Ehab Tawfik Khaled Saddam | Engineering | Innovative Research Award

Innovative Research Award

Ehab Tawfik Khaled Saddam — Beijing Forestry University

Ehab Tawfik Khaled Saddam
Affiliation Beijing Forestry University
Country China
Subject Area Engineering
Event World Science Awards
ORCID 0009-0006-1711-820X

Ehab Tawfik Khaled Saddam is a researcher affiliated with Beijing Forestry University, China, whose stated subject area is Engineering. This academic recognition profile presents the available identifying information associated with the Innovative Research Award and the World Science Awards event. The profile is based only on the information supplied for this article; bibliometric indicators not provided in the source data are therefore identified as unavailable.

Abstract

The Innovative Research Award profile recognizes the research identity of Ehab Tawfik Khaled Saddam, affiliated with Beijing Forestry University in China and working within the broad field of Engineering. The available profile information establishes an ORCID-linked researcher identity and associates the researcher with the World Science Awards event. ORCID provides a persistent identifier designed to distinguish researchers and connect their scholarly contributions with a unique researcher record.[1] This article provides a structured academic overview while avoiding unsupported claims about publication volume, citation performance, or research outcomes.

Keywords

Innovative Research Award; Ehab Tawfik Khaled Saddam; Beijing Forestry University; Engineering; China; research innovation; academic recognition; World Science Awards; ORCID; scholarly research.

Introduction

Academic recognition profiles commonly combine researcher identification, institutional affiliation, subject specialization, scholarly outputs, and evidence of research contribution. Persistent identifiers such as ORCID are used to distinguish researchers with similar names and to connect individuals with their scholarly activities across systems.[1] Within this context, the present profile identifies Ehab Tawfik Khaled Saddam as being affiliated with Beijing Forestry University in China and associates the research area with Engineering.

The profile is presented in a reference-oriented format so that supplied facts can be distinguished from information requiring independent bibliographic verification. Because no Scopus identifier, publication count, citation count, or h-index was supplied, these indicators are not inferred or estimated.

Research Profile

Ehab Tawfik Khaled Saddam is identified in the supplied profile as a researcher at Beijing Forestry University, China. The declared subject area is Engineering, a broad interdisciplinary field encompassing the application of scientific and mathematical principles to the development, analysis, optimization, and implementation of technologies and systems.

The researcher’s ORCID identifier is 0009-0006-1711-820X. ORCID describes its identifier as a persistent identifier that helps researchers distinguish themselves and maintain connections between their identity and research activities.[1] The profile does not provide sufficient information to specify a narrower engineering specialization or a detailed research methodology.

Research Contributions

The supplied information does not include a verified list of research projects, inventions, datasets, patents, publications, technological implementations, or other specific scholarly outputs. Consequently, no individual contribution is attributed to the researcher without supporting bibliographic evidence.

For an engineering recognition profile, relevant evidence may include peer-reviewed research, interdisciplinary collaboration, methodological development, technology-oriented applications, reproducible research outputs, and documented contributions to engineering practice. Such evidence would need to be assessed from authoritative academic records, publications, institutional information, or other verifiable sources.

Publications

No publication list was included in the supplied profile data. Accordingly, specific article titles, journals, publication dates, authorship positions, citation counts, and digital object identifiers cannot be reliably listed in this section.

A complete bibliographic assessment would normally require a verified publication record, such as an institutional profile, ORCID-linked works, Scopus author record, Web of Science record, or publisher-indexed publications. ORCID supports connections between researcher records and scholarly works where such information has been added or linked.[1]

Research Impact

No quantitative bibliometric indicators were supplied for this profile. Documents, citations, and h-index are therefore recorded as unavailable rather than being estimated. Bibliometric indicators can provide information about scholarly visibility, but their interpretation depends on database coverage, disciplinary differences, publication age, collaboration patterns, and the specific metric being used.

The available evidence establishes the researcher’s institutional affiliation, broad engineering subject area, country, ORCID identifier, and association with the stated World Science Awards event. Further assessment of research impact would require independently verifiable scholarly-output and citation data.

Award Suitability

The supplied information supports consideration of Ehab Tawfik Khaled Saddam within an engineering-focused academic recognition profile because the researcher is identified with Beijing Forestry University and the subject area is stated as Engineering. The profile also provides a persistent ORCID identifier, which can support researcher identification and record linkage.[1]

A substantive award assessment would require the applicable award criteria and supporting evidence, including research publications, documented innovations, research projects, citations or other impact measures where relevant, institutional contributions, and evidence of originality. Since those materials were not supplied, this profile does not assign a ranking, score, or definitive assessment of award merit.

The stated recognition event is the World Science Awards. Its official website can be consulted for current information concerning award categories, eligibility requirements, submission procedures, and recognition processes.

Conclusion

Ehab Tawfik Khaled Saddam is identified as a researcher affiliated with Beijing Forestry University, China, with Engineering listed as the subject area and ORCID 0009-0006-1711-820X as the supplied persistent researcher identifier. The available information provides a concise basis for an academic recognition profile but does not include sufficient bibliometric or publication evidence for detailed quantitative analysis.

Further development of the profile would benefit from verified publication records, research-project information, citation indicators, patents or other documented innovations where applicable, and evidence of research impact. These additions would allow a more comprehensive and evidence-based description of the researcher’s scholarly contributions.

References

  1. ORCID. (n.d.). ORCID: Connecting research and researchers. ORCID.
    https://orcid.org/
  2. Beijing Forestry University. (n.d.). Beijing Forestry University official website.
    https://www.bjfu.edu.cn/
  3. World Science Awards. (n.d.). World Science Awards.
    https://worldscienceawards.com/

Asma Alfergani | Engineering | Best Researcher Award

Ms. Asma Alfergani | Engineering | Best Researcher Award

University of Benghazi | Libya

Dr. Asma Mohamed Najem Alfergani is an accomplished researcher and emerging leader in electrical and electronics engineering, with research focus areas spanning microgrid control, renewable energy systems, communication-delay modeling, optimization techniques, and intelligent control strategies. With a scholarly record that includes 88 Scopus-indexed publications, 287 citations, and an h-index of 8, she has made notable contributions to advancing theoretical and applied research in microgrid stability, distributed control systems, and smart energy technologies. Her work demonstrates strong technical rigor, experimental validation, and interdisciplinary integration spanning renewable energy engineering, power electronics, communication networks, and computational intelligence. Dr. Alfergani has received multiple recognitions including the Libyan Innovation Prize, a Best Paper Award at IREC 2021, and top academic standing during both undergraduate and postgraduate studies, demonstrating a sustained trajectory of excellence. Beyond research, she has contributed significantly to academic leadership through curriculum development, quality assurance coordination, laboratory establishment, and supervision of numerous student research projects, further strengthening engineering education and research capacity in her institution and region. Her strengths include a strong research output trajectory, impactful publications in Q1 journals, mobility across domains such as optimization, microgrid modeling, and smart control systems, and a demonstrated ability to translate complex systems theory into implementable engineering solutions. She also shows strong collaboration potential with national and international partners, evidenced by participation in IEEE-indexed conferences and cross-institution academic engagements. Areas of improvement include expanding participation in large-scale international research consortia, increasing interdisciplinary industry partnerships, and enhancing visibility through keynote roles, invited talks, and cross-continental collaborations to amplify global research influence. Looking ahead, Dr. Alfergani possesses substantial potential to become a leading scientific voice in renewable energy systems, next-generation distributed control, and resilient microgrid architectures. With continued expansion of research networks, broader project leadership, and further engagement in policy-driven energy transformation initiatives, her research is well positioned to shape sustainable energy technologies, support energy security in developing regions, and contribute meaningfully to the global transition toward intelligent, carbon-neutral power systems.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

Khalil, A., Rajab, Z., Alfergani, A., & Mohamed, O. (2017). The impact of the time delay on the load frequency control system in microgrid with plug-in-electric vehicles.

Alfergani, A., Alfaitori, K. A., Khalil, A., & Buaossa, N. (2018). Control strategies in AC microgrid: A brief review.

Alfergani, A., Khalil, A., & Rajab, Z. (2018). Networked control of AC microgrid.

Alfergani, A., & Khalil, A. (2017). Modeling and control of master-slave microgrid with communication delay.

Alfergani, A., Khalil, A., Rajab, Z., Zuheir, M., Khan, S., & Aboadla, E. H. (2017). Control of Master-Slave Microgrid Based on CAN Bus.

Ahmed Issa Alnahhal | Engineering | Research Excellence Award

Mr. Ahmed Issa Alnahhal | Engineering | Research Excellence Award

Budapest University of Technology and Economics | Hungary

Mr. Ahmed Issa Alnahhal is an Electrical Engineer and emerging scholar specializing in advanced photovoltaic technologies, hybrid renewable energy systems, and semiconductor device fabrication. With more than ten years of combined academic, research, and engineering experience, he has developed strong interdisciplinary expertise spanning cleanroom fabrication processes, semiconductor device physics, thin-film characterization, and photovoltaic system modelling. He is currently pursuing his PhD in Electrical Engineering at Budapest University of Technology and Economics, Hungary, where his research focuses on advanced Hybrid Photovoltaic–Thermoelectric Generator (PV-TEG) systems and Perovskite/Si tandem solar cells. His work includes simulation, optimization, loss analysis, and experimental fabrication of next-generation energy harvesting systems. Ahmed has authored multiple peer-reviewed journal articles and conference papers in top-tier platforms, including IEEE Transactions on Components, Packaging and Manufacturing Technology, Advanced Theory and Simulation, and Energy Conversion and Management X. His key contributions include extending the single-diode solar cell model using spectral sensitivity, analyzing spectrum-splitting photovoltaic–thermoelectric architectures, and developing mathematical models for hybrid and tandem photovoltaic systems. His publications have been presented at prestigious international conferences such as CANDO-EPE, THERMINIC, and IWTPV, reflecting international relevance and scientific rigor. His academic engagement includes teaching courses in semiconductor device physics, advanced solar cell technologies, and microelectronics. Professionally, he brings extensive experience in PCB design, electronics testing, laboratory coordination, and system-level integration. Ahmed has participated in specialized technical programs hosted by Infineon Technologies, Czech Technical University, and Warsaw University of Technology, strengthening his global research footprint and industrial alignment. Driven by sustainability and energy security challenges, his research aims to improve the efficiency and accessibility of solar energy systems, contributing to long-term environmental and industrial impact. Through collaboration, innovation, and practical engineering problem-solving, Ahmed continues advancing the frontier of high-efficiency solar energy conversion technologies.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

Alnahhal, A. I., Halal, A., & Plesz, B. (2022). Thermal-electrical model of concentrated photovoltaic-thermoelectric generator combined system for energy generation. Proceedings of the International Workshop on Thermal Investigations of Integrated Circuits and Systems.

Alnahhal, A. I., Halal, A., & Plesz, B. (2022). Temperature-dependent performance of concentrated monocrystalline silicon solar cell. Proceedings of the International Scientific Conference on Electric Power Engineering.

Halal, A., Alnahhal, A. I., & Plesz, B. (2022). Performance analysis of perovskite solar cell by considering temperature effect on physical parameters of the absorber layer. Proceedings of the International Workshop on Thermal Investigations of Integrated Circuits and Systems.

Halal, A., Alnahhal, A. I., & Plesz, B. (2022). Numerical simulation and design optimization of highly efficient lead-free perovskite/c-Si tandem solar cell. Proceedings of the International Scientific Conference on Electric Power Engineering.

Halal, A., Alnahhal, A. I., & Plesz, B. (2022). Numerical simulation-based physical parameter analysis of perovskite/c-Si tandem photovoltaic cells. Proceedings of the International Scientific Conference on Electric Power Engineering.

Kasye Shitu Mulat | Engineering | Editorial Board Member

Mr. Kasye Shitu Mulat | Engineering | Editorial Board Member

Anhui University | Ethiopia

Mr. Kasye Shitu Mulat is an accomplished Irrigation Engineer and GIS & Remote Sensing Specialist with extensive academic, research, and professional experience in water resources, climate change impacts, hydrological modeling, and sustainable agricultural development. Born on 02 October 1991 in Borena Mekane Selam, Ethiopia, he currently serves as a Lecturer and Researcher at Assosa University, where he contributes to teaching, scientific research, and community-centered development initiatives. Mr. Kasye earned his Bachelor of Science in Water Resource and Irrigation Management from Aksum University with Very Great Distinction (CGPA 3.64). He later completed his MSc in Irrigation Engineering at Haramaya University, achieving an “A” thesis grade and a CGPA of 3.79. Further expanding his scientific expertise, he obtained a second Master of Science in GIS and Remote Sensing from Wollo University. His multidisciplinary background positions him at the forefront of research linking climate dynamics, hydrological systems, and agricultural water management. He has authored more than 11 peer-reviewed publications and has four additional manuscripts under review in reputable international journals. His research outputs span topics such as climate change impacts on irrigation potential, hydrological modeling of river basins, statistical downscaling, kriging-based spatial analyses, land use/land cover dynamics, and soil–water interactions. His works have contributed to improving understanding of the Upper Blue Nile Basin, Borkena Catchment, and other key Ethiopian watersheds. In addition to academic research, Mr. Kasye has led impactful community engagement projects, including free-energy garden irrigation initiatives and wheat production enhancement programs across Benishangul-Gumuz. These interventions have strengthened food security, improved smallholder livelihoods, and promoted climate-resilient agricultural practices. With advanced skills in ArcGIS, SWAT, HBV, R, GAMS, CropWat, and hydrological modeling software, he collaborates with agricultural offices, university research committees, and interdisciplinary teams. His contributions continue to influence regional water resource planning, climate adaptation strategies, and sustainable development efforts in Ethiopia.

Profile: Scopus

Featured Publications

  1. (2025). Assessing drought dynamics in a semi-arid basin: A multi-index approach using hydrological and remote-sensing indicators. Environmental Sciences Europe.

Darkhan Yelemes | Engineering | Best Researcher Award

Assist. Prof. Dr. Darkhan Yelemes | Engineering | Best Researcher Award

Kazakh Automobile and Highway Institute named after L.B. Goncharov, Kazakhstan

Assist. Prof. Dr. Darkhan Yelemes is a distinguished Kazakh scholar and engineer recognized for his outstanding contributions to mechanical and civil engineering, with a specific focus on transport construction, road machinery, and urban infrastructure systems. His academic expertise lies in the development and optimization of construction, hoisting-transport, mining, and municipal machines, contributing significantly to the modernization of Kazakhstan’s industrial and transport sectors. Throughout his academic career, he has demonstrated strong leadership in research and education, combining technical innovation with applied engineering solutions aimed at advancing sustainable infrastructure. Dr. Yelemes has authored and co-authored more than 100 scientific publications, including high-impact papers indexed in Thomson Reuters and Scopus, as well as three textbooks, an electronic manual, and over a dozen methodological works approved by the Ministry of Education and Science of the Republic of Kazakhstan. His contributions are further evidenced by multiple patents—one national and six innovative patents of Kazakhstan—reflecting his commitment to applied research and technological advancement. He has also authored two monographs that have become important references in his field. A dedicated educator and researcher, Dr. Yelemes has collaborated with international institutions such as Wrocław University of Science and Technology (Poland), engaging in global academic exchanges that enhance cross-border research in transport and construction engineering. His achievements have been recognized with several prestigious honors, including the Gold Medal named after Academician A.A. Abdulin, the Medal “For Merit in the Development of Science of the Republic of Kazakhstan,” and the Bronze Medal named after A. Baitursynov for contributions to higher education and specialist training. As a member of national and international scientific societies, Dr. Yelemes continues to foster innovation, promote knowledge transfer, and support the next generation of engineers. His work exemplifies a deep commitment to advancing science and technology for societal and infrastructural progress, bridging academia and industry toward a sustainable and technologically advanced future.

Profiles: Scopus | ORCID

Featured Publications

  1. Wieleba, W., Leśniewski, T., Elemes, D., & Elemes, A. (2021). Friction processes of selected polymers sliding on steel and duralumin in a lubricant environment. Tribologia.

  2. Sherov, K. T., Mardonov, B. T., Buzauova, T. M., Tussupova, S. O., Smakova, N. S., Izotova, A. S., Gabdyssalik, R., Kurmangaliyev, T. B., & Elemes, D. E. (2020). The research of micro-hardness of side surfaces of teeth cylindrical wheels processed by “shaver-rolling device.” Journal of Theoretical and Applied Mechanics (Bulgaria).

  3. Alyzhanov, M. K., Sikhimbayev, M. R., Kuzembayev, S. B., Sherov, K. T., Sikhimbayeva, D. R., Khanov, T. A., Kurmangaliyev, T. B., Elemes, D. E., Donenbayev, B. S., & Musaev, M. M., et al. (2016). Optimization of the conditions of convective drying of thermosensitive materials. Journal of Theoretical and Applied Mechanics (Bulgaria).

  4. Abdeev, B. M., Yelemes, D. E., & Sakimov, M. A. (2013). Circular plate-membrane with small deflection and maximum sensitivity. In Advanced Materials Research (Vol. 739, pp. 376–381).

  5. Yelemesuly, Y. D., & Kalieva, A. D. (2013). Studying grading of non-metallic materials on the spiral screen. In Key Engineering Materials (Vols. 531–532, pp. 346–351).

Assist. Prof. Dr. Darkhan Yelemes’ work advances the design and optimization of transport, construction, and urban infrastructure systems, driving technological innovation in engineering. His research enhances industrial efficiency, supports sustainable infrastructure development, and fosters practical solutions with global applicability in mechanical and civil engineering.