Norhidayah Mohamad | Engineering | Innovative Research Award | 4631

 

Innovative Research Award

Norhidayah Mohamad  |  Institution: MMU, Malaysia

Norhidayah Mohamad
Affiliation MMU
Country Malaysia
Google Scholar ID KidB914AAAAJ
Documents 28
Citations 60
h-index 4
Subject Area Engineering
Event World Top Scientist Awards
ORCID 0000-0003-1438-4925

Norhidayah Mohamad is a researcher affiliated with MMU in Malaysia whose academic profile is associated with the field of Engineering. This article presents a structured scholarly overview prepared in relation to the Innovative Research Award at the World Top Scientist Awards. The assessment framework considers the supplied research indicators, publication activity, scholarly contributions, citation visibility, and relevance of the research profile to innovation-oriented academic recognition.[1]

Abstract

This academic recognition article provides a neutral overview of Norhidayah Mohamad’s supplied research profile in the context of the Innovative Research Award. The assessment is situated within Engineering and considers scholarly output, citation-based indicators, research dissemination, professional identification, and the broader importance of innovation within engineering scholarship. Rather than treating individual bibliometric values as independent evidence of research quality, the article adopts a contextual approach in which publication activity and measurable scholarly attention are considered together with the nature and relevance of research contributions.[3]

Keywords

Innovative Research; Research Impact; Scholarly Publications; Academic Recognition; Citation Analysis; Bibliometrics; Research Profile; ORCID; Research Innovation; MMU; Malaysia; World Top Scientist Awards.

Introduction

Innovation-oriented engineering research contributes to academic and technological development by examining established problems, evaluating alternative approaches, and communicating findings that can inform subsequent research or practical applications. Within this setting, academic recognition is appropriately based on several forms of evidence rather than on a single quantitative indicator. Publication records document scholarly participation, citation data can indicate subsequent academic attention, and persistent identifiers such as ORCID help distinguish researchers and connect research outputs across scholarly information systems.[2]

Research Profile

Norhidayah Mohamad’s supplied research profile reports 28 scholarly documents, 60 citations, and an h-index of 4, with Engineering identified as the principal subject area. Collectively, these figures describe the scale and recorded visibility of the research portfolio at the time the information was supplied. The h-index combines publication and citation information into a single bibliometric measure; however, responsible interpretation requires awareness that citation accumulation varies according to discipline, database coverage, publication age, document type, and patterns of collaboration.[3]

Research Contributions

Norhidayah Mohamad’s research focuses on engineering applications in manufacturing, process modelling, and optimization. Her published work demonstrates the application of computational methods and machine learning to solve industrial engineering problems. These studies contribute to improving manufacturing efficiency and engineering performance through analytical approaches.[2]

Publications

The available publication record shows active research in manufacturing engineering, machine learning, optimization, and advanced materials. Most recent publications appeared in internationally recognized peer-reviewed journals, reflecting continuous scholarly activity and collaboration with researchers from multiple institutions.[2]

Research Impact

According to the supplied academic profile, Norhidayah Mohamad has published 28 scholarly documents, received approximately 60 citations, and has an h-index of 4. These indicators demonstrate sustained research productivity and continued contribution to engineering scholarship through peer-reviewed publications and collaborative research activities.[1]

Award Suitability

Norhidayah Mohamad’s research profile demonstrates continuous involvement in engineering and manufacturing research through journal publications and collaborative academic work. Her studies include machine learning, manufacturing optimization, thin-film technology, and sustainable engineering applications. These contributions indicate active participation in multidisciplinary engineering research. [2]

Conclusion

Norhidayah Mohamad has established an academic profile centred on engineering research, manufacturing systems, modelling, and industrial applications. Her publications and collaborative research demonstrate continuous scholarly engagement while supporting engineering innovation through analytical and computational approaches. The profile reflects a combination of academic experience, research productivity, and practical engineering knowledge. [1]

External Links

References

  1. Aziz, N. A. A., Aziz, N. H. A., Ghazali, A. K., Mohamad, N., Tobing, S., Auzani, A. S., Hutagaol, D., & Siantar, G. A. L. (2025). Prediction of lift and drag for hydro turbine design using machine learning. Algorithms.

    https://doi.org/10.3390/a19010008
  2. Arifin, N. M., Noor, E. E. M., Mohamad, F., Mohamad, N., & Muzni, N. H. M. (2024). Enhancing the properties of nanostructure TiO₂ thin film via calcination temperature for solar cell application. Energies.

    https://doi.org/10.3390/en17143415
  3. Mohamad, N., Aziz, N. A. A., Ghazali, A. K., & Salleh, M. R. (2024). Improving ammonia emission model of urea fertilizer fluidized bed granulation system using particle swarm optimization for sustainable fertilizer manufacturing practice. Processes.

    https://doi.org/10.3390/pr12051025
  4. Arifin, N. M., Noor, E. E. M., Mohamad, F., & Mohamad, N. (2024). The impact of spinning speed on n-TiO₂/ZnO bilayer thin film fabricated through sol–gel spin-coating method. Coatings.

    https://doi.org/10.3390/coatings14010073

Niansong Mei | microelectronics | Best Researcher Award

Assoc Prof. Niansong Mei | microelectronics | Best Researcher Award

Prof, Shanghai Advanced Research Institute, Chinese Academy of Sciences, China

Niansong Mei is an accomplished Associate Professor at the Shanghai Advanced Research Institute, Chinese Academy of Sciences. With a strong foundation in microelectronics, he has significantly contributed to the fields of high-performance integrated circuits and hardware security. 🌟

Publication Profile

Google Scholar

 

Education

Niansong received his B.S. degree in Physical Science and Technology from Soochow University, China, in 2001. He furthered his education with an M.S. degree in Microelectronics from Southeast University, China, in 2004, and completed his Ph.D. in Microelectronics at Fudan University, China, in 2011. 🎓

Experience

After earning his Ph.D., Niansong joined the Shanghai Advanced Research Institute, Chinese Academy of Sciences, as an Associate Professor. Prior to this, he served as a group leader at Semiconductor Manufacturing International Corporation (SMIC) from 2004 to 2008, where he gained valuable industry experience. 🏢

Research Focus

His research interests encompass high-performance integrated circuits and systems, hardware security, and blockchain technology. Niansong aims to advance the state of the art in these critical areas through innovative research. 🔍

Awards and Honours

Niansong has received various accolades for his contributions to the field, reflecting his commitment to excellence in research and education. 🏆

Publication Top Notes

Vaq-based tri-level switching scheme for SAR ADC

A 920-MHz dual-mode receiver with energy harvesting for UHF RFID tag and IoT

A review of converter circuits for ambient micro energy harvesting

A 16.4 nW, sub-1 V, resistor-less voltage reference with BJT voltage divider

CMOS high linearity PA driver with an on-chip transformer for W-CDMA application

 

Romoke Grace Akindele | Electronics Science | Best Researcher Award

Mrs. Romoke Grace Akindele | Electronics Science | Best Researcher Award

Romoke Grace Akindele , Hebei University of Technolgy ,China

Romoke Grace Akindele is a dedicated researcher and educator in the field of electronic science, currently pursuing her Ph.D. at Hebei University of Technology in Tianjin, China. Born in Nigeria, she has cultivated a strong academic background with a focus on electronic circuit design and signal processing. Romoke is committed to fostering scientific inquiry and mentoring young students, believing that education should inspire innovation. Her diverse experiences, from teaching physics to participating in international research projects, reflect her passion for contributing to advancements in technology. With multiple published works, Romoke aims to bridge the gap between theory and practical applications in electronics, ultimately seeking to improve lives through technological innovation.

Profile

Education:

Romoke holds a Bachelor’s degree in Pure and Applied Physics from Ladoke Akintola University of Technology (LAUTECH), Nigeria, and a Master’s degree in Communication Physics from the Federal University of Technology Akure (FUTA), Nigeria. Currently enrolled in a Ph.D. program, her academic journey is characterized by a robust focus on electronic principles and their applications in modern technology. Throughout her studies, Romoke has participated in various workshops and training programs, enhancing her skills in machine learning and electronic circuit design. This commitment to continuous learning is evident as she integrates the latest advancements in her research.

Experience:

Romoke has accumulated a diverse range of experience in both academia and industry. Her tenure as a Physics teacher at multiple institutions in Nigeria equipped her with effective teaching methodologies and strong communication skills. Additionally, she served as an Administrative Assistant, where she honed her organizational and management abilities. During her industrial training at the International Institute of Tropical Agriculture (IITA), she gained practical skills in troubleshooting and installation of electronic systems. These experiences have enriched her understanding of electronic science, preparing her for her current research endeavors and collaborative projects.

Awards and Honors:

Romoke has received several accolades for her academic and research excellence. Her participation in international workshops has earned her recognition as an outstanding participant, particularly in the “Frontier Technologies and Applications of Target Recognition” summer school program. Her contributions to collaborative research projects have also garnered funding and support from esteemed institutions. Romoke’s awards reflect her dedication to advancing electronic science and her potential to make significant contributions to the field.

Awards and Honors:

Romoke has received several accolades for her academic and research excellence. Her participation in international workshops has earned her recognition as an outstanding participant, particularly in the “Frontier Technologies and Applications of Target Recognition” summer school program. Her contributions to collaborative research projects have also garnered funding and support from esteemed institutions. Romoke’s awards reflect her dedication to advancing electronic science and her potential to make significant contributions to the field.

Publication Top Notes:

  1. OBhunter: An ensemble spectral-angular based transformer network for occlusion detection
    Expert Systems with Applications
    2024-08 | DOI: 10.1016/j.eswa.2024.123324
  2. Denoising of Nifti (MRI) Images with a Regularized Neighborhood Pixel Similarity Wavelet Algorithm
    Sensors
    2023-09-10 | DOI: 10.3390/s23187780
  3. ETAM: Ensemble transformer with attention modules for detection of small objects
    Expert Systems with Applications
    2023-08 | DOI: 10.1016/j.eswa.2023.119997
  4. Pattern Synthesis of Uniform and Sparse Linear Antenna Array Using Mayfly Algorithm
    IEEE Access
    2021 | DOI: 10.1109/access.2021.3083487
  5. Performance of site diversity fade mitigation over Earth‐to‐space propagation link using rain cell measurements in a tropical Nigeria
    IET Microwaves, Antennas & Propagation
    2017-12 | DOI: 10.1049/iet-map.2017.0432

    Conclusion:

    Romoke Grace Akindele is an exemplary candidate for the Best Researcher Award. Her strong academic background, impressive research contributions, and dedication to continuous learning make her a standout in her field. By addressing her areas for improvement, she can further enhance her impact and contributions to electronic science and technology. Her commitment to innovation and collaboration positions her well for future success in research.