Optical Fiber Communication detailed syllabus scheme for B.Tech Electronics & Telecommunication Engineering (ET), 2017 onwards has been taken from the DBATU official website and presented for the Bachelor of Technology students. For Subject Code, Course Title, Lecutres, Tutorials, Practice, Credits, and other information, do visit full semester subjects post given below.
For all other DBATU Syllabus for Electronics & Telecommunication Engineering 7th Sem 2017, do visit ET 7th Sem 2017 Onwards Scheme. The detailed syllabus scheme for optical fiber communication is as follows.
Optical Fiber Communication Syllabus for Electronics & Telecommunication Engineering (ET) 4th Year 7th Sem 2017 DBATU
Course Objectives:
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Course Outcomes:
- Learner will apply knowledge of mathematics to solve numerical based on step index and graded index fibers pertaining to MSI and MGI, SMSI.
- Students will understand fiber performance parameters like NA, Group delay, Phase and Group velocity .They will understand optical transmission characteristics theoretically and practically.
- Learners will understand analog and digital links, design consideration of optical links, WDM, fiber data transfer rates in social context.
- With the basic knowledge of OFC course, students can peruse higher studies in LASEERs and electro-optics.
- Students will apply the knowledge of optical key elements to understand optical fiber communication systems.
- Students will understand impact of OFC in LAN, MAN, WAN, ISDN etc.
- This course understanding will enforce students to work in communication engineering domain and will cope up the selves to work in professional environment.
- This course understanding will enforce students to work in communication engineering domain and new emerging technology of sources and detectors to develop the optical fiber systems.
Unit 1
Optical communication fundamentals
Introduction to vector nature of light, propagation of light, propagation of light in a cylindrical dielectric rod, Ray model, wave model. Different types of optical fibers, Modal analysis of a step index fiber. Signal degradation on optical fiber due to dispersion and attenuation.
Unit 2
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Unit 3
Optical detectors
Photo-detectors – pin- detectors, detector responsivity, noise, optical receivers
Unit 4
Fabrication Techniques
Fabrication of fibers and measurement techniques like OTDR
Unit 5
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Unit 6
Optical Modulation
Concept of self-phase modulation, group velocity dispersion and solution based communication. Optical amplifiers – EDFA, Raman amplifier, and WDM systems.
Reference/Text Book:
- J. Keiser, Fiber Optic communication, McGraw-Hill, 2nd Ed. 1992.
- J. E. Midwinter, Optical fibers for transmission, John Wiley, 1979.
- T. Tamir, Integrated optics (Topics in Applied Physics Vol.7), Springer-Verlag, 1975.
- J. Gowar, Optical communication systems, Prentice Hall India, 1987.
- S. E. Miller and A.G. Chynoweth, eds., Optical fibers telecommunications, Academic Press, 1979.
- G. Agrawal, Nonlinear fiber optics, Academic Press, 2nd Ed, 1994.
- G. Agrawal, Fiber optic Communication Systems, John Wiley and sons, New York, 1992.
- Jhon Senior, “Optical Fiber Communications-Principles and Practices”, 2nd Edition, PHI-2001.
For detail syllabus of all other subjects of Electronics & Telecommunication Engineering (ET) 7th Sem 2017 regulation, visit ET 7th Sem Subjects syllabus for 2017 regulation.