Be a centre of excellence in Electrical and Electronics Engineering having strong learning and research environment, capable of making significant contributions for sustainable development.


To generate world-class engineers to meet challenges in the field of Electrical and Electronics Engineering through innovations and pursuit of new knowledge and make them ethically sound and professionally competent to provide service to the society.

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M.Tech (Power Systems)

Department of Electrical and Electronics Engineering offers Post Graduate program in Power Systems from 1971  with an AICTE approved yearly intake of 18 students. 

Power Systems Engineering is a subfield of Energy Engineering and Electrical Engineering that deals with the generation, transmission, distribution and utilization of electric power and the electrical devices connected to such systems including generators, motors and transformers etc…

Post Graduate Programme in Power Systems covers the requirements, planning, analysis, reliability, operation, and economics of electric generating, transmission, and distribution systems for general industrial, commercial, public, and domestic consumption.


  1. To mould the students to global standards, for successful career in electric power systems and related areas.
  2. To impart skills in effective use of modern problem solving techniques/tools and design methodologies to develop good researchers.
  3. To produce innovative engineers with leadership capabilities to establish their own enterprises.
  4. To inculcate the habit of lifelong learning and promote professional ethics.



Engineering Post Graduate will be able to:

  1. Apply their mastery of knowledge, techniques, skills and modern tools for solving problems in Electrical Power systems and related areas.                   
  2. Analyse complex power system engineering problems critically and apply independent judgement.
  3. Conceptualise and solve power system engineering problems, evaluate a wide range of potential solutions for those problems and arrive at feasible, optimal solutions.         
  4. Initiate further research by making use of the mathematical theories in power engineering.
  5. Apply various modern problem solving tools to analyze the various existing systems and suggest improvements to make them more economical and energy efficient.
  6. Recognize opportunities and contribute positively to collaborative-multidisciplinary scientific research.
  7. Apply the knowledge of engineering and management principles to one‘s own work, as a member and leader in a team and manage projects efficiently in respective disciplines and multidisciplinary environments after consideration of economical and financial factors.
  8. Perform with improved communication skill and self-confidence.
  9. Recognize the need to undertake lifelong learning and acquiring the capacity to do so
  10. Understand the social, cultural, global and environmental responsibilities and ethics of a professional engineer and the need for sustainable development.
  11. Observe and examine critically the outcomes of one‘s actions , make corrective measures subsequently, and learn from mistakes without depending on external feedback


M.Tech Power System Syllabus