Mr. Satyabrata Behera | Electric Vehicle | Young Scientist Award

Mr. Satyabrata Behera | Electric Vehicle | Young Scientist Award

Mr. Satyabrata Behera , National Institute Of Technology Rourkela , India.

Mr. Satyabrata Behera πŸŽ“ is a passionate researcher in the field of electric vehicle (EV) technology ⚑, currently pursuing his Ph.D. at NIT Rourkela 🏫. With a strong foundation in MATLAB scripting πŸ’», power electronics, and adaptive control strategies, he focuses on efficient and intelligent EV charging systems πŸš—πŸ”Œ. Satyabrata is adept at PCB design πŸ› οΈ, battery management πŸ”‹, and grid-connected systems integration 🌐. He has contributed to cutting-edge research projects under esteemed professors and aims to innovate in power quality optimization and renewable energy integration πŸŒžβš™οΈ. His commitment to academic excellence and practical design makes him a promising scholar in sustainable technologies 🌿.

Professional Profile

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Education & Experience

πŸŽ“ Education:
  • πŸ“š Ph.D. in Electrical Engineering, NIT Rourkela (2022–Present) – CGPA: 9.04/10

  • πŸ“˜ M.Tech in Power Electronics & Drives, NIT Sikkim (2020–2022) – CGPA: 7.56/10

  • πŸŽ“ B.Tech in Electrical Engineering, GIET Odisha (2016–2020) – CGPA: 7.50/10

  • 🏫 Higher Secondary, Oscar Science College (2014–2016) – 64%

  • πŸ“– Secondary Education, Mahu High School (2014) – 72%

πŸ§ͺ Research Experience:
  • πŸ”Œ Ph.D. Research: Grid-tied Multifunctional EV Charger at NIT Rourkela

  • βš™οΈ M.Tech Project: Direct Torque Control Induction Motor for EVs at NIT Sikkim

  • ⚑ B.Tech Project: Piezoelectric Footstep Power Generation

Summary Suitability

As an early-career researcher with a consistent academic record and hands-on innovation, Satyabrata Behera exemplifies the qualities celebrated by the Young Scientist Awardβ€”scientific originality, innovation, interdisciplinary impact, and a drive for societal relevance. His research is geared toward developing smart, grid-tied multifunctional EV chargers that facilitate efficient, renewable-integrated charging infrastructure, crucial for the future of e-mobility and green energy systems.

Professional Development

Satyabrata Behera is consistently evolving as a researcher in power electronics and electric mobility 🚘. His development includes hands-on proficiency in MATLAB/Simulink 🧠, hardware prototyping with FPGA and microcontrollers πŸ”§, and converter PCB design for real-world applications πŸ–₯️. He actively contributes to multidisciplinary energy system designs involving photovoltaic integration 🌞, smart grid technology 🌐, and battery charging strategies πŸ”‹. His participation in collaborative projects at prestigious institutions like NIT Rourkela and NIT Sikkim reflects his commitment to innovation and continuous learning πŸ“š. Satyabrata also sharpens his technical writing ✍️ and presentation skills πŸ“Š, preparing for future academic and industry leadership roles.

Research Focus

Satyabrata Behera’s research lies at the intersection of electric vehicle technology, power electronics, and smart grid integration πŸ”ŒπŸš™. He focuses on the development of intelligent, efficient, and multifunctional EV chargers ⚑ that harmonize power between solar PV 🌞, the utility grid 🌐, and battery storage πŸ”‹. His work addresses power quality enhancement, adaptive control techniques, and energy optimization in EV infrastructure. By applying simulation tools like MATLAB and deploying hardware prototypes, he bridges the gap between theoretical models and practical implementation πŸ’‘. His interdisciplinary work supports the advancement of green transportation and renewable energy systems 🌱.

Awards & Honors

  • πŸŽ–οΈ Secured Ph.D. position at NIT Rourkela with high academic standing

  • πŸ₯‡ M.Tech research project recognized for EV innovation at NIT Sikkim

  • πŸ“œ Multiple academic excellence awards during undergraduate and postgraduate studies

  • πŸ… Awarded top project presentation in EV Charging System design seminar

  • πŸ’‘ Recognized for innovative PCB design during power electronics workshop

Publication Top Notes

  • A Dual Control Strategy for Improved Power Quality in Grid-Tied Off-Board Bidirectional Electric Vehicle Charger
    πŸ”Ή Authors: S. Behera, N. Venkata Ramana Naik, A. K. Panda, S. K. Behera
    πŸ”Ή Journal: Electric Power Systems Research, Vol. 236, Article 110917
    πŸ”Ή Year: 2024
    πŸ”Ή Cited by: 9
    πŸ”Ή Focus: Power quality improvement in EV chargers using dual control
    πŸ”— DOI / Publisher Link: [Available on Elsevier]

  • Advanced Off-Board Bidirectional Electric Vehicle Charger with Enhanced Power Quality and Supporting Grid Resilience
    πŸ”Ή Authors: S. Behera, N. Venkata Ramana Naik, A. K. Panda, S. K. Behera
    πŸ”Ή Journal: Electrical Engineering, Vol. 106, Issue 3, pp. 3231–3242
    πŸ”Ή Year: 2024
    πŸ”Ή Cited by: 9
    πŸ”Ή Focus: Grid-resilient EV charging systems
    πŸ”— DOI / Publisher Link: [Available on Springer]

  • Design and Implementation of a Domestic Off-Board Multifunctional Bidirectional Electric Vehicle Charger
    πŸ”Ή Authors: S. Behera, V. R. Naik N., A. K. Panda, S. K. Behera, L. Senapati, M. Karthik
    πŸ”Ή Conference: IECON 2023 – 49th Annual Conference of the IEEE Industrial Electronics Society
    πŸ”Ή Year: 2023
    πŸ”Ή Cited by: 9
    πŸ”Ή Focus: Domestic EV charger design with bidirectional power flow
    πŸ”— DOI / Publisher Link: [Available on IEEE Xplore]

  • SOGI-PLL Based Control Technique for the Single-Phase Single-Stage Grid Connected PV System
    πŸ”Ή Authors: S. V. Prakash, S. Behera, M. Karthik
    πŸ”Ή Conference: 2023 First International Conference on Cyber Physical Systems, Power and Energy (CPSPE)
    πŸ”Ή Year: 2023
    πŸ”Ή Cited by: 5
    πŸ”Ή Focus: SOGI-PLL method for PV grid integration
    πŸ”— DOI / Publisher Link: [Available on IEEE Xplore]

  • Weibull M-Transform LMS-Based Control Scheme for Grid-Connected Photovoltaic System
    πŸ”Ή Authors: M. Karthik, V. R. Naik N., A. K. Panda, S. K. Behera, P. Mohapatra, S. Behera
    πŸ”Ή Conference: IECON 2023 – 49th Annual Conference of the IEEE Industrial Electronics Society
    πŸ”Ή Year: 2023
    πŸ”Ή Cited by: 4
    πŸ”Ή Focus: Advanced LMS control for PV system performance
    πŸ”— DOI / Publisher Link: [Available on IEEE Xplore]

  • Design of a Level-3 DC Fast Charging Station for EVs Using a Dual Active Bridge DC-DC Converter
    πŸ”Ή Authors: A. K. Jaiswal, A. K. Panda, L. Senapati, S. K. Behera, S. Behera
    πŸ”Ή Conference: IECON 2023 – 49th Annual Conference of the IEEE Industrial Electronics Society
    πŸ”Ή Year: 2023
    πŸ”Ή Cited by: 3
    πŸ”Ή Focus: DC fast charger with DAB converter for EVs
    πŸ”— DOI / Publisher Link: [Available on IEEE Xplore]

  • An Enhanced Grid-Tied Off-Board Electric Vehicle Charger with Improved Power Quality Using Unified Control Approach
    πŸ”Ή Authors: S. Behera, V. R. Naik, A. K. Panda, S. K. Behera, N. Tiwary
    πŸ”Ή Journal: IEEE Transactions on Power Electronics
    πŸ”Ή Year: 2025
    πŸ”Ή Cited by: 1
    πŸ”Ή Focus: Unified control for enhanced power quality in EV chargers
    πŸ”— DOI / Publisher Link: [Forthcoming / Available on IEEE Xplore]

  • Solar PV Based Boost Multi Level Inverter for Inductive Load
    πŸ”Ή Authors: A. Kumar, N. V. R. Naik, M. Karthik, S. Behera
    πŸ”Ή Conference: 2023 IEEE 3rd International Conference on Smart Technologies for Power, Energy and Control (STPEC)
    πŸ”Ή Year: 2023
    πŸ”Ή Cited by: 1
    πŸ”Ή Focus: Multilevel inverter design for solar PV applications
    πŸ”— DOI / Publisher Link: [Available on IEEE Xplore]

  • Dual Active Bridge Converter Based Battery Charging System for Electric Vehicle Applications
    πŸ”Ή Authors: C. R. K. Reddy, M. Karthik, S. Behera
    πŸ”Ή Conference: 2023 First International Conference on Cyber Physical Systems, Power and Energy (CPSPE)
    πŸ”Ή Year: 2023
    πŸ”Ή Cited by: 1
    πŸ”Ή Focus: Battery charging using DAB topology for EVs
    πŸ”— DOI / Publisher Link: [Available on IEEE Xplore]

Conclusion

Satyabrata Behera’s accomplishments position him as a rising star in the field of sustainable electrical systems and smart mobility. His early yet impactful research reflects innovative thinking, strong interdisciplinary integration, and a passion for addressing energy efficiency and power quality challenges in EV systems. Given his outstanding technical contributions, dedication to experimental and applied research, and future promise, he is highly deserving of the Young Scientist Award.