is designed for Telecommunication, transmission engineers, designers, Operators, optical communications system installers, optical systems pre-sales and consultants
Objectives:
Upon completing this course, the learner will be able to meet these overall objectives:
- Understanding the physics of the optical transmission
- Learn deeply the characteristics of fiber optic and fiber optic links
- Describe how the DWDM technology works
- Full Knowledge of the DWDM architectures and components
- Identify the Application of the DWDM
- Design the DWDM Systems
- Study actual cases with the latest technologies Â
Prerequisites:
Fiber Optic Basics
Contents:
Introduction & Fundamentals
- Basic TheoriesÂ
- Why Optics?
- Optical Signal FundamentalsÂ
- How the Fiber Optic Works?
- Fiber Optic Types & Standards
- Fiber Optic Connectors Types & Categories
- Fiber Optic AccessoriesÂ
- Optical Transceivers SFPs
Optical Physics / Link Characteristics
- AttenuationÂ
- Dispersion
- Insertion loss and reflection loss Â
- Absolute Optical PowerÂ
- Power Budget CalculationÂ
- Loss Budget CalculationÂ
- Fiber Optic Types, Choosing proper TypeÂ
- Metropolitan & Long haul Networks Â
Transmission ProtocolsÂ
- Introduction to SONET and SDH
- Advantages of SDH over old protocolsÂ
- DM, PDH and SDH
- SONET and SDH HierarchyÂ
- Transport HierarchyÂ
- SONET Protection Ring
- 2 Fibers and 4 Fibers
- OTN Protocol
Wavelength Division Multiplexing ( WDM )Â
- What is the Multiplexing and Why Multiplexing?
- Multiplexing TypesÂ
- WDM, CWDM and DWDM
- Spectral Width
- Optical Windows
WDM site Components:
- Optical transponders.
- Optical filters.
- Solutions to overcome dispersion effect (DCM, coherent).
DWDM Architectures and Protection
- Unidirectional and Bi-directional DWDM
- Single Fiber WorkingÂ
- OADM & ROADM
- CDC
- The ITU G.692 GridÂ
- Filter-less architecture
- Coherent DWDM
- Optical Cross-Connects (OXCs)Â
- Light path Topology Design (LTD)Â
- Routing & Wavelength Assignment (RWA), Graph coloring
- Optical protection, reliability (MTBF, MTTR).Â
- Optical control and managementÂ
- Performance management, optical overhead.
- Optical Transport Network (OTN)
DWDM Passive ComponentsÂ
- RC
- Splitter
- Diffraction Grating
- FBG
- Thin Film FilterÂ
- AWG
- Optical IsolatorÂ
- Mach-Zehnder interferometer
LasersÂ
- How laser Works?
- LASERS Performance characteristics
- Laser Types
- Fiber Non-linearityÂ
- Mode-locked lasers
- Laser vs. LED
DetectorsÂ
- How to Detect the Optical Signal?
- Types of Detectors
- Detectors Sensitivity
- Optical Wavelength Conversion
Optical Amplifier
- Repeater vs. Amplifier Â
- Amplifier Locations
- 1R, 2R & 3R
- EDFA
- DRA
Optical Switching
- O-E-O & O-O-O
- MEMS
- Liquid Crystal Switches
- Electro-Optical Switches
Modulation
- Signal formats
- Subcarrier modulation
- Optical channel capacity
- Demodulation: Shot/thermal noise; ideal signal detection
- Optical signal-to-noise, bit error rate
- Inter-symbol Interference (ISI)
- Coherent detection
- Dispersion Compensation
Advanced Routing and SwitchingÂ
- WSS
- ASON
- GMPLS
- MPLS-TP
Hardware and Equipment Study Cases:
Ciena
- 6500 Platform
- 8180 Platform
- 5170 Platform
- Routing & SwitchingÂ
- PTS
- SFPs
Nokia
- 1830 Versatile WDM Module
- Optical Anyhaul
- Wavelite
- SFPs
Huawei
- Optix OSN 9800 subracksÂ
- 1830 Versatile WDM Module
- SFPs
- Review and QuizÂ
As technology continues to evolve, DWDM remains at the forefront of revolutionizing data transmission, making expertise in this field highly sought after. By enrolling in the DWDM Optical Transmission Architecture, Components, and Design Course at IIPD Global, you are positioning yourself to become a proficient professional capable of driving innovation in the field of optical communication.