Master of Engineering in Power Systems Engineering: M.E. in Power Systems Engineering Course Details

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Master of Engineering in Power Systems Engineering is a postgraduate level course in engineering which is of two years duration.  The course is offered in 4 semesters of 6 months each. The course study covers details on diverse aspects of Power Systems and the ways to control the generated electric power. The course curriculum provides knowledge to students in various aspects of Power System design and Power System Analysis. Power engineering can usually find application in Electrical Engineering software solutions including arc flash, load flow, relay coordination, short circuit, cable capacity, and optimal power flow and so on. The study of this subject offers widespread application in the area of power generation, transmission, distribution and in power equipments.

Advantages or benefits of Master of Engineering in Power Systems Engineering

The masters of engineering in Power systems Engineering is one of the core engineering courses. Due to the tremendous industrial growth in the country there is a huge growth in the field of power sector and heavy electrical industries. These sectors offer enormous job opportunities for post graduate Electrical Engineers.

Eligibility required for Master of Engineering in Power Systems Engineering

Those candidates who have completed their graduation in Electrical or Electrical and Electronics Engineering are eligible to apply for Masters of Engineering in Power Systems Engineering. The qualifying exam must be passed from a recognized University with Electrical/Electrical and Electronics as the main subject of study. The admission to the course is usually offered on the basis of the marks obtained for graduation as well as for Graduate Aptitude Test in Engineering (GATE). The candidate should hold a minimum of 60% marks in order to apply for the post graduation course in Power Systems Engineering.

Admission Procedure of Master of Engineering in Power Systems Engineering

The application forms and details regarding the course can be retrieved from the official website of the institution or University that offers the course. The application for the entrance exam can be submitted through either method. The information brochure contains details on how to fill the application form in detail. So before starting the application process the candidate should read the same carefully. Forms send after the closing date will not be accepted.

Higher studies after Master of Engineering in Power Systems Engineering

After completing the Post graduation in M.E in Power Systems Engineering successfully the candidate can opt for a PhD degree in the relevant field. There are certain short term Computer programs which enables the candidate to choose the career as Electrical Design Engineer. Several jobs are available in the academic sector also.

Colleges offering Master of Engineering in Power Systems Engineering

  • KLN College of Engineering
  • Adhiyamaan College of Engineering
  • Anna University
  • Annasaheb Chudaman Patil College of Engineering
  • Arulmigu Meenakshi Amman College of Engineering
  • B.S. Abdur Rahman Crescent Engineering College
  • Chaitanya Bharathi Institute of Technology
  • Delhi Technological University
  • Faculty of Engineering & Technology
  • Government College of Engineering
  • J.J. College of Engineering & Technology
  • JJ College of Engineering And Technology
  • K.L.N College of Engineering
  • Kamban Engineering College
  • University College of Engineering
  • University of Pune
  • Velammal Engineering College
  • Indian Institute of Technology, Kharagpur
  • National Institute of Technology, Calicut
  • National Institute of Technology, Hamirpur
  • National Institute of Technology, Trichy
  • National Institute of Technology, Warangal
  • College of Engineering, Anna University
  • Government Engineering College, Thrissur
  • College of Engineering, Pune
  • College of Engineering, Thiruvananthapuram

Course Curriculum of Master of Engineering in Power Systems Engineering

Semester 1

  • Applied Mathematics for Electrical Engineers
  • Power System Analysis
  • Power System Operation and Control
  • Electrical Transients in Power Systems
  • System Theory

Semester 2

  • Power System Protection
  • Power System Stability
  • Flexible AC Transmission Systems
  • Power system Planning and Reliability
  • Elective II
  • Elective III
  • Practical - Power System Simulation Laboratory

Semester 3

  • Elective IV
  • Elective V
  • Elective VI
  • Practical - Project work (Phase-I)

Semester 4

  • Project work (Phase-II)

Electives

Elective I

  • Power System Dynamics
  • Soft Computing Techniques
  • Modelling and Analysis of Electrical Machines

Elective II (E02)

  • EHV Power Transmission
  • Optimal Control Filtering
  • Power Quality

Elective III (E03)

  • Power System Restructuring and Deregulation
  • Advanced Digital Signal Processing
  • Control System Design

SEMESTER III

Elective IV (E04)

  • System Identification and Adaptive Control
  • Special Electrical Machines
  • Advanced Power System Dynamics

Elective V (E05)

  • Industrial Power System Analysis and Design
  • High Voltage Direct Current Transmission
  • Wind Energy Conversion Systems

Elective VI (E06)

  • Techniques to Power System
  • Power Electronics for Renewable Energy
  • Applications of MEMS Technology

Text books on Master of Engineering in Power Systems Engineering

  • Matrix Operation by Bronson, R
  • An Introduction by Taha,  H.  A
  • Probability and Statistics for Engineers & Scientists by Walpole.R.E, Myers R. H
  • Fundamentals of Queueing theory by Donald Gross and Carl M. Harris
  • Numerical methods in Engineering and Science by Grewal, B.S
  • “Computer Methods in Power System Analysis” by Stagg.G.W , El. Abiad.A.H
  • “Power System Stability and Control” by 2.   Kundur.P
  • “Power Generation Operation and Control” by Wood.A.J and Wollenberg.B.F,
  • “Solution of Large Sparse System by Tinney.W.F and Meyer.W.S,
  • “Triangular Factorization” by IEEE Trans
  • “Bi-Factorization : Basic Computational Algorithm and Programming Techniques by Zollenkopf
  • Fundamentals of power system economics by Kirschen, D.S. &Strbac, G
  • Power System Economics: Designing markets for electricity by Stoft, S.
  • Electric energy systems: Analysis and Operation by Gómez-Expósito, A., Conejo, A.J. & Cañizares, C., editors
  • Power generation, operation & control by Wood, A.J. & Wollenberg, B.F
  • Electrical power system Essentials by Schavemaker, P., van der Sluis, L
  • Understanding electric utilities and DeRegulation by Marcel Dekker
  • Electric power systems applications of optimization by Momoh, J.A.

Jobs and Career after Master of Engineering in Power Systems Engineering

The course study helps the candidate to get in to a lucrative career in the area of Power system designing. These professionals can find job opportunities in the area of electrical power generation, transmission, distribution, Telecommunication etc. They also have high demands in Avionics sector, Aerospace, Research and Development, and other related areas.

Remuneration after Master of Engineering in Power Systems Engineering

The candidates are appointed to junior level positions at the entry level. The salary packages offered for entry-level candidates are low when compared to that of an experienced one. The initial level salary package for the candidate may fall with in the range of Rs. 20,000/- to Rs. 30,000/- per month. By gaining one-year experience in the job, the salary packages may raise up to the level of not less Rs. 40,000/- per month.  The lecturers/professors in private colleges are offered with salary packages around Rs. 20,000/- to Rs. 25,000/- per month and in government colleges it is not less than Rs. 40,000/- per month.

 
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One Response to “Master of Engineering in Power Systems Engineering: M.E. in Power Systems Engineering Course Details”

  1. 1
    M.T.Sharanappa:

    kindly send details regarding name of the collage/university Etc for corspandance/distant educationn in M.Tech course in Electrical engineering,