This option may be validated with the options Cryptography and information security or Communication networks. Students are nonetheless allowed to select elective courses in these options.
This option is available only to students with a major or minor in Electrical Engineering during their Bachelor's degree.
Students completing successfully this option will be able to
• master and implement the various devices and protocols used in fixed and mobile networks ;
• design, configure, and manage fixed and mobile networks taking into account the needs of applications (including multimedia) ;
• use efficiently coding techniques of information ;
• design of mobile wireless communication systems from the physical layer to the application level.
This option is available only to students with a major or minor in Electrical Engineering during their Bachelor's degree.
Students completing successfully this option will be able to
• master and implement the various devices and protocols used in fixed and mobile networks ;
• design, configure, and manage fixed and mobile networks taking into account the needs of applications (including multimedia) ;
• use efficiently coding techniques of information ;
• design of mobile wireless communication systems from the physical layer to the application level.
> Legend ![]() |
||||||||
In order to qualify for this option, INFO students must have chosen an ELEC major or minor in their Bachelors curriculum. ELEC students must have chosen an INFO major or minor in their Bachelors curriculum and shall select |
||||||||
De 20 à 30 credits parmi | ||||||||
Year | ||||||||
1 | 2 | |||||||
![]() |
||||||||
![]() |
Wireless communications | Claude Oestges (coord.), Luc Vandendorpe | 30h+30h | 5 credits | 1q | x | x | |
![]() |
Communication networks | Benoît Macq | 30h+30h | 2 credits | 1q | x | x | |
![]() |
Information theory and coding | Jérôme Louveaux, Benoît Macq (coord.), Olivier Pereira | 30h+15h | 5 credits | 2q | x | x | |
![]() |
||||||||
![]() |
Computer networks: information transfer | Olivier Bonaventure | 30h+30h | 6 credits | 1q | x | x | |
![]() |
Network and communication seminar | Gildas Avoine, Olivier Bonaventure (compensates Gildas Avoine), Olivier Bonaventure | 30h | 3 credits | 1q | x | x | |
![]() |
||||||||
![]() |
Computer networks: configuration and management | Olivier Bonaventure | 30h+30h | 5 credits | 2q | x | x | |
![]() |
||||||||
![]() |
Discrete stochastic models | Philippe Chevalier | 30h+22.5h | 5 credits | 2q | x | x | |
![]() |
Languages and algorithms for distributed applications | Peter Van Roy | 30h+15h | 5 credits | 2q | x | x | |
![]() |
Secured systems engineering | Gildas Avoine | 30h+15h | 5 credits | 1q | x | x | |
![]() |
Computer system security | Gildas Avoine, Marco Canini (compensates Gildas Avoine) | 30h+15h | 5 credits | 2q | x | x | |
![]() |
Cryptography | Olivier Pereira | 30h+15h | 5 credits | 1q | x | x | |
![]() |
Number theory | Olivier Pereira, Jean-Pierre Tignol | 30h+15h | 5 credits | 1q | x | x | |
![]() |
||||||||
![]() |
Radiation and communication systems | Christophe Craeye, Danielle Janvier, Jérôme Louveaux, Claude Oestges, Luc Vandendorpe | 30h+30h | 5 credits | 1q | x | x | |
![]() |
Signal processing | Benoît Macq, Luc Vandendorpe | 30h+30h | 5 credits | 2q | x | x | |
![]() |
Stochastic processes : Estimation and prediction | Pierre-Antoine Absil, Luc Vandendorpe (coord.) | 30h+30h | 5 credits | 2q | x | x | |
![]() |
Design of Embedded and real-time systems | Jean-Didier Legat | 30h+30h | 5 credits | 2q | x | x | |
![]() |
||||||||
![]() |
Computer networks: configuration and management | Olivier Bonaventure | 30h+30h | 5 credits | 2q | x | x |