Dr. Alessandro Gandolfo | Electromagnetic Awards | Best Researcher Award

Dr. Alessandro Gandolfo | Electromagnetic Awards | Best Researcher AwardΒ 

Dr. Alessandro Gandolfo, Narda S.t.s, Italy

Dr. Alessandro Gandolfo is an accomplished Electronic Engineer with over two decades of experience in telecommunications and electromagnetic compatibility. He currently serves as the Head of the Research and Development Department at P.M.M. Narda S.r.l., a company within the L3T Group specializing in industrial electromagnetic safety. In his role, he leads strategic planning and industrial project development, manages multidisciplinary teams, and oversees the design of advanced radiofrequency equipment and electromagnetic field measurement systems. As Project Manager and Scientific Director, he has led several high-profile national and international research projects in collaboration with organizations such as CNR, ENEA, ESA, Alenia, and leading European universities. Dr. Gandolfo holds patents in magnetic field sensors and is a recognized expert in EMC and Safety regulations, actively contributing to CEI committees. His background also includes extensive work in the construction industry, with expertise in architectural and seismic design. A published author in the field of electromagnetic compatibility, he complements his technical leadership with strong communication and negotiation skills, supporting global client engagement efforts.

Professional Profile:

ORCID

Summary of Suitability for Best Researcher Award: Dr. Alessandro Gandolfo

Dr. Alessandro Gandolfo is a highly accomplished and versatile researcher and engineer with over two decades of significant contributions in electronic engineering, telecommunications, and electromagnetic compatibility. His work spans scientific leadership, technological innovation, and impactful international collaborations, positioning him as a highly deserving candidate for the Best Researcher Award.

πŸŽ“ Education

  • 🏫 Surveyor’s Diploma – Technical Institute for Surveyors L.B. Alberti, Savona, Italy (1987)

  • πŸŽ“ Degree in Electronic Engineering (Telecommunications) – University of Genoa, Italy (1994) – Score: 106/110

  • πŸ› οΈ Engineering License – Passed professional practice exam (1994)

  • 🧱 Civil Engineering Studies – Passed core exams (University of Genoa and Pavia, 2005–2010)

  • πŸ‡¬πŸ‡§ First Certificate in English (B2) – British Council (2000)

πŸ’Ό Work Experience

  • πŸ”¬ Head of R&D and Project Manager – P.M.M. Narda S.r.l. (1995–Present)

    • Leads Research & Projecting Dept.

    • Oversees design of RF equipment: sensors, receivers, antennas, amplifiers

    • Manages strategic projects and international collaborations (e.g., ESA, CNR, Philips, Siemens)

    • Patent holder in magnetic field sensors

    • Expert in EMC and Safety regulations

  • πŸ—οΈ Freelancer in Construction (1996–Present)

    • Designs reinforced concrete/steel residential buildings

    • Handles seismic and structural analysis

  • πŸ“‘ Planning Officer – Telecom Italia, Turin (1995)

    • Network infrastructure planning

  • πŸ§ͺ Designer – Microtel S.r.l., Milan (1995)

    • Designed test systems for electronic circuits

πŸ† Achievements & Roles

  • 🧠 Scientific Director – Led international research projects (MIUR-funded, EU collaborations)

  • ✍️ Published Author – Articles on EMC and electromagnetic field measurement methods (1994–present)

  • πŸ’‘ Patent Holder – Innovations in magnetic field sensors

  • πŸ§ͺ Lab Experience – Optical lab at Department of Biophysical and Electronic Engineering (1993–94)

  • πŸ§‘β€πŸ« Committee Member – CEI Committees on EMC & EMF exposure

  • 🌍 Key Account Support – Supported international client acquisition for sales growth

  • πŸ’¬ Speaker & Participant – Conferences and symposia on RF, EMC, and environmental topics

  • πŸ“‹ Project Certifications –

    • Safety coordinator (Legislative Decree 494/96)

    • Energy Certifier (Liguria Region, 2008)

    • Seismic building regulations training (2004–2005)

πŸ… Honors & Recognitions

  • πŸ›οΈ Registered Engineer – Order of Engineers, Savona (1996)

  • πŸŽ–οΈ Recognized as Scientific Director of high-impact projects with top-tier institutions (ESA, ENEA, CNR, etc.)

  • 🌟 Trusted Project Lead for MIUR-funded and EU-level research initiatives

PublicationΒ Top Notes:

Performance Evaluation and Calibration of Electromagnetic Field (EMF) Area Monitors Using a Multi-Wire Transverse Electromagnetic (MWTEM) Transmission Line

 

Prof. Xianxian Wang | Barkhausen Noise | Best Researcher Award

Prof. Xianxian Wang | Barkhausen Noise | Best Researcher Award

Prof. Xianxian Wang, Beijing Polytechnic University, Mechanical and Electrical Engineering Institute, China

Dr. Xianxian Wang is a lecturer at Beijing University of Technology, specializing in intelligent sensor detection technology and structural health monitoring instrumentation. His research focuses on advancing non-destructive testing methods, particularly through micro-magnetic techniques and intelligent modeling. He has published over 10 research papers in journals such as Journal of Nondestructive Testing and Measurement Science and Technology, and contributed to the drafting of three group standards. Dr. Wang holds a Ph.D. and Master’s degree in Instrument Engineering from Beijing University of Technology, and a Bachelor’s degree in Electronic Information Engineering from Shandong University of Technology. His notable research achievements include the development of high-resolution Barkhausen noise microimaging techniques and neural network-based models for quantifying mechanical properties of ferromagnetic materials. These innovations have been applied in manufacturing settings, enhancing product quality and reliability. Dr. Wang has also received several honors, including the Third Prize of the Shandong Province Machinery Industry Science and Technology Progress Award and top distinctions in national equipment manufacturing industry competitions.

Professional Profile:

ORCID

Summary of Suitability:

Dr. Wang Xianxian, a lecturer at Beijing University of Technology, stands out as a dynamic and promising researcher in the fields of intelligent sensor testing and structural health monitoring technologies. His innovative contributions to non-destructive testing and intelligent instrumentation, along with practical industrial applications, make him a highly suitable candidate for the Best Researcher Award.

πŸŽ“ Education Background

  • 2019.09 – 2024.01
    πŸ“ Ph.D., Beijing University of Technology
    πŸ§ͺ Focus: Intelligent Sensor Testing & Structural Health Monitoring

  • 2016.09 – 2019.06
    πŸ“ M.Sc., Instrument Engineering, Beijing University of Technology

  • 2010.09 – 2014.07
    πŸ“ B.Eng., Electronic Information Engineering, Shandong University of Technology

πŸ’Ό Work Experience

  • Lecturer, Beijing University of Technology
    πŸ“Œ Teaches courses such as:

    • Sensors and Visual Inspection

    • Intelligent Robot Design and Fabrication

    • Small Electronic Product Design and Manufacturing

🧠 Research Achievements

  • 🧲 Developed Barkhausen noise microimaging techniques for high-resolution residual stress imaging in ferromagnetic materials.

  • πŸ› οΈ Created micromagnetic non-destructive testing instruments to assess mechanical properties (hardness, strength, elongation) using neural networks.

  • πŸ€– Proposed an intelligent modeling strategy based on β€œclassification then regression” and adaptive transfer learning to improve robustness in non-uniform data scenarios.

πŸ† Honors & Awards

  • πŸ₯‰Third Prize, Shandong Province Machinery Industry Science and Technology Progress Award

  • πŸ₯‡ First Prize, Second National Equipment Manufacturing Industry Skills Competition

  • πŸ…Excellent Coach, Second National Equipment Manufacturing Industry Skills Competition

PublicationΒ Top Notes:

Micromagnetic and Quantitative Prediction of Yield and Tensile Strength of Carbon Steels Using Transfer Learning Method

Quantitative Prediction of Surface Hardness in Cr12MoV Steel and S136 Steel with Two Magnetic Barkhausen Noise Feature Extraction Methods

Micromagnetic and quantitative prediction of yield strength and tensile strength in DP590 steels based on ReliefF + Clustering feature selection method

Micromagnetic and Robust Evaluation of Surface Hardness in Cr12MoV Steel Considering Repeatability of the Instrument

Surface Decarburization Depth Detection in Rods of 60Si2Mn Steel with Magnetic Barkhausen Noise Technique

Micromagnetic and Quantitative Prediction of Surface Hardness in Carbon Steels Based on a Joint Classification-Regression Method

FilterNet: A deep convolutional neural network for measuring plastic deformation from raw Barkhausen noise waveform

Mr. Yogesh Solunke | Electromagnetics Awards | Best Researcher Award

Mr. Yogesh Solunke | Electromagnetics Awards | Best Researcher Award

Mr. Yogesh Solunke, Visvesvaraya National Institute of Technology, India

Yogesh Shriram Solunke is an accomplished Electronics and Communication Engineer specializing in RF and microwave design, with expertise in Frequency Selective Surface (FSS) design. He is currently pursuing his Ph.D. at Visvesvaraya National Institute of Technology (VNIT), Nagpur, focusing on stealth and defense applications in the C and X bands. He holds an M.Tech. in Communication System Engineering from IIITD&M, Kancheepuram, and a Bachelor’s degree in Electronics and Communication Engineering from MIT Aurangabad. His research contributions include multiple SCI-indexed publications on novel FSS structures for radar cross-section reduction and multi-band filtering. With professional experience spanning academia and industry, he has worked as an EMAG Solution Expert at VIAS3D (Pune), a Junior Research Fellow at NIT Goa, and an RF Design Engineer at MMRFIC Technology, where he contributed to high-frequency antenna design. He has also served as a CST Application Engineer and R&D Engineer, collaborating with organizations like ISRO, BEL, and the Indian Navy. His research interests include radio frequency and microwave engineering, electromagnetics, and antenna design.

Professional Profile:

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Suitability for Best Researcher Award – Yogesh Shriram Solunke

Based on the provided information, Yogesh Shriram Solunke demonstrates a strong research background in RF and microwave design, frequency-selective surfaces (FSS), and electromagnetics, making him a potential candidate for the Best Researcher Award. Below is a structured evaluation of his suitability:

πŸ“š Education

  • πŸŽ“ Ph.D. (Pursuing) – RF and Microwave Design, Frequency Selective Surface Design, Visvesvaraya National Institute of Technology (VNIT), Nagpur (Feb 2021 – Present)
  • πŸŽ“ Master of Design (Electronics and Communication System) – Indian Institute of Information Technology Design & Manufacturing (IIITD&M), Kancheepuram
    • πŸ† CGPA: 7.88
    • πŸ›  Project: Design of Microwave Multiband and Wideband Filters (Guide: Dr. S.S. Karthikeyan)
  • πŸŽ“ Bachelor of Engineering (ECE) – MIT Aurangabad (2013)
    • πŸ“Š Percentage: 67%
  • πŸŽ“ Class 10 – DPVM School (2007)
    • πŸ“Š Percentage: 69.7%

πŸ’Ό Work Experience

  • VIAS3D, Pune – EMAG Solution Expert (May 2022 – Present)
    • πŸ† Completed 6+ certifications from Dassault SystΓ¨mes in High-Tech & Aerospace
  • Visvesvaraya National Institute Of Technology (VNIT), Nagpur – Ph.D. Researcher (Feb 2021 – Oct 2024)
    • πŸ“‘ RF Microstrip Multilayer Absorber Research
  • National Institute of Technology Goa (NIT Goa) – Junior Research Fellow (Mar 2020 – Feb 2021)
    • πŸ”¬ SERB ECRA-sponsored project on Compact and Wideband Dielectric Resonator Antennas
  • MMRFIC Technology, Hyderabad – RF Design Engineer (Feb 2019 – Feb 2020)
    • πŸ“‘ Designed antennas at 78 GHz & 94 GHz for fog systems
    • πŸ“‘ Developed a series feed array antenna at 24 GHz
  • Jyoti Electronics Pvt. Ltd., Ahmedabad – CST Application Engineer (Jan 2018 – Feb 2019)
    • πŸš€ Worked on CST projects for SAC ISRO Ahmedabad and IIT/NITs
  • NAVSTAR Integrated Systems Pvt. Ltd., Hyderabad – R&D Engineer & Testing Engineer (Jun 2017 – Dec 2018)
    • βš™οΈ Designed & measured UHF, VHF, and S-band filters for defense projects
    • πŸ† Clients: Indian Navy Mumbai, BEL Hyderabad, BEL Bangalore
  • Vignan Engineering College, Guntur – Assistant Professor (Jun 2016 – Jun 2017)

πŸ† AchievementsΒ 

  • πŸ“œ Publications in SCI-Indexed Journals
    • πŸ“‘ Ultra-thin, low-RCS, dual-bandpass fractal-FSS for C & X bands applications – AEU – International Journal of Electronics and Communications, 2024
    • πŸ“‘ Frequency Selective Surface with quad-band absorption/transmission and angular stability – Optics Communications, 2024
    • πŸ“‘ Low-RCS dual-bandstop golden ratio-based fractal-FSS for defense applications – International Journal of Communication Systems (IJCS), 2024

πŸ”¬ Research Interests

  • πŸ“‘ Radio Frequency & Microwave Engineering
  • πŸ›° Electromagnetics
  • πŸ— Frequency-Selective Surfaces & Antennas

PublicationΒ Top Notes:

Frequency selective surface with quad-band absorption/transmission and angular stability for TE and TM polarizations

An ultra-thin, low-RCS, dual-bandpass novel fractal-FSS for planar/conformal C&X bands applications

A low-RCS dual-bandstop golden ratio-based fractal-FSS for defense applications

A Compact Transparent FSS for Tri-Band Applications with Polarization Insensitive and RCS Reduction

Broadband metamaterial absorber for stealth applications at K-band

Vilius Palenskis | Electron Transport in Solids | Best Researcher Award

Prof.Vilius Palenskis | Electron Transport in Solids | Best Researcher Award

Affiliated Professor at Physics Faculty of Vilnius University,Lithuania

Vilius Palenskis is a distinguished physicist and professor at the Faculty of Physics, Vilnius University. Born on August 17, 1941, in Winge village, Lithuania, he has made significant contributions to the fields of solid-state physics and radiophysics. With a career spanning over five decades, Palenskis has published approximately 300 scientific papers and authored several multilingual dictionaries. He founded the Noise Research Laboratory, fostering innovation in noise diagnostics of semiconductors and magnetic materials. His research has earned him recognition both nationally and internationally, reflecting his commitment to advancing scientific knowledge and education.

Profile:

ORCID Profile

Strengths for the Award:

  1. Extensive Academic Background: Professor Palenskis has a rich educational background, culminating in a habilitation in 2004, demonstrating a high level of expertise in physics.
  2. Significant Contributions: He has published around 300 scientific works, including influential papers on electron transport phenomena and noise diagnostics, showcasing his deep engagement with fundamental physics.
  3. Innovative Research: His monograph, A New View to Free Electron Theory, and recent articles on electron transport characteristics highlight his pioneering approach in addressing complex problems in solid-state physics.
  4. Leadership in Research: Founder of the Noise Research Laboratory, he led this initiative for nearly four decades, emphasizing his commitment to advancing research in this field.
  5. Educational Impact: As a dedicated lecturer, he has taught a range of courses, contributing to the development of the next generation of physicists and fostering a strong academic environment.
  6. Multilingual Contributions: His work on dictionaries of physics terms indicates a commitment to improving communication and understanding in the scientific community.

Areas for Improvement:

  1. Collaboration Expansion: While he has co-authored several works, further collaboration with researchers from diverse fields could enhance interdisciplinary research.
  2. Increased Public Engagement: Greater involvement in outreach and public education could help bridge the gap between complex scientific concepts and public understanding.
  3. More Recent Publications: Focusing on timely, cutting-edge topics in physics could ensure his research remains at the forefront of the discipline.

Education:

Vilius Palenskis completed his undergraduate studies at the Faculty of Physics, Vilnius University (VU), graduating in 1965. He continued his academic journey at VU, pursuing a doctorate in Radiophysics, where he focused on electrical fluctuations and electron transport phenomena in island chromium layers. His dissertation, defended in 1977, laid the groundwork for his future research endeavors. In 2004, Palenskis further distinguished himself by defending his habilitation work on the noise diagnostics of semiconductors, superconductors, and magnetic materials, showcasing his expertise and innovative approach in these areas. This educational background has not only equipped him with deep theoretical knowledge but has also enabled him to mentor numerous students, contributing significantly to the academic community.

Experience:

Throughout his illustrious career, Vilius Palenskis has held various academic positions at Vilnius University. After completing his doctorate, he became an associate professor and later a full professor, contributing to the university’s research and teaching missions. He served as a chief researcher until 2015 and is currently an Affiliate Professor, where he continues to influence the field of physics. Palenskis has taught a wide range of courses, including Theoretical Radio Engineering, Statistical Radiophysics, and Mathematical Statistics, shaping the next generation of physicists. His establishment of the Noise Research Laboratory in 1973 demonstrates his leadership and commitment to innovative research. His extensive publication record, including journal articles and monographs, reflects his active engagement with both theoretical and practical aspects of physics.

Research Focus:

Vilius Palenskis’s research primarily focuses on electron transport phenomena in solid materials, particularly in semiconductors and metals. His groundbreaking work has explored electrical fluctuations and the characteristics of randomly moving electrons, contributing to a deeper understanding of noise diagnostics and fluctuation phenomena in electronic systems. Notably, he has developed models explaining low-frequency noise in homogeneous materials, further establishing his reputation in the field. His recent publications highlight his investigations into the electrical resistivity laws of metals at low temperatures and the peculiarities of electron transport in donor-doped silicon crystals. By bridging theoretical insights with practical applications, Palenskis aims to advance the knowledge of material properties and improve the performance of electronic devices.

Publications Top Notes:

  • New Insight into Electric Force in Metal and the Quadratic Electrical Resistivity Law of Metals at Low Temperatures πŸ“„
  • Study of the Free Randomly Moving Electron Transport Peculiarities in Metals πŸ“„
  • Summary of the Basic Free Electron Transport Characteristics in Donor Doped Silicon Crystals πŸ“„

Conclusion:

Vilius Palenskis is highly deserving of the Best Researcher Award due to his extensive contributions to the field of physics, particularly in electron transport and noise diagnostics. His significant academic achievements, innovative research, and commitment to education demonstrate his profound impact on both the scientific community and future generations of physicists. Addressing areas for improvement could further enhance his already impressive profile, making him an even more influential figure in the field.