Computer network design

Computer network design

1.

Subject title

Computer network design

Дизајн на компјутерски мрежи

2.

Code

F23L3S063

3.

Study program

Примена на информациски технологии, Софтверско инженерство и информациски системи, Компјутерски науки, Компјутерско инженерство, Информатичка едукација, Software engineering and information systems, Примена на информациски технологии, Софтверско инженерство и информациски системи, Компјутерски науки, Компјутерско инженерство, Интернет, мрежи и безбедност, Software engineering and information systems, Стручни студии за програмирање, Стручни студии за програмирање, Интернет, мрежи и безбедност,

4.

Organizer of the study program (unit, institute, department, division)

Faculty of Information Sciences and Computer Engineering

5.

Study cycle (first, second, third)

Прв циклус

6.

Academic year / semester

4 / Летен

7. Number of ECTS credits

6.0

8.

Instructor

ворн. проф. д-р Александра Дединец проф. д-р Игор Мишковски

9.

Prerequisites for enrollment

Компјутерски мрежи или Компјутерски мрежи и безбедност

10.

Subject goals and competencies:


The aim of this course is to enable the student to work with large computer networks and to ensure collaborative work of different administrative regions, as well as to design different types of computer networks according to the needs of end users.

11.

Subject content:


(1) Introduction of QoS. Needs. Converged networks. Types of delay. QoS requirements for different types of traffic. QoS policies. (1) Building blocks of QoS. Integrated and differentiated services. PHB. QoS mechanisms. (1) Classification and marking. Choking Management. Avoiding suffocation. (1) Traffic policies and shaping. Link efficiency. (1) Autonomous systems and referral. RIP, EIGRP, OSPF. (1) Connection of autonomous systems. BGP. (1) Network design methodologies. Network architecture of a business network. Structured Network Design. System development life cycle. (1) Steps in network design. Objectives and scope of the project. Contact with the client. (1) Technical goals. Scalability. Availability. Performance. Security. Manageability. Usefulness. (1) Characterization of existing network and traffic. Tools for work. Factors in network traffic. (1) Network structuring and modularization. Design of campus networks and networks in data centers. Redundancy. Core design. Virtualized network environment. (1) Multicast traffic and protocols. (1) SLA. Creating and maintaining SLAs.

12.

Learning methods:


Предавања со користење на презентации, интерактивни предавања, вежби (користење на опрема и софтверски пакети), тимска работа, пример случаи, поканети гости предавачи, самостојна изработка и одбрана на проектна задача и семинарска работа.

13.

Total available time fund

6.0 ECTS x 30 hours = 180 hours

14.

Time distribution

30 + 60 + 15 + 0 + 75 = 180 hours

15.

Forms of teaching activities

15.1.

Lectures - theoretical teaching

30 hours

15.2.

Exercises (laboratory, classroom), seminars, team work

60 hours

16.

Other forms of activities

16.1.

Project tasks

0 hours

16.2.

Independent tasks

15 hours

16.3.

Homework

75 hours

17.

Grading method

17.1.

Tests

10 points

17.2.

Seminar work / project (presentation: written and oral)

0 points

17.3.

Activities and learning

10 points

17.4.

Final exam

70 points

18.

Grading criteria (points / grade)

up to 50 points

5 (five) (F)

from 51 to 60 points

6 (six) (E)

from 61 to 70 points

7 (seven) (D)

from 71 to 80 points

8 (eight) (C)

from 81 to 90 points

9 (nine) (B)

from 91 to 100 points

10 (ten) (A)

19.

Condition for signature and taking final exam

Реализирани актибвности 15.2 и 16.1

20.

Language of instruction

Македонски и англиски

21.

Quality assurance method

механизам на интерна евалуација и анкети

22.

Literature

22.1.

Mandatory literature

No.

Author

Title

Publisher

Year

8489

Priscilla Oppenheimer

Top-Down Network Design (3rd Ed.)

Cisco Press

2010

8490

James D. McCabe

Network Analysis, Architecture, and Design, Third Edition

Morgan Kaufmann

2007

8491

Randy Zhang,‎ Micah Bartell

BGP Design and Implementation

Cisco Press; 1 edition

2016

22.2.

Additional literature

No.

Author

Title

Publisher

Year