Course Description

The Department of Electrical and Computer Engineering (ELCE) is a hub of innovation, research, and academic excellence. Our mission is to empower students with cutting-edge knowledge and skills, foster interdisciplinary research, and develop future-ready professionals who excel in solving real-world challenges.

Key Focus Areas:

1: Power and Energy Systems: Smart grids, renewable energy, and sustainable solutions.

2: Computer Systems and Software Development: Embedded systems, AI, and IoT.

3: Robotics and Automation: Industrial robotics and autonomous systems.

4: Advanced Communication Networks: 5G, IoT, and next-gen communication technologies.

5: Space and Aviation Technologies: Systems design for aerospace and satellite communication.

6: Electric Vehicles and Smart Mobility: EV systems, battery management, and intelligent transport.

7: Biomedical Instrumentation: AI-driven diagnostics, healthcare systems, and wearable technologies.

Key Highlights:
  • Innovative and Next Generation Curriculum: A robust 160-credit B.Tech. program with a unique blend of electrical and computer engineering courses, integrated with industry trends.
  • Hands-On Learning: State-of-the-art labs for practical exposure to advanced technologies through project-based learning experiences.
  • Industry Collaboration: Partnerships with leading organizations for internships, live projects, and research.
  • Research Excellence: Active participation in multidisciplinary research areas like AI, Industry 5.0, and sustainable energy solutions.
  • Career-Ready Graduates: Strong focus on skill development, entrepreneurship, and employability.
  • State-of-the-Art and Advanced Research Labs: Real-time Data Acquisition and Analytics lab, AI & IoT lab, Advanced Power and Energy Systems lab, E-Mobility Lab, Robotics lab, and many more.
  • Collaborative Spaces: Innovation hubs for interdisciplinary projects.
  • Digital Learning Resources: High-tech classrooms and virtual labs.

Vision

To become a leader in fostering innovation and research for sustainable electrical and computer engineering solutions to address global challenges and serve humanity.

Mission

  • To equip students with cutting-edge technical knowledge and creativity in Electrical and Computer Engineering.
  • To establish strong partnerships with global industries for providing practical and real-world learning.
  • To provide a conducive environment for impactful research that addresses modern challenges and advances in AI-driven technologies and automation.
  • To develop a sustainable ecosystem that nurtures globally competent professionals and leaders.

Program Outcomes

  • Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems.
  • Problem analysis: Identify, formulate, review research literature, and analyze complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.
  • Design/development of solutions: Design solutions for complex engineering problems and design system components or processes that meet the specified needs with appropriate consideration for the public health and safety, and the cultural, societal, and environmental considerations.
  • Conduct investigations of complex problems: Use research-based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of the information to provide valid conclusions.
  • Modern tool usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modeling to complex engineering activities with an understanding of the limitations.
  • The engineer and society: Apply reasoning informed by the contextual knowledge to assess societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to the professional engineering practice.
  • Environment and sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development.
  • Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice.
  • Individual and team work: Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.
  • Communication: Communicate effectively on complex engineering activities with the engineering community and with society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations, and give and receive clear instructions.
  • Project management and finance: Demonstrate knowledge and understanding of engineering and management principles and apply these to one's own work, as a member or leader in a team, to manage projects in multidisciplinary environments.
  • Life-long learning: Recognize the need for, and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological change.

Dean's Message

Welcome to the Department of Electrical and Computer Engineering (ELCE) at KIET, Ghaziabad.

It gives me immense pleasure to welcome you to a department that is dedicated to delivering high-quality education, fostering innovation, and nurturing excellence in the rapidly advancing domains of Electrical and Computer Engineering.

In today’s era of technological transformation driven by Artificial Intelligence, Machine Learning, Automation, and Digital Engineering, our mission is to prepare students who are not only technically proficient but also ethically grounded, innovative, and globally competent. The B.Tech. programme in Electrical and Computer Engineering is carefully structured to equip students with the skills, knowledge, and vision required to excel in both industry and academia.

Our strength lies in our committed faculty members, advanced laboratories, and robust industry collaborations. The department proudly features AI and ML–driven Software Computational Laboratories that provide students with hands-on experience in next-generation technologies. Students also engage in innovative live projects sponsored by industry, enabling them to solve real-world challenges, gain industry exposure, and build strong professional competencies.

We believe that education extends far beyond the classroom. Students are encouraged to participate in cutting-edge research, internships, professional workshops, and collaborative projects. These opportunities help them convert theoretical understanding into practical solutions and prepare them for leadership roles in emerging technological landscapes.

Our department consistently ensures excellent placement opportunities, supported by strong corporate linkages and the development of human values. We emphasize human ethics, professional integrity, social responsibility, and holistic development, ensuring that our graduates succeed not only in their careers but also as responsible global citizens.

At ELCE, you will be part of a vibrant academic ecosystem that fosters creativity, critical thinking, teamwork, and lifelong learning. Regular seminars, expert talks, and industry interactions help students stay aligned with global trends and build strong professional networks. On behalf of the department, I warmly welcome you and wish you a fulfilling, inspiring, and rewarding academic journey with us.

- Dr. Neeraj Kumar Gupta

Faculty

Faculty Image
S.NoRankCount
1PROFESSOR5
2ASSOCIATE PROFESSOR6
3ASSISTANT PROFESSOR13
4PROFESSOR OF PRACTICE1
5ADJUNCT FACULTY2
S.NoNameDesignation
1Dr. Neeraj Kumar GuptaProfessor & Dean ELCE
2Dr. Yaduvir SinghProfessor & Program Head
3Dr. Arvind Kumar SharmaProfessor & Head-HCC
4Dr. Satish KumarProfessor
5Dr. Nitin Kumar SaxenaProfessor
6Dr. Jyoti SrivastavaAssociate Professor
7Dr. Rahat U KhanAssociate Professor
8Dr. Masood RizviAssociate Professor
9Dr. Ruchika SinghAssociate Professor
10Dr. Surendra Kumar TripathiAssociate Professor
11Dr. Md. Shariz AnsariAssociate Professor
12Dr. Ameer FaisalAssistant Professor
13Dr. SalimAssistant Professor
14Dr. SheetalAssistant Professor
15Dr. Rajeev KumarAssistant Professor
16Prof. Varun SharmaAssistant Professor
17Dr. Sourav DiwaniaAssistant Professor
18Prof. Kapil GandhiAssistant Professor
19Dr. Snigdha ChaturvediAssistant Professor
20Dr. BandanaAssistant Professor
21Dr. Vanya GoelAssistant Professor
22Dr. Ankur MaheshwariAssistant Professor & Program Head (I Year)
23Dr. Mukesh SinghAssistant Professor
24Dr. Bhuvan SharmaAssistant Professor
25Dr. Sindhu BhaskarProfessor Of Practice
26Mr. Ashish D. ThombreAdjunct Faculty
27Mr. Arun Kumar YadavAdjunct Faculty
28Mr. Praveen Kumar TyagiSr. Lab In-charge
29Mr. Krishna Pratap SinghLab Instructor (II)
30Mr. Prakash Chandra ThakurLab Instructor (II)
31Mr. PrempalLab Instructor (II)
32Mr. Pratipal SinghLab Instructor (II)
33Mr. Girish DuttLab Instructor (II)
34Mr. Anil Kumar KushwahaLab Instructor (I)
35Mr. Umesh Kumar MishraLab Technician (II)
36Mr. Amit KumarLab Technician (II)
37Mr. Lalit KumarOfficer
38Mr. Sanju Singh (ELCE)Sr. Executive (Academic Support)

Publications & Research

publications and research
1
2
3
Overall Research Summary
S.NoPublication CategoryCount
1Journal18
2Conference19
3Book1
4Book Chapter1
5Patent Published4
6Patent Granted9
7Ph.D Guidance5

Class Room

We have well-equipped class rooms with smart touch boards, audio system and internet facilities.

ClassRoom

Labs

Students engage with advanced laboratories, including Power Systems, Power Electronics, Embedded Systems, Instrumentation and Measurement, and Computer-Aided Design. Platforms like MATLAB, LabVIEW, CATIA, and OPAL-RT simulate real-world scenarios, bridging theory and practice seamlessly.

  • Data structure Lab : Hands-on implementation of fundamental data structures to build efficient and optimized algorithms.
  • Python for Engineers Lab : Practical coding sessions using Python to solve engineering problems with simplicity and efficiency.
  • Microprocessors Lab : Provides hands-on training in microprocessor and microcontroller programming, interfacing, and embedded system applications.
  • Power Electronics Lab : Equipped with converters, inverters, and experimental setups to study switching devices and power electronic circuits used in modern electrical systems.
  • Electrical Machine Lab : Facilitates practical experiments on DC machines, induction motors, transformers, and synchronous machines to understand their characteristics and performance.
  • Power Systems Laboratory : Offers simulation and analysis tools for power generation, transmission, distribution, load flow studies, and system stability assessments.
  • Electric Drives & Control System Laboratory : Provides exposure to motor drive systems, controllers, and feedback mechanisms used in industrial automation and motion control applications.
  • Industrial Automation & PLC Lab : Trains students in programmable logic controllers, SCADA systems, and industrial automation techniques widely used in manufacturing industries.
  • IoT and Embedded Systems Laboratory : Focuses on sensor integration, IoT platforms, and embedded system development for smart automation, monitoring, and real-time applications.
  • Measurement Embedded system Lab : Equipped for precision measurement, instrumentation experiments, and embedded system prototyping using modern tools and microcontrollers.
  • Simulation platforms: MATLAB, LabVIEW, CATIA, OPAL-RT, MULTISIM, PSAT
Lab image

Placement

    Center of Excellence

    Power and Energy Systems

    Power and Energy Systems

    E-Mobility

    E-Mobility

    Testimonials

    Clubs

    Industrial Electronics and Control Club

    Industrial Electronics and Control Club

    This Club provides a dynamic platform for students to apply their innovative ideas and transform them into impactful real-world solutions. The club encourages creativity, hands-on learning, and practical implementation through projects, workshops, and industry-aligned activities.

    Socio Tech Innovation Club

    Socio Tech Innovation Club

    The agenda of this club is to incorporate technical innovations in the minds of the students and provide them the confidence that any idea can be accepted and worked upon. Tech Innovation Club helps to engage students in innovative and creative activities apart from providing opportunities for hands-on activities.

    Syllabus

    ELCE I YEAR
    ELCE II YEAR
    SIH Software Edition 2025SIH Grand Finale will be held on 8 - 9 December
    UP Scholarship 2025Biometrics verification will continue until December 10th
    AKTU Circular Odd Sem 2025-26Regarding Filling Examination Form (III & IV Year)
    Alumni Meet 2025Alumni Meet is scheduled for 27th December, 2025

    Important Links

    Register For Admission 2026–27