Govind Kumar Mishra | Electronics Engineering | Best Researcher Award

Mr. Govind Kumar Mishra | Electronics Engineering
| Best Researcher Award

PhD Scholar at Indian Institute of Technology, Roorkee, India.

Govind Kumar Mishra is a dedicated researcher in RF and Microwave Engineering, currently pursuing his Ph.D. at IIT Roorkee. With a strong foundation in electronics and communication, he specializes in Substrate Integrated Waveguide (SIW) filter design for 5G and microwave applications. He has published multiple research papers and actively works on the development and simulation of advanced microwave devices using software such as HFSS, CST, and ADS. Govind has industry exposure from Sky Voice Telecom and academic experience as a GATE/IES tutor. He is a multi-time GATE qualifier and has received fellowships during both M.Tech and Ph.D. His commitment to high-frequency device innovation and his technical acumen make him a rising expert in his domain.

🌍 Professional Profile:

Google Scholar 

🏆 Suitability for the Best Researcher Award :

Govind Kumar Mishra is highly suitable for the Best Researcher Award due to his focused contributions in RF and Microwave device development, especially in SIW filter design for emerging 5G systems. His ongoing research at IIT Roorkee reflects originality, technical depth, and strong relevance to next-generation wireless technology. He has consistently demonstrated excellence through GATE qualifications, academic fellowships, and advanced simulations in real-world applications. His interdisciplinary expertise combines theory, simulation, and practical considerations in microwave filter technology. Govind’s proactive approach, supported by recognized academic achievements and innovative solutions for modern communication systems, makes him a strong candidate for this prestigious recognition.

🎓 Education :

Govind holds a B.Tech. in Electronics & Communication (2011) from SIT Mathura, an M.Tech. in Electronics Design & Technology (2018) from NIELIT Gorakhpur with honors, and is currently pursuing a Ph.D. in RF and Microwave Engineering at IIT Roorkee (since 2019). His academic performance is consistently commendable, with a 9 CGPA in Ph.D. coursework and 8.56 CGPA in M.Tech. His research focus spans simulation and modeling of microwave filters using cutting-edge tools like HFSS, CST, ADS, and MATLAB. His doctoral thesis involves designing SIW Band Pass Filters tailored for 5G system applications. His formal education, supported by deep software expertise and rigorous project work, provides a solid foundation for innovative contributions to the electronics and communication field.

🏢 Work Experience :

Govind Kumar Mishra brings both industrial and academic experience. He began his career with Sky Voice Telecom Pvt. Ltd. in New Delhi (2011–2012), gaining practical exposure to communication systems. From 2013–2016, he engaged in academic tutoring, mentoring students for GATE and IES examinations. His current Ph.D. research at IIT Roorkee has involved extensive hands-on work with high-frequency simulations, device modeling, and real-world filter implementation. His experience includes designing both single and dual-band microwave filters using SIW technology. With a keen ability to model devices in practical conditions and synchronize various tools and methods, Govind’s professional experience is a well-rounded blend of research depth, simulation skill, and applied electronics engineering practice.

🔹 Awards and Honors

Govind Kumar Mishra is a recipient of multiple prestigious accolades. He has qualified the GATE exam in Electronics Engineering four times (2013, 2016, 2017, 2019), a testament to his strong technical foundation. He earned M.Tech. and Ph.D. scholarships supported by GATE and institutional funding. In 2008, he achieved 1st place in the Truss Busting Model Presentation competition at Hindustan College of Science & Technology, highlighting his early promise in engineering design. His consistent academic distinction, recognized through honors and merit-based fellowships, underlines his capability and dedication to advancing the field of microwave technology. These honors reflect both his theoretical knowledge and hands-on technical competence in the research and design of electronic systems.

🔬 Research Focus :

Govind Kumar Mishra’s research centers on the design, simulation, and development of microwave filters and devices using Substrate Integrated Waveguide (SIW) technology. His Ph.D. work addresses SIW Band Pass Filter development for transmitter and receiver ends in 5G systems. He leverages tools like HFSS, CST, ADS, and MATLAB for high-frequency structure simulation, performance optimization, and modeling. His work aims to reduce the size and weight of microwave devices while improving reliability and fabrication ease. He is also exploring novel dual-band and single-band filter structures suitable for modern communication demands. His interest spans electromagnetic field theory, antenna systems, and high-frequency communication technologies, contributing to the rapidly growing need for efficient spectrum utilization in IoT and wireless systems.

📊 Publication Top Notes:

📘 A Novel SIW Bandpass Filter Design by Diagonal Coupling Approach on Single and Multilayer Model
Year: 2025 | Cited by: – | 🛠️📡

📘 A Single‑Layer Dual‑Band SIW Filter on a Mixed Coupling Structure for 5G Applications
Year: 2025 | Cited by: – | 📶🚀

📘 Novel Coupling Design For Substrate Integrated Waveguide Bandpass Filter
Year: 2024 | Cited by: 2 | ✅📡

📘 Substrate Integrated Waveguide Filter Based On Inductive Post Design
Year: 2023 | Cited by: 2 | 🔧📐

📘 Design of Dual Band Substrate Integrated Waveguide Filter for Radar Application in Ku Band
Year: 2018 | Cited by: 2 | 📻🎯

📘 SIWG Filter at 17.24 GHz with RT Duroid 5880 Substrate for Wireless Applications
Year: 2018 | Cited by: 2 | 📡📶

Yang Li | Electrical Engineering | Best Researcher Award

Assoc. Prof. Dr. Yang Li | Electrical Engineering
| Best Researcher Award

Director at Forensic Science Institute China People’s Police University, China.

Dr. Li Yang is an Associate Professor at the China People’s Police University, specializing in electrical fire investigation and forensic evidence analysis. With a Ph.D. in Safety Science and Engineering from Xi’an University of Science and Technology and extensive research on arc faults, short-circuit initiation, and pyrolysis gas analysis, he has become a leading voice in electrical fire forensics. He serves on the Committee on Electrical Fire Safety of the China Fire Association and has led multiple national and provincial projects. Recognized as a Distinguished Teacher of Hebei Province in 2022, his contributions have significantly enhanced fire evidence identification technologies. He has also played a pivotal role in national training programs and technical innovations for fire investigators.

🌍 Professional Profile:

Scopus

🏆 Suitability for the Best Researcher Award :

Dr. Li Yang is a strong candidate for the Best Researcher Award due to his pioneering work in electrical fire investigation. His research advances the forensic science field through the development of intelligent identification technologies and fault simulation devices. He has been instrumental in leading key national and provincial projects, authoring technical patents, and contributing to cutting-edge publications. His academic leadership, combined with practical innovation, addresses critical safety concerns in fire investigation. Recognition by both academic institutions and the Ministry of Public Security underscores his impact. His ability to integrate science, engineering, and real-world application makes him not only a productive researcher but a transformative force in safety science.

🎓 Education :

Li Yang holds a Doctor of Philosophy in Safety Science and Engineering from Xi’an University of Science and Technology (2018–2022). Prior to that, he earned a Master of Science in Materials Science (2008–2011) and a Bachelor of Science in Fire Investigation (2004–2008), both from the China People’s Police University. His interdisciplinary educational background has equipped him with a solid foundation in forensic materials, fire safety engineering, and investigative techniques. This strong academic progression supports his current research and teaching in the field of electrical fire forensics and contributes to the training of future safety professionals in law enforcement and public safety sectors.

🏢 Work Experience :

Dr. Li Yang has served in various academic positions at the China People’s Police University since 2014. Currently an Associate Professor in the Investigation College (since 2020), he previously held positions in the Department of Fire Engineering. Over the years, he has been deeply involved in curriculum development, investigator training, and research supervision. His expertise has also been sought by national bodies such as the Ministry of Public Security, where he serves as a fire-related case investigation expert. He has combined teaching excellence with project leadership across government-funded and institutional research. His dual role as educator and researcher enables him to bridge academic knowledge with field application effectively.

🏅 Awards and Honors :

Dr. Li Yang has received numerous accolades for his contributions. Notably, he was honored as a Distinguished Teacher of Hebei Province in 2022 and selected as a Fire Investigation Expert by the Criminal Investigation Bureau of the Ministry of Public Security in 2020. He is a Committee Member on Electrical Fire Safety with the China Fire Association. His research earned the Third Prize from the Ministry of Public Security Science and Technology Award in 2019. These awards reflect both his academic excellence and societal impact. Through these honors, Dr. Yang has been recognized for his research leadership, technological innovation, and dedication to advancing fire safety practices across China.

🔬 Research Focus :

Dr. Li Yang’s research centers on electrical fire forensics, particularly the mechanisms behind short-circuit faults, arc-related ignition, and trace identification. He applies cutting-edge tools such as STA-FTIR-GC/MS to analyze pyrolysis gases from common materials in electrical systems, aiming to establish the forensic links between device failure and fire cause. His studies also examine the behavior of molten droplets, overcurrent wire degradation, and fault inversion modeling under variable environmental conditions. He leads national R&D programs and technical research projects focusing on intelligent identification technologies and early-warning mechanisms. His goal is to enhance fire evidence analysis reliability and improve training and tools for first responders and forensic investigators in China.

📊 Publication Top Notes:

🔥 Lin Q‑W, Li X, Li Y, Deng J, Man P‑R, Jia Y‑Z. Comparative investigation on thermo‑oxidative degradation and fire characteristics of flame‑retardant and non‑flame‑retardant polyvinyl chloride wires. Thermal Science and Engineering Progress. 2025;57:103210. • 📄 Cited X times

Lin Q‑W, Li Y, Man P‑R, Jin Y, Lyu H, Wang H, Zhao Y, Su W, Deng J. Effects of applied voltages on the occurrence features of short circuits in building cables exposed to constant radiation heat. Journal of Building Engineering. 2024;98:111038. • 📄 Cited Y times

🧪 Lin Q‑W, Li Y, Deng J, F‑F He, P‑R Man. Thermo‑oxidative degradation behavior of poly(vinyl chloride) insulation for new and overloaded wires via TG‑FTIR. Journal of Applied Polymer Science. 2024;141(39):e55994. • 📄 Cited Z times

🧯 Li Z, Lin Q‑W, Li Y, et al. Effect of the current on the fire characteristics of overloaded polyvinyl chloride copper wires. Polymers. 2022;14(21):4766.* • 📄 Cited A times

🔥 Lin Q‑W, Li Y, Deng J. Formation mechanism and microstructural analysis of blistering marks on overcurrent copper wires. Fire Safety Journal. 2024;150(Pt A):104268. • 📄 Cited B times

Li Y, Sun Y, Gao Y, et al. Analysis of overload‑induced arc formation and bead characteristics in a residential electrical cable. Fire Safety Journal. 2022;131:103626. • 📄 Cited C times

Hemendra Kumar Pandey | Electronics Engineering | Best Researcher Award

Dr. Hemendra Kumar
Pandey | Electronics Engineering
| Best Researcher Award

Scientific Officer at Homi Bhabha National Institute (HBNI), Department of Atomic Energy (DAE), India.

Dr. Hemendra Kumar Pandey is a senior RF and accelerator systems expert serving as Scientific Officer-G at VECC, Department of Atomic Energy, and Associate Professor at HBNI. With over two decades of experience, he has played a pivotal role in the development of the Radioactive Ion Beam Facility in Kolkata. He holds a Ph.D. from IIT Kharagpur, and M.Tech and B.Tech degrees from the University of Allahabad. His research spans RF systems for particle accelerators, high-power amplifier design, beam diagnostics, and radiation-hardened circuits. Dr. Pandey has authored over 100 publications and is an active member of professional and ethical committees. His work significantly contributes to India’s advanced nuclear physics infrastructure and technology innovation in accelerator science.

🌍 Professional Profile:

Google Scholar 

ORCID

🏆 Suitability for the Best Researcher Award :

Dr. Hemendra Kumar Pandey is a highly suitable candidate for the Best Researcher Award due to his impactful contributions in the field of particle accelerator technologies and RF system design. His long-standing commitment to national scientific development through his work on the Radioactive Ion Beam facility at VECC demonstrates leadership, innovation, and excellence. With over 113 publications and active involvement in research, peer review, and academic mentorship, Dr. Pandey has made significant strides in RF engineering and radiation-hardened electronics. His role in developing indigenous technology for societal and industrial applications showcases applied research at its finest. His multidisciplinary expertise and dedication to scientific advancement make him an exemplary researcher worthy of this honor.

🎓 Education :

Dr. Hemendra Kumar Pandey has a strong academic foundation in electronics and RF systems. He earned his Ph.D. from the prestigious Indian Institute of Technology (IIT) Kharagpur, specializing in RF and microwave systems for particle accelerators. He completed his Master of Technology (M.Tech) in Electronics and his Bachelor of Technology (B.Tech) in Electronics & Telecommunication from the University of Allahabad, Prayagraj. His academic trajectory reflects a consistent focus on high-frequency electronics, amplifier design, and system-level integration, equipping him with the advanced knowledge required to tackle the challenges in nuclear science and accelerator technology. Dr. Pandey’s educational background serves as the cornerstone of his innovations in high-power RF systems and radiation-hardened integrated circuit design.

🏢 Work Experience :

Dr. Pandey joined the Department of Atomic Energy through BARC Training School in 1999 and has since built a distinguished career at VECC, Kolkata. Starting as a Scientific Officer-C in 2000, he progressed through the ranks to his current role as Scientific Officer-G. His core responsibilities include RF system design, high-power amplifier development, ion source integration, and beam diagnostics for linear accelerators. He has over two decades of experience contributing to one of India’s major research infrastructures—the Radioactive Ion Beam Facility. Additionally, he holds an Associate Professorship at Homi Bhabha National Institute. His practical leadership spans R&D, education, and national-level research missions, with consistent involvement in technological innovation and scientific mentorship.

🏅 Awards and Honors :

Dr. Hemendra Kumar Pandey’s professional excellence has earned him widespread recognition. He is a Fellow of the Institution of Electronics and Telecommunication Engineers (IETE) and an active member of key scientific bodies such as the Indian Society of Particle Accelerator (ISPA) and Hindi Vigyan Sahitya Parishad. He has been a member of the Institutional Ethical Committee of NIOH under the Ministry of AYUSH. He frequently serves as a Ph.D. and M.Tech thesis evaluator for reputed institutions and is a reviewer for high-impact journals like the Review of Scientific Instruments. His accolades underscore his commitment to scientific rigor, ethical research practices, and mentorship, further solidifying his leadership and influence in the field of nuclear instrumentation and accelerator research.

🔬 Research Focus :

Dr. Pandey’s research focuses on the design and development of RF systems for particle accelerators, high-power RF amplifiers, beam diagnostics, and radiation-hardened mixed-signal RF ICs. His pivotal role in the Radioactive Ion Beam Facility at VECC involves delivering high-precision RF engineering solutions for accelerating short-lived isotopes—crucial for nuclear physics and material science. He has also contributed to developing novel diagnostics tools, ion source control systems, and radiation-resilient electronics. His research bridges fundamental physics and practical technology applications, enabling advances in both science and society. By addressing the complexities of RF behavior under high-energy environments, his work fosters innovation in accelerator technology, supporting India’s leadership in nuclear science and allied interdisciplinary domains.

📊 Publication Top Notes:

📘 The design of a four‑rod RFQ LINAC for VEC‑RIB facility
📅 2004 | 🔢 Cited by: 21 🧲🛠️ ispa.co.in+6researchgate.net+6scholar.google.co.in+6

📘 Design and development of a radio frequency quadrupole linac post‑accelerator for the Variable Energy Cyclotron Center rare ion beam project
📅 2010 | 🔢 Cited by: 19 ⚙️🔬 vecc.gov.in+3researchgate.net+3scholar.google.co.in+3

📘 Design of LINAC post‑accelerator for VECC RIB facility using realistic field
📅 2006 | 🔢 Cited by: 16 💡🔧 scholar.google.co.in

📘 33.7 MHz heavy‑ion radio frequency quadrupole linac at VECC Kolkata
📅 2007 | 🔢 Cited by: 15 📡🔭 researchgate.net+15researchgate.net+15scholar.google.co.in+15

📘 Improvement in phase‑sensitivity of a Mach–Zehnder interferometer with the superposition …
📅 2023 | 🔢 Cited by: 13 ⚛️🔍 arxiv.org+6scholar.google.co.in+6en.wikipedia.org+6

📘 Design of a “two‑ion source” Charge Breeder using ECR ion source in two frequency mode
📅 2005 | 🔢 Cited by: 13 🧩🚀 vecc.gov.in+2scholar.google.co.in+2colab.ws+2

📘 Design of a gas‑jet coupled ECR ion‑source for ISOL type RIB facility
📅 2020 | 🔢 Cited by: 1 🌬️⚗️ ui.adsabs.harvard.edu+15colab.ws+15vecc.gov.in+15

Huakun Bi | Electrical Engineering | Best Researcher Award

Dr. Huakun Bi| Electrical Engineering
|Best Researcher Award

Lecturer at School of Electrical and Automation Engineering, Shandong University of Science and Technology, Qingdao, China.

 

Dr. Huakun Bi, a Lecturer at the School of Electrical and Automation Engineering, Shandong University of Science and Technology, is a prolific researcher in power electronics. He earned his Ph.D. from Tianjin University in 2020 and has since demonstrated significant academic and industrial contributions. With 17 research papers—12 SCI and 15 EI indexed—and multiple prestigious research projects, he has become a leading expert in DC-DC converters, electric vehicles, and DC microgrids. Dr. Bi’s innovative designs have enhanced voltage regulation and energy efficiency in electric vehicle systems. His high citation count, active role as a journal reviewer, and leadership in government- and industry-funded projects reflect outstanding research impact and make him an excellent candidate for the Best Researcher Award.


🌍 Professional Profile:

Scopus

Orcid

🏆 Suitability for the Best Researcher Award

 

Dr. Shahrzad Falahat exemplifies excellence in applied AI research, making her a highly suitable candidate for the Best Researcher Award. With a Ph.D. in Computer Vision and over five years of impactful industrial experience, she has led innovative projects that address critical real-world challenges. Her development of AI-powered fault detection software for power transmission lines reduced outages by 70%, while her automated cartography system cut map production time by 80%. She combines deep technical expertise in Python, PyTorch, TensorFlow, and embedded AI with strong project management and cross-sector collaboration. Her work integrates research and practice, resulting in scalable, intelligent solutions with tangible societal benefits, positioning her as a leader in the field of AI and computer vision.

🎓 Education 

Dr. Huakun Bi earned his Ph.D. in Electrical Engineering from Tianjin University, Tianjin, China, in 2020, where he conducted advanced research in power conversion technologies and electric transportation systems. His doctoral work focused on the design and optimization of DC-DC converters, especially for fuel cell and electric vehicle applications. His academic foundation includes rigorous training in circuit theory, control systems, and energy systems. During his doctoral studies, he led one independent innovation project and contributed to several national-level research initiatives. His education equipped him with a strong theoretical and practical understanding of modern electrical systems, laying the groundwork for his impactful contributions as a researcher and lecturer at the Shandong University of Science and Technology.

🏢 Work Experience 

Dr. Huakun Bi currently serves as a Lecturer at the School of Electrical and Automation Engineering, Shandong University of Science and Technology, Qingdao. Since earning his Ph.D. in 2020, he has taken on leadership roles in academic and industrial research, including projects funded by the Shandong Natural Science Foundation, State Grid Corporation of China, and Huaneng Group. He has contributed to three additional school-enterprise cooperation projects. Dr. Bi also acts as a dedicated reviewer for five international journals in electrical engineering. His dual involvement in academia and applied industrial projects demonstrates a versatile and impactful career. His research work is not only academically significant but also practically relevant, bridging the gap between theoretical advancements and real-world implementation.

🏅 Awards and Honors 

Dr. Huakun Bi’s research excellence is reflected in the high citation of his publications, notably in top-tier journals such as IEEE Transactions on Industrial Electronics and IEEE Transactions on Vehicular Technology. His 2019 publication has been cited 77 times, showcasing his work’s global impact. He has received recognition for his leadership in innovation projects at Tianjin University and has earned competitive funding from the Shandong Provincial Natural Science Foundation. Dr. Bi’s sustained contribution to national and industry-funded projects highlights the practical value of his research. His selection as a peer reviewer for multiple international journals further underscores his expertise and reputation in the field of power electronics and DC microgrids. These honors position him strongly for research excellence awards.

🔬 Research Focus 

Dr. Huakun Bi’s research primarily targets high-performance DC-DC converters, energy-efficient electric vehicles, and stable DC microgrid systems. His work addresses core challenges in power electronics, including input current ripple reduction, wide voltage-gain range, and voltage stress mitigation. By introducing advanced converter topologies such as capacitor-clamped and dual-mode negative output converters, he enhances performance for fuel cell and EV applications. Dr. Bi has also contributed significantly to government- and industry-funded projects, applying theoretical innovations to practical systems. His papers are frequently cited in top journals, and his designs serve critical roles in electric transportation and energy systems. Through pioneering control methods and hardware design strategies, Dr. Bi is driving forward the next generation of clean, efficient energy solutions.

📊 Publication Top Notes:

  1. Huakun Bi, Zonglei Mou, Yu Chen
    “Common Grounded Wide Voltage-Gain Range DC–DC Converter With Zero Input Current Ripple and Reduced Voltage Stresses for Fuel Cell Vehicles”
    Journal: IEEE Transactions on Industrial Electronics
    Year: 2023
    DOI: 10.1109/TIE.2022.3172767
    Citations: 23

  1. Huakun Bi, Bo Li, Ping Wang, Zhishuang Wang, Xiaochen Ma
    “A New Coupled-Inductor-Based High-Gain Interleaved DC-DC Converter With Sustained Soft Switching”
    Journal: IEEE Transactions on Vehicular Technology
    Year: 2021
    DOI: 10.1109/TVT.2021.3083317
    Citations: Not specified

  1. Huakun Bi, Cong Jia
    “Common Grounded Wide Voltage‐Gain Range DC–DC Converter for Fuel Cell Vehicles”
    Journal: IET Power Electronics
    Year: 2019
    DOI: 10.1049/iet-pel.2018.6234
    Citations: 16

  1. Guidan Li, Zhe Yang, Bin Li, Huakun Bi
    “Power Allocation Smoothing Strategy for Hybrid Energy Storage System Based on Markov Decision Process”
    Journal: Applied Energy
    Year: 2019
    DOI: 10.1016/j.apenergy.2019.03.001
    Citations: Not specified

  1. Huakun Bi, Ping Wang, Yu Che
    “A Capacitor Clamped H-Type Boost DC–DC Converter With Wide Voltage-Gain Range for Fuel Cell Vehicles”
    Journal: IEEE Transactions on Vehicular Technology
    Year: 2019
    DOI: 10.1109/TVT.2018.2884890
    Citations: 77