A course is the basic teaching unit, it's design as a medium for a student to acquire comprehensive knowledge and skills indispensable in the given field. A course guarantor is responsible for the factual content of the course.
For each course, there is a department responsible for the course organisation. A person responsible for timetabling for a given department sets a time schedule of teaching and for each class, s/he assigns an instructor and/or an examiner.
Expected time consumption of the course is expressed by a course attribute extent of teaching. For example, extent = 2 +2 indicates two teaching hours of lectures and two teaching hours of seminar (lab) per week.
At the end of each semester, the course instructor has to evaluate the extent to which a student has acquired the expected knowledge and skills. The type of this evaluation is indicated by the attribute completion. So, a course can be completed by just an assessment ('pouze zápočet'), by a graded assessment ('klasifikovaný zápočet'), or by just an examination ('pouze zkouška') or by an assessment and examination ('zápočet a zkouška') .
The difficulty of a given course is evaluated by the amount of ECTS credits.
The course is in session (cf. teaching is going on) during a semester. Each course is offered either in the winter ('zimní') or summer ('letní') semester of an academic year. Exceptionally, a course might be offered in both semesters.
The subject matter of a course is described in various texts.
ANI-COM Network Communication Extent of teaching: 2P+1C Instructor: Čejka T. Completion: Z,ZK Department: 18103 Credits: 5 Semester: Annotation:
The course focuses on the technical aspects of communication between devices and systems. During the semester, topics will be presented ranging from physical layers and communication media to communication protocols and traffic monitoring. Upon completion, students will gain an understanding of the technical limitations and capabilities of communication tools that can be applied in the design and development of real hardware or software systems.
Lecture syllabus:
1. Communication media and physical aspects 2. Modulation 3. Communication buses 4. Communication protocols 5. Special application protocols (RTP, webrtc, HTTP, websockets, gRPC) 6. Packet networks 7. Multimedia transfer 8. Network traffic monitoring 9. Securing communication 10. Real-time communication for critical systems 11. Low-latency communication 12. Throughput versus latency 13. Reserve and consultation Seminar syllabus:
bude doplněnoLiterature:
1. Larry Peterson and Bruce Davie: Computer Networks: A Systems Approach. Morgan Kaufmann, 2011. ISBN 978-0123850591. 2. John Proakis and Masoud Salehi: Digital Communications, 5th Edition. Pearson, 2020. ISBN 978-0134588568. 3. William Stallings: Data and Computer Communications, 10th edition. Pearson, 2014. ISBN 978-1-29-201438-8. Requirements:
The course is also part of the following Study plans:
Study Plan Study Branch Role Recommended semester QNI Unspecified Specialisation of Study V 1 ANI-WI Web Engineering VO 1 ANI-SI Software Engineering (in Czech) VO 1 NI-PB.2026 Computer Security V 1 NI-SPOL.2026 Unspecified Specialisation of Study V 1 NI-UI.2026 Artificial Intelligence V 1 NI-PJ.2026 Programming Languages V 1 NI-TI.2026 Computer Science V 1 NI-PSS.2026 Computer Systems and Networks V 1 ANI-SI Software Engineering (in Czech) PV Není ANI-MI Business Informatics VO 1 ANI-VG Visual computing and Game design VO 1 ANI-SPOL Unspecified Specialisation of Study VO 1 ANI-WI Web Engineering PV Není ANI-ES Embedded systems PS 1
Page updated 18. 8. 2026, semester: Z/2023-4, Z/2021-2, Z/2022-3, L/2025-6, L/2022-3, Z/2025-6, L/2023-4, L/2024-5, Z/2026-7, L/2021-2, L/2026-7, Z/2024-5, Send comments to the content presented here to Administrator of study plans Design and implementation: J. Novák, I. Halaška