Course: Communication Transfer Systems

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Course title Communication Transfer Systems
Course code KERS/IPSYE
Organizational form of instruction Lecture + Tutorial
Level of course Bachelor
Year of study 3
Semester Winter and summer
Number of ECTS credits 5
Language of instruction Czech
Status of course Compulsory, Compulsory-optional
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Pola Marek, Ing. Ph.D.
  • Němec Zdeněk, Ing. Ph.D.
  • Štěpánek Ladislav, Ing.
  • Zálabský Tomáš, Ing. Ph.D.
Course content
Basic of data communications. Transmission equipment and network structure. Reports TCP/IP. PDH (Plesiochronous Digital Hierarchy). SDH (Synchronous Digital Hierarchy ). ETHERNET. ATM (Asynchronous Transfer Mode ). Technology xDSL (Digital Subscriber Line). Technology ISDN (Integrated Serviced Digital Network). Technology TMN (Telecommunications Management Network). Fiber-optic communication , WDM (wavelength-division multiplexing). GSM (Global System for Mobile communications).

Learning activities and teaching methods
Monologic (reading, lecture, briefing), Demonstration, Laboratory work
Learning outcomes
The aim is to introduce the main digital transmission systems, which are used in telecommunication, their fundamental functional principles and basic characteristics. Here is taught the specific basics of data transport in the PC network, backbone and access network technology, for example PDH (Plesiochronous Digital Hierarchy), SDH (Synchronous digital hierarchy ), local data network, Ethernet , ATM (Asynchronous Transfer Mode ), optical-electronic networks, mobile networks GSM.
Graduates of the subject get a universal view about the concept of basic cable and wireless communication systems. He/She will be informed about its structure and function and methods of manipulation and transmission signal.
Prerequisites
This subject is focused on using transmission systems. Basic knowledge expected from the students: Information theory and signal (modulation, attenuation, distortion, modulation and transmission speed and theory of Nyquist and Shannon, time and frequency code multiplex.

Assessment methods and criteria
Oral examination, Written examination

Inclusion request: - Attendance in lessons, - Records from laboratory practice delivered and approved in time - Results of PC practice delivered and approved in time - Passed inclusion test (at least 60 per cent) Exam request: The exam consists of an oral part. During the oral part the student is asked at least 3 questions from the published list for the exam. The examiner assesses especially the measure of understanding the subject and the ability to use it in practice.
Recommended literature
  • Blunár, Diviš. Telekomunikační sítě - 1. díl. VŠB - TU Ostrava, 2003.
  • GŘS - Vzdělávací centrum, SPT TELECOM, a. s. Telekomunikační výukové programy. Brno, 1999.
  • Svoboda a kolektiv. Telekomunikační technika - 1. - 3. díl. Hutnig & Beneš, Praha, 1999.
  • Škorpil, Gregořica. Vysokorychlostní komunikační systémy. VUT, 2004.
  • Vodrážka, Pravda. Principy telekomunikačních systémů. ČVUT, 2006.
  • Vodrážka. Přenosové systémy v přístupové síti. ČVUT, 2006.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Communication and Microprocessor Technology (2016) Category: Electrical engineering, telecommunication and IT 3 Recommended year of study:3, Recommended semester: Winter
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Process Control (2015) Category: Special and interdisciplinary fields 3 Recommended year of study:3, Recommended semester: Winter
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Communication and Microprocessor Technology (2015) Category: Electrical engineering, telecommunication and IT 3 Recommended year of study:3, Recommended semester: Winter
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Communication and Microprocessor Technology (2014) Category: Electrical engineering, telecommunication and IT 3 Recommended year of study:3, Recommended semester: Winter
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Communication and Microprocessor Technology (2013) Category: Electrical engineering, telecommunication and IT 3 Recommended year of study:3, Recommended semester: Summer
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Process Control (2016) Category: Special and interdisciplinary fields 3 Recommended year of study:3, Recommended semester: Winter
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Process Control (2013) Category: Special and interdisciplinary fields 3 Recommended year of study:3, Recommended semester: Winter
Faculty: Faculty of Electrical Engineering and Informatics Study plan (Version): Process Control (2014) Category: Special and interdisciplinary fields 3 Recommended year of study:3, Recommended semester: Winter