Marija Cundeva-Blajer | Calibration Awards

Prof. Dr. Marija Cundeva-Blajer | Calibration Awards | Best Researcher Award 

Prof. Dr. Marija Cundeva-Blajer, Ss. Cyril and Methodius University in Skopje, Faculty of Electrical Engineering and IT, Macedonia.

Marija Cundeva-Blajer is a distinguished professor and researcher specializing in metrology, electrical engineering, and quality infrastructure. With over 25 years of academic and professional experience, she has contributed significantly to international projects, scientific research, and education in electrical measurements, instrumentation, and metrology. She leads the accredited Calibration Laboratory for Electrical Measurements and serves as the head of the PhD Council in Metrology at Ss. Cyril & Methodius University in Skopje. Her extensive international collaborations, numerous scientific publications, and active roles in professional bodies underscore her dedication to advancing metrology and quality science globally.

Professional Profile

Google Scholar

Researcher Suitability Summary for Best Researcher Award 

Marija Cundeva-Blajer is a distinguished researcher with an impressive track record in metrology, electrical engineering, and power systems. Her contributions to academia, industry, and international standards are of great value. She demonstrates exceptional leadership in shaping the future of metrology through her roles in teaching, research, and international collaborations. Her strong academic background, global research experience, and leadership positions make her an outstanding candidate for the Best Researcher Award.

🎓 Education

  1. Primary & Secondary Education
    • 1988: Completed primary school in Skopje, North Macedonia.
    • 1991: Graduated from secondary school in Skopje.
  2. Higher Education
    • 1996: Earned a University Degree in Electrical Engineering (Industrial Power Engineering & Automation) from Ss. Cyril & Methodius University, Skopje.
    • 2000: Attained a Master of Science (MSc) degree in Electrical Measurements and Materials from the same institution.
    • 2004: Awarded a Doctor of Technical Sciences (DSc), focusing on advanced metrology and electrical engineering.

💼 Experience

Academic Career

  • Full Professor at Ss. Cyril & Methodius University, with 27 years of tenure.
  • Head of the Calibration Laboratory for Electrical Measurements and the PhD Council in Metrology.

International Contributions

  • Extensive experience leading EU-funded projects such as TEMPUS and IPA programs.
  • Over 25 years of expertise with ISO/IEC standards for conformity assessments and quality management systems.

Professional Engagement

  • Expert evaluator for EURAMET, EC EACEA, and COST.
  • Guest Editor and Reviewer for prominent journals like Elsevier Measurement and Acta IMEKO.

🔬 Research Interests

Marija’s research focuses on:

  • Metrology and Calibration: Advancing measurement accuracy for electrical and non-electrical quantities.
  • Power Engineering: Development of innovative methods in industrial applications.
  • Quality Infrastructure: Implementing ISO/IEC standards in testing and calibration labs.
  • Mathematical Methods in Engineering: Utilizing FEM and genetic algorithms in metrology.

🏆 Awards

  • DAAD Scholarships: Multiple awards for research stays in Germany.
  • Recognized as a reviewer and evaluator for international scientific and educational projects.
  • Appointed to the Committee for the “Successful Young” award by the President of North Macedonia.

📚 Publications Top Notes

Calibration for industry 4.0 metrology: touchless calibration

CITED: 26

Measurement of the influence of household power electronics on the power quality

CITED: 20

Genetic algorithm coupled with FEM‐3D for metrological optimal design of combined current‐voltage instrument transformer

CITED: 16

Nonlinear Electromagnetic Transient Analysis of Special Transformers

CITED: 14

Improvement of the FEIT laboratory of electrical measurements best CMC through internationally traceable calibrations and inter-laboratory comparisons

CITED: 12

Relationship of Epstein to SST results for grain-oriented steel

CITED: 12

Defining an uncertainty budget in electrical power and energy reference standards calibration

CITED: 10

 

Prof. Dezhi Zheng | Sensitive Mechanism Awards | Best Researcher Award

Prof. Dezhi Zheng | Sensitive Mechanism Awards | Best Researcher Award

Prof. Dezhi Zheng, Beijing Institute of technology, China

Professor Dezhi Zheng is a prominent researcher and doctoral supervisor at the Advanced Research Institute of Multidisciplinary Sciences at Beijing Institute of Technology. With a robust academic background, he earned both his Ph.D. and B.S. degrees in Precision Instruments and Machinery and Mechanical Engineering and Automation from Beihang University. Since 2020, he has been a professor at Beijing Institute of Technology, and prior to this role, he served as a visiting scholar in the Mechanical Engineering Department at the University of Victoria and held various academic positions at Beihang University. Professor Zheng’s research interests focus on collaborative awareness technology, airborne information detection, extreme signal measurement technology, and sensor sensitivity mechanisms. His groundbreaking work in accurate perception technology has led to significant advancements in resonant sensors, ultra-low frequency vibration sensors, and wearable sensing devices for human bioelectrical signals, notably improving measurement accuracy and practical applications in fields like aviation and smart technology. With over 30 national key scientific research projects and more than 70 academic publications to his name, along with over 30 authorized invention patents, Professor Zheng is recognized as a leader in the field of sensors and sensing technology.

Professional Profile:

ORCID

Summary of Suitability for the Best Researcher Award: Dezhi Zheng

Dezhi Zheng is an accomplished researcher and educator with a distinguished record in the fields of sensing technology and precision instrumentation, making him an excellent candidate for the Best Researcher Award. His extensive academic background and impactful contributions in both research and technology application underscore his qualifications.

Education 🎓

  • Ph.D. in Precision Instruments and Machinery
    Beihang University, 2000-2006
  • B.S. in Mechanical Engineering and Automation
    Beihang University, 1996-2000

Work Experience 🏢

  • Professor
    Advanced Research Institute of Multidisciplinary Sciences, Beijing Institute of Technology (2020 – Present)
  • Visiting Scholar
    Mechanical Engineering, University of Victoria (2014 – 2015)
  • Researcher
    Research Institute for Frontier Science, Beihang University (2006 – 2020)
  • Associate Professor
    School of Instrumentation and Optoelectronic Engineering, Beihang University (2006 – 2020)
  • Lecturer
    School of Instrumentation and Optoelectronic Engineering, Beihang University (2006 – 2006)

Achievements 🏆

  • Conducted research on resonant sensors, improving measurement accuracy of aircraft flight height by nearly an order of magnitude. ✈️
  • Developed ultra-low frequency vibration sensors and calibration technology, achieving accurate calibration of 0.01Hz sensors. 📏
  • Researched wearable sensing devices and intelligent sensing technology for weak human bioelectrical signals, leading to practical applications in wearable brain-computer interfaces. 🧠
  • Participated in over 30 major national key scientific research projects. 🔬
  • Published more than 70 academic papers. 📚
  • Authorized more than 30 invention patents. 💡

Awards and Honors 🥇

  • Recognized for contributions to the development of resonant sensors and smart helmets, addressing key challenges in sensor technology. 🛠️
  • Achievements in the field of collaborative awareness technology and extreme signal measurement technology. 🌟

Publication Top Notes:

Hybrid Knowledge-Data Driven Channel Semantic Acquisition and Beamforming for Cell-Free Massive MIMO

Integrated Sensing and Communication With mmWave Massive MIMO: A Compressed Sampling Perspective

Joint Activity Detection and Channel Estimation for Massive IoT Access Based on Millimeter-Wave/Terahertz Multi-Panel Massive MIMO

Next-Generation Massive URLLC with Massive MIMO: A Unified Semi-Blind Detection Framework for Sourced and Unsourced Random Access

Robust phase unwrapping via non-local regularization