×
M.Sc. in Electrical Power Engineering

The university is committed to introduce new program M.Sc. Electrical  Engineering  in Electrical Power  System Engineering  from  2019 February –March   which will be new program in our contest. The Master’s programme in Electric Power system engineering covers courses in Electric Power Engineering including systems and components where electricity is principally used to transfer energy. The programme is concerned with understanding, modelling and analysing a wide range of topics related to design, operation, and control of individual power system components as well as power system in its entirety. After successful completion of the programme, participants shall be able to pursue a professional career in industry as well as an academic research career. An important influence of this master programme is real life problem based learning including case studies and problem solving with quantitative and qualitative models using commercially available modelling software.

The course structure is based on the Semester system. Each Year is divided in first and second Semester. In first year first semester, five core courses are offered and in second semester, four core courses are offered. Three different elective subjects are offered in second semester and students can choose any one of them. The second year, first semester consists of two regular courses and six electives from different fields are offered in this semester and students can chose two of them. The second year second semester is entirely allocated for dissertation work. The dissertation shall be individual’s work and be entirely research based . Students shall be encouraged to publish research papers in national and international journals as a outcome of their dissertation work.

Program Objective

The Master of Science in Electrical Engineering in Power System (M.Sc. EEPS) program focuses in providing a domain capability to each student that allows them to have a meaningful career in power system analysis, design and development, making reliable and economic power system. The course offers several optional and self-contained modules in the field of Power System Engineering. Different areas, such as power system dynamics, power electronics in power system, operation and control of power system, power quality and many more are covered through different modules of this program. The specific objectives of the program are as follows:

  1. To provide depth knowledge and understanding of the power system dynamics, its detailed modeling and simulation.
  2. To develop self-motivation in solving problem and to act autonomously in planning and implementation tasks at a professional level in Power System Engineering with full knowledge of software used in Power System Engineering.
  3. To develop independent research in a topic relating to Power System.
  4. To create the competent & skilled human resources to ensure them the careers and employment and in this way fulfill the requirement of National and Multinational Power and other industries.
  5. Promotion of research activities at the Faculty of Science and Technology
  6. Promotion of faculty development activities by creating special opportunities for its existing junior faculties by allowing them to participate in the graduate programs.
  7. Sustainability of existing academic programs

Major Components of Curriculum

The curriculum is designed to equip students with the competencies, knowledge, skills, and attitudes needed for success in technical positions. The coursework gives students a broad and holistic view of the complexity of technologies concerning different power system analysis and design in today’s world. The curriculum comprises the following distinct components

  1. Foundation & Analytical Courses: The foundation and analytical courses provide the necessary academic background and analytical tools for M. Sc. study and are pre-requisite to advanced core courses.
  2. Core and Functional Courses: The core and functional courses as mentioned in the curriculum structure of M. Sc. EEPS provide students with the concept of advanced power system analysis, prevailing concept in reliable and secure design, familiar with international code of practices and use of advance software.
  3. Electives: A student is required to take four courses of three credit hours as electives. The objective of elective courses is to provide flexibility to the students in selecting course in which they have special interest. She/he can choose any course from the areas offered as mentioned in the course structure of M. Sc. EEPS
  4. Thesis: Students are required to undertake novel and original graduate research in the field of Electrical Power system to analyze the problem and find the appropriate technical as well as feasible solution. Students are also required to prepare a research report on a prescribed format. This course covers 15 credit hours. 4 credits are also allocated for seminar  and project works prior to thesis dissertation to provide pre- requisite for the thesis. A six-moth dissertation provides students with an opportunity to gain basic preliminary practical as well as theoretical experience of the research.

Course Syllabus

.

S.N.

Course Code

Course Title

Periods per week

Full Marks

No. of Credits

L

P

Total

Internal

Final

Total

1

EE 711

Optimization Techniques

4

 

4

50

50

100

4

2

EE 712

Computer Aided Power System Analysis

4

 

4

50

50

100

4

3

EE 713

Distribution System Planning and Design

4

 

4

50

50

100

4

4

EE 714

Advanced Power Electronics

4

 

4

50

50

100

4

S. N.

Course Code

Course Title

Periods per week

Full Marks

No. of Credits

L

P

Total

Internal

Final

Total

1

EE 721

Power System Operation and Control

4

 

4

50

50

100

4

2

EE 722

Power System Reliability

4

 

4

50

50

100

4

3

EE 72…

Elective I

4

 

4

50

50

100

4

4

EE 72…

Elective II

4

 

4

50

50

100

4

S. N.

Course Code

Course Title

Periods per week

Full Marks

No. of Credits

L

P

Total

Internal

Final

Total

1

EE 831

Project

4

 

4

100

-

100

4

2

EE 83…

Elective III

4

 

4

50

50

100

4

3

EE 83…

Elective IV

4

 

4

50

50

100

4

S. N.

Course Code

Course Title

Periods per week

Full Marks

No. of Credits

L

P

Total

Internal

Final

Total

1

EE 841

Thesis

 

 

16

200

200

400

16

S.No.

Course Code

Course Title

Course Credits

Elective I & II

1.

EE 723

Power System Dynamics and Stability

4 (Four)

2.

EE 724

Dynamic Modeling of Electrical Machines

4 (Four)

3.

EE 725

Electricity Markets

4 (Four)

4.

EE 726

FACTS and HVDC

4 (Four)

5.

EE 727

Extra HV AC Transmission

4 (Four)

6.

EE 728

AI Applications in Power Systems

4 (Four)

7.

EE 729

Distributed Generation Technology

4 (Four)

Elective III & IV

1.

EE 833

Smart Grids

4 (Four)

2.

EE 834

Electric Vehicle Technology

4 (Four)

3.

EE 835

Digital Protection of Power Systems

4 (Four)

4.

EE 836

Risk Assessment of Power Systems

4 (Four)

5.

EE 837

Power System Planning and Economics

4 (Four)

6.

EE 838

Project Appraisal Techniques

4 (Four)

7.

EE 839

Advanced Electrical Drives

4 (Four)

8.

EE 840

Power Quality and Harmonics

4 (Four)

Course Info

Department

Department of Electrical Engineering

Enrolled

20 Students

Course Time

2 Years
Enroll Now