Course detail
Optical Communication Fundamentals and Optoelectronics
FEKT-BOPEAcad. year: 2018/2019
Students will be acquainted with radiometric and photometric quantities, metrology and hygiene aspects of optoelectronics (optoelectronic safety in the laboratory in terms of eye health) wave optics (interference, coherence, diffraction and holography), optical resonators, Gaussian beam in free space, the principle function of laser , semiconductor optoelectronics (laser diodes, LEDs, photodiodes PIN and avalanche photodiodes), the principle of light propagation in optical fibers, optical fiber links, atmospheric, mobile and space optical links and optical sensors.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Learning outcomes of the course unit
- To describe the wave and quantum manifestations of light
- To describe and explain holography, interference, diffraction and coherence
- To explain the principle of laser function
- To design optical fiber and wireless links
- To compare individual optoelectronic components and discuss their advantages and disadvantages
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
2. Optical spectrum and characteristics of radiation
3. Interferometry and optical interferometers
4. Diffraction, holography and thermograms
5. Optical components and their characteristics
6. Lasers and laser diodes
7. LED and photodiodes
8. Sensors and displays
9. Fiber optics
10. Optical fiber links
11. Optical wireless links
12. Optical sensors (lidars and laser radars)
13. Future of the optoelectronics
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
WILFERT,O. Optoelektronika. Elektronický učební text. UREL VUT v Brně, Brno 2002, REL 023 (CS)
WILFERT,O. Optoelektronika. Skripta. UREL VUT v Brně, Brno 2002, ISBN 80-214-2264-5 (CS)
Recommended reading
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
Optical spectrum and characteristics of radiation
Interferometry and optical interferometers
Diffraction, holography and thermograms
Optical components and their characteristics
Lasers and laser diodes
LED and photodiodes
Sensors and displays
Fiber optics
Fiber links
Optical wireless links
Lidars and laser radars
Future of the optoelectronics
Laboratory exercise
Teacher / Lecturer
Syllabus
Measurement of response and linearity of optical receiver
Measurement of fibre attenuation
Computer modeling of optical wireless link budget
Measurement of qualitative parameters of optical link