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PHD in Electrical And Electronics Engineering at CHRIST (Deemed to be University)

Christ University, Bengaluru is a premier institution located in Bengaluru, Karnataka. Established in 1969, it is recognized as a Deemed to be University. Known for its academic strength across diverse disciplines, the university offers over 148 undergraduate, postgraduate, and doctoral programs. With a vibrant co-educational campus spread over 148.17 acres, it fosters a dynamic learning environment and boasts strong placements.

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Bengaluru, Karnataka

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About the Specialization

What is Electrical And Electronics Engineering at CHRIST (Deemed to be University) Bengaluru?

This PhD Electrical And Electronics Engineering program at CHRIST (Deemed to be University) focuses on advanced research and innovation in core and interdisciplinary EEE domains. It addresses the growing need for specialized engineers and researchers in India''''s rapidly evolving power, electronics, and automation sectors. The program emphasizes cutting-edge research methodologies and contributes to significant technological advancements. India''''s push for smart grids, renewable energy, and indigenous manufacturing drives demand for such expertise.

Who Should Apply?

This program is ideal for M.Tech/M.E. graduates in Electrical, Electronics, Instrumentation, or allied fields who possess a strong academic record and a fervent interest in original research. It caters to aspiring academics, R&D professionals seeking deeper analytical skills, and engineers looking to contribute to groundbreaking technological solutions. Candidates should demonstrate a passion for problem-solving and a commitment to rigorous scientific inquiry.

Why Choose This Course?

Graduates of this program can expect to pursue impactful careers as research scientists, university professors, lead engineers in R&D divisions, or innovators in public and private sectors across India. They are equipped to tackle complex challenges in areas like power systems, control engineering, embedded systems, and signal processing. Potential salary ranges for entry-level PhDs in R&D can start from INR 8-12 LPA, growing significantly with experience in firms like Siemens, ABB, DRDO, or ISRO.

Student Success Practices

Foundation Stage

Master Research Methodology and Ethics- (Coursework semester (Semester 1))

Dedicate significant effort to understanding advanced research methodologies, statistical tools, and strict academic ethics during the coursework phase. This involves attending all lectures, actively participating in discussions, and meticulously completing assignments. Focus on identifying and formulating a clear research problem, which is crucial for the entire PhD journey.

Tools & Resources

SPSS, R, Python for data analysis, Mendeley/Zotero for referencing, UGC/AICTE ethical guidelines, Academic integrity workshops

Career Connection

A solid foundation in research methodology ensures the integrity and validity of your research, which is essential for publication in reputable journals and for credible R&D roles.

Engage Proactively with the Doctoral Committee and Supervisor- (Semester 1-2)

Establish clear and consistent communication with your supervisor and doctoral committee members from the outset. Discuss potential research areas, coursework choices, and initial literature reviews regularly. Proactively seek feedback on your research proposals and progress, utilizing their expertise to refine your academic direction.

Tools & Resources

Regular scheduled meetings, Progress report templates, Email communication, Departmental seminars

Career Connection

Effective collaboration and guidance from senior academics are vital for navigating the research process, leading to a well-defined thesis and strong recommendation letters for future career prospects.

Comprehensive Literature Review and Gap Identification- (Semester 1-2)

Beyond coursework, embark on an exhaustive review of existing literature in your chosen domain. Utilize academic databases to identify significant research gaps and potential areas for novel contribution. Summarize key findings, methodologies, and limitations of previous work to solidify your research problem.

Tools & Resources

IEEE Xplore, Scopus, Web of Science, Google Scholar, Institutional library resources, Systematic review software

Career Connection

A strong literature review demonstrates expertise and lays the groundwork for impactful, publishable research, critical for academic or R&D positions.

Intermediate Stage

Develop Specialized Technical and Simulation Skills- (Semester 3-4)

Acquire advanced proficiency in specialized software and hardware tools relevant to your research area in Electrical and Electronics Engineering. This could involve simulation tools like MATLAB/Simulink, PSCAD, ETAP, ANSYS Maxwell, or hardware platforms such as FPGAs, microcontrollers, and advanced sensor systems. Attend workshops and online courses to master these tools.

Tools & Resources

MATLAB/Simulink, PSCAD, ETAP, COMSOL Multiphysics, LabVIEW, PCB design software (Altium Designer, KiCad), Institutional lab facilities

Career Connection

Hands-on expertise with industry-standard tools makes you highly competitive for R&D roles, where practical application and problem-solving are paramount.

Publish in Reputable Peer-Reviewed Journals and Conferences- (Semester 3-5)

Aim to publish your research findings in high-impact, peer-reviewed journals (e.g., IEEE Transactions, Elsevier, Springer) and present at national/international conferences. Start with conference papers to get early feedback and then target journal publications. This involves rigorous paper writing, submission, and revision processes.

Tools & Resources

LaTeX for scientific writing, Journal/conference submission portals, Peer-review feedback, Academic writing workshops

Career Connection

Publications are critical for academic careers, improve your research profile for R&D positions, and demonstrate your ability to contribute to the scientific community.

Network with Industry Professionals and Academics- (Semester 3-5)

Actively participate in departmental seminars, national/international conferences, and industry workshops. Engage with visiting speakers, professors from other institutions, and industry leaders. Build a professional network that can lead to collaborations, internships, and future career opportunities.

Tools & Resources

LinkedIn, Professional body memberships (IEEE, IET), Conference attendance, University alumni events

Career Connection

Networking opens doors to potential supervisors for post-doctoral research, collaborators, and direct industry placement opportunities.

Advanced Stage

Develop Robust Thesis Writing and Presentation Skills- (Semester 5-6 (or beyond, depending on research progress))

Focus intensely on structuring and writing your PhD thesis in a clear, concise, and academically rigorous manner. Practice presenting your research findings effectively, both in oral and written forms. Participate in mock vivas and colloquia to refine your defense strategy and handle critical questions.

Tools & Resources

Thesis templates, Academic writing guides, Presentation software (PowerPoint, LaTeX Beamer), Internal review sessions, University writing center

Career Connection

Strong thesis writing and presentation skills are fundamental for successfully defending your PhD and for any future role requiring clear communication of complex technical information.

Explore Post-Doctoral Opportunities and Career Planning- (Semester 6 onwards (leading up to thesis submission))

Begin exploring post-doctoral research positions, academic faculty roles, or advanced R&D positions in industry well before thesis submission. Prepare your CV, cover letters, and research statements tailored to specific opportunities. Seek guidance from your supervisor and career services for strategic career planning.

Tools & Resources

University career services, Academic job portals (jobs.ac.uk, Chronicle of Higher Education), Industry job boards, LinkedIn, Networking contacts

Career Connection

Proactive career planning ensures a smooth transition post-PhD, aligning your research expertise with desired professional trajectories in academia or industry.

Patent and Intellectual Property Awareness- (Throughout the research phase, particularly during significant discoveries)

Understand the basics of intellectual property rights (IPR) and patent filing, especially if your research has innovative and commercially viable outcomes. Discuss potential patentability with your supervisor and the university''''s IP cell. This could involve documenting your innovations thoroughly.

Tools & Resources

University IP cell, Online patent databases (Google Patents, Espacenet), Workshops on IPR

Career Connection

Awareness of IPR adds significant value to your profile for R&D roles in industry and can open avenues for entrepreneurship or technology commercialization.

Program Structure and Curriculum

Eligibility:

  • Master''''s Degree (M.Tech/M.E.) or an equivalent professional degree in Electrical and Electronics Engineering or related disciplines with a minimum of 55% marks or a CGPA of 6.0 on a 10-point scale. Candidates with M.Phil Degree can also apply.

Duration: Minimum 3 years (full-time) or 4 years (part-time) from the date of Provisional Registration

Credits: Minimum 12 credits for coursework Credits

Assessment: Internal: As decided by the Doctoral Committee for each course, includes internal assessments, presentations, and assignments, External: Written examination for each course. A minimum of 50% marks in each course is required for passing.

Semester-wise Curriculum Table

Semester 1

Subject CodeSubject NameSubject TypeCreditsKey Topics
Research MethodologyCore4Research problem formulation, Research design, Data collection methods, Hypothesis testing, Interpretation and report writing, Quantitative methods and computer applications, Review of published research in relevant field, Research ethics and plagiarism
Domain Specific Course I (Determined by Doctoral Committee)Core4
Domain Specific Course II (Determined by Doctoral Committee)Core4
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