In-depth study of smart grid technologies, including power system analysis, renewable energy integration, cybersecurity, and grid automation.
The Master of Technology (M.Tech) program in Smart Electric Grid is a specialized and advanced educational pathway that immerses students in the dynamic and critical field of modern electrical grids. This program in Smart Electric Grid is meticulously structured to provide students with a comprehensive understanding of the principles, practices, and advanced technologies associated with smart grids and their sustainable and efficient operation.
In today's world, where energy sustainability, grid resilience, and smart technologies are essential, this program plays a pivotal role in preparing students to address complex challenges in electric grid design, management, and optimization. Graduates of this program are well-equipped to make significant contributions to industries such as utilities, renewable energy, and grid infrastructure.
The curriculum encompasses a wide range of subjects, including smart grid technologies, power system automation, renewable energy integration, grid cybersecurity, and advanced research methodologies. Beyond theory, students engage in practical research projects, collaborating with experienced faculty members, and contributing to the development of innovative solutions for the future of electric grids.
Graduates of the M.Tech in Smart Electric Grid program emerge not only as experts in electrical grid technologies but as visionary leaders who can guide the transition to cleaner, more reliable, and resilient electrical grids.
Here is the table of subjects and syllabus for M.Tech in Smart Electric Grid:
S.no | Subjects |
1 | Elements of Smart Grid System |
2 | Microgrid Dynamics and Control |
3 | Dynamics of Renewable Energy Resources |
4 | Smart Grid Protection |
5 | Wide Area Monitoring and Control |
6 | Smart Grid Communications and Protocols |
2nd Year OR 3rd & 4th Semester Syllabus of Master of Technology (M.Tech) Smart Electric Grid
S.No | Subjects |
1 | Smart Grid Planning & Operation |
2 | Grid Integration of Electric Vehicles |
3 | Adaptive and Robust Control System |
4 | Evolutionary Algorithms Application in Power Engineering |
5 | Smart Grid Resiliency and Cyber Security |
6 | Challenges and Solutions in Renewable Integration |
7 | Smart Electrical Distribution System |
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