M.Tech. Power System Engineering or Master of Technology in Power System Engineering is a postgraduate Power System Engineering course. The electrical power system includes power generation, electrical power transmission, electrical distribution, control & protection, electrical switchgear, electrical power transformers, control & relays, transmission substation, distribution substation and all switchyard equipment. Topics such as power systems analysis in the steady state and under transient conditions, system stability, protection and control, transmission and distribution system design and apparatus, and power system operations and planning are offered.
M.Tech. Power System Engineering Eligibility :-
• Some of the very reputed universities and colleges conduct entrance examination for admission.
How is M.Tech. Power System Engineering Course Beneficial?
• The program is beneficial for those interested in pursuing a career in power engineering or further study to Ph.D. level.
• It also provides you with in-depth knowledge of novel types of electric drives and solid-state power converters, as well as their associated control systems, with an emphasis on computer control.
• This program will prepare electrical engineers for professional practice in the electric utility industry or other applications of electric power.
• The program also provides a technical track of analytical and practical subjects that are necessary for engineering success in today's power industry.
Sem. l |
Sr. No. | Subjects of Study |
1 | Power System Operation & Control |
2 | Advanced Power System Analysis |
3 | Advanced Power Electronics |
4 | Digital Control Systems |
5 | Advanced Electrical Machines |
6 | Power System Software Lab |
Sem. ll |
1 | Advanced Mathematics |
2 | H.V.D.C. Transmission |
3 | Power System Protection |
4 | Industrial Automation Lab |
5 | Elective I |
6 | Power Systems Stability |
7 | E.H.V.A.C. Transmission |
8 | Reliability Engg. |
9 | Elective II |
10 | Microprocessors and their applications |
11 | Applied Instrumentation |
12 | Fast Transients in Power Systems |
Sem lll |
1 | Elective III |
2 | Energy Efficient Machines |
3 | Advanced Electrical Drives |
4 | Non-Conventional Energy Sources |
5 | Elective IV |
6 | Power System Reliability |
7 | Power System Planning |
8 | Power System Communication |
9 | Optimization Techniques |
10 | Neural Networks & Fuzzy Logic |
11 | Project |
12 | Seminar |
Sem. lV |
1 | Dissertation |
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