Linlin Yao | Energy | Best Researcher Award

Dr. Linlin Yao | Energy | Best Researcher Award

Assistant researcher at College of Geosciences and Engineering, North China University of Water Resources and Electric Power, China

Dr. Linlin Yao is a doctoral candidate at North China University of Water Resources and Electric Power, where he also obtained his master’s degree in 2024. He specializes in reservoir reconstruction, a vital area in sustainable water resource management. Dr. Yao has published over three research papers, showcasing his commitment to advancing knowledge in his field. His educational background, combined with his focus on relevant and pressing issues in water resource management, positions him as a promising researcher. As he continues his academic journey, Dr. Yao aims to enhance his publication record and expand the impact of his research. His dedication to both academic excellence and practical applications of his work underscores his potential as a leading figure in his discipline, making him a strong candidate for recognition in the Best Researcher Award.

Professional Profile:

Education🎓 

Dr. Linlin Yao is currently a doctoral candidate at North China University of Water Resources and Electric Power, where he is deepening his expertise in reservoir reconstruction. He previously completed his master’s degree at the same institution in 2024, establishing a solid foundation in water resource management and related engineering principles. Dr. Yao’s educational journey has been marked by a focus on both theoretical knowledge and practical applications, enabling him to engage effectively with contemporary challenges in his field. His coursework and research activities have provided him with essential skills in data analysis, environmental assessment, and sustainable development practices. As a dedicated student, he actively participates in academic discussions and collaborative projects, further enriching his learning experience. This rigorous educational background has equipped Dr. Yao with the tools necessary to contribute meaningfully to the scientific community and address critical issues related to water resources.

Professional Experience 💼

Dr. Linlin Yao has developed a strong professional profile through his focused research in reservoir reconstruction at North China University of Water Resources and Electric Power. As a doctoral candidate, he has engaged in various projects that address the challenges of sustainable water resource management, contributing to the enhancement of existing reservoir systems. His work involves conducting field studies, analyzing data, and implementing innovative solutions that align with modern environmental standards. Dr. Yao has also published over three research papers, demonstrating his ability to disseminate findings and engage with the academic community. In addition to his research, he actively participates in collaborative initiatives, working alongside fellow researchers and industry professionals to apply his knowledge in practical settings. This combination of academic rigor and practical experience positions Dr. Yao as a promising researcher dedicated to making impactful contributions to the field of water resources and engineering.

Research  Interest🔍

Dr. Linlin Yao’s primary research interest lies in reservoir reconstruction, a critical area in the field of water resource management. His work focuses on developing sustainable and efficient strategies to enhance existing reservoir systems, addressing the challenges posed by climate change, urbanization, and population growth. Dr. Yao is particularly interested in the interplay between hydrology and engineering, exploring innovative approaches to optimize reservoir performance while ensuring ecological integrity. His research involves analyzing data related to water quality, sedimentation, and hydraulic performance, with the aim of improving operational efficiency and environmental outcomes. Additionally, he seeks to incorporate advanced technologies, such as modeling and simulation tools, into his studies to predict reservoir behavior under varying conditions. By emphasizing the practical applications of his research, Dr. Yao aims to contribute to effective water resource management solutions that benefit both society and the environment, making his work relevant to contemporary global challenges.

Award and Honor

Dr. Linlin Yao has garnered recognition for his contributions to the field of water resource management, particularly in the area of reservoir reconstruction. Although still early in his academic career, he has already published over three research papers that have contributed to advancing knowledge in his discipline. His work has been acknowledged by peers and faculty members at North China University of Water Resources and Electric Power, reflecting his commitment to excellence in research. Dr. Yao’s innovative approaches to sustainable water management have positioned him as a promising scholar, and he is actively seeking opportunities to present his findings at national and international conferences. Through these platforms, he aims to share his insights and engage with a broader audience, further enhancing his professional profile. As he continues his academic journey, Dr. Yao aspires to receive formal awards and honors that recognize his dedication and impact on water resource sustainability.

Conclusion:

Linlin Yao possesses a solid foundation for consideration for the Best Researcher Award, particularly due to his ongoing doctoral studies, recent master’s achievements, and active contributions to reservoir reconstruction research. However, to strengthen his candidacy, he could focus on expanding his publication record, increasing the impact of his research, and engaging more broadly with both the academic community and practical applications of his work. With a continued focus on these areas, Linlin has the potential to become a leading researcher in his field and a strong contender for the award.

 

Publications top noted📜

  • Title: Numerical simulation of CO2 geological sequestration and CO2-ECBM in coal beds of Longtan Formation, Xiangzhong Depression, Hunan Province, China
    Authors: Zou, M., Ding, Z., Cheng, Y., Sun, Y., Wang, K.
    Journal: Greenhouse Gases: Science and Technology
    Year: 2024
    Volume: 14
    Issue: 5
    Pages: 743–759
    Citations: 0
  • Title: A method to classify coal pore system by using cumulative amplitude ratio and its dynamic variation
    Authors: Zou, M., Cai, N., Wang, K., Ding, Z., Yao, L.
    Journal: Greenhouse Gases: Science and Technology
    Year: 2023
    Volume: 13
    Issue: 5
    Pages: 721–731
    Citations: 0
  • Title: Hydraulic fracture to enhance coalbed methane recovery by using coated ceramsite
    Authors: Zou, M., Yao, L., Zhang, M., Ding, Z., Zhang, X.
    Journal: Greenhouse Gases: Science and Technology
    Year: 2022
    Volume: 12
    Issue: 6
    Pages: 751–763
    Citations: 7

Amir Bahrami | Energy | Excellence in Research

Assist. Prof. Dr. Amir Bahrami | Energy | Excellence in Research

 Photovoltaics at Islamic Azad University, Iran

Assistant Professor Dr. Amir Bahrami is a distinguished academic in the Department of Physics at Ahvaz Branch, Islamic Azad University, Iran, specializing in solid-state physics. He holds a Ph.D. in Physics and has extensive research experience in photovoltaics, thin films, and nanostructures. Dr. Bahrami has contributed significantly to the field with numerous published articles in respected scientific journals, focusing on topics such as dye-sensitized solar cells and the synthesis of nanomaterials. He actively mentors students, guiding them in innovative projects related to renewable energy. A permanent member of the Iranian Physics Society and the Nano Club, Dr. Bahrami participates in national and international conferences, enhancing his profile in the scientific community. His dedication to research and education positions him as a leading figure in his field, making substantial contributions to the advancement of sustainable energy technologies.

Professional Profile:

Education🎓 

Assistant Professor Dr. Amir Bahrami holds an impressive academic background in physics, beginning with a Bachelor of Science in Physics from Shahid Chamran University, Ahvaz, Iran, which he completed in February 2000. He continued his education at the same institution, earning a Master of Science in Solid State Physics in March 2003. Dr. Bahrami pursued his doctoral studies at Shahid Chamran University, where he obtained his Ph.D. in Physics with a focus on Solid State Physics in May 2017. His educational journey has equipped him with a robust foundation in theoretical and experimental physics, particularly in areas related to materials science and renewable energy technologies. This strong academic preparation has significantly contributed to his research expertise and teaching capabilities, enabling him to mentor students and lead innovative research projects in his field.c

Professional Experience 💼

Assistant Professor Dr. Amir Bahrami has a notable professional career in academia, primarily in the Department of Physics at Ahvaz Branch, Islamic Azad University, Iran. In this role, he has been actively involved in teaching, mentoring students, and conducting research in solid-state physics, with a particular focus on photovoltaics and nanostructures. Dr. Bahrami has supervised numerous student projects, including master’s theses on topics related to solar cell simulations and the properties of materials. His research contributions are reflected in several published articles in reputable scientific journals, demonstrating his commitment to advancing knowledge in renewable energy technologies. Additionally, he has participated in both national and international conferences, presenting his research findings and engaging with the global scientific community. Dr. Bahrami is also a permanent member of the Iranian Physics Society and the Nano Club, indicating his active involvement in professional societies that promote scientific research and collaboration.

Research  Interest🔍

Assistant Professor Dr. Amir Bahrami’s research interests encompass a diverse range of topics within the field of solid-state physics, with a strong emphasis on renewable energy technologies. His primary focus is on photovoltaics, particularly the development and optimization of solar cells, including dye-sensitized solar cells and thin-film solar cells. Dr. Bahrami’s work involves the fabrication and characterization of various materials, including nanostructures and composite electrodes, to enhance solar cell efficiency. He is also adept in numerical analysis and simulation techniques, applying these methodologies to model and predict the performance of solar energy devices. Furthermore, his research extends to electrochemical impedance spectroscopy, X-ray diffraction, and electrodeposition, contributing to the understanding of material characteristics and their applications in energy conversion. Through his research, Dr. Bahrami aims to advance the development of sustainable energy solutions, addressing the global challenges of energy demand and environmental sustainability.

Award and Honor

Assistant Professor Dr. Amir Bahrami has received several accolades and honors in recognition of his contributions to the field of physics and renewable energy research. His work on the effects of silver doping in ceramic superconductors and the fabrication of dye-sensitized solar cells has garnered attention in the academic community, leading to numerous publications in reputable scientific journals. Dr. Bahrami’s participation in national and international conferences has further established his reputation as an expert in solid-state physics. He is a permanent member of the Iranian Physics Society and the Nano Club, which highlights his commitment to promoting scientific research and collaboration. Additionally, his mentorship of students has been recognized, contributing to their academic and research achievements. Dr. Bahrami’s dedication to advancing sustainable energy technologies has positioned him as a key figure in his field, earning him respect and recognition from peers and institutions alike.

Conclusion:

Dr. Amir Bahrami is a strong candidate for the Best Researcher Award due to his deep expertise, extensive publication record, and commitment to advancing renewable energy technologies. His strengths in both specialized research and mentoring students align well with the values of the award, though expanding international collaborations and interdisciplinary engagements could further enhance his eligibility. Overall, his achievements and active contributions make him a commendable choice for this award.

 

Publications top noted📜

  • Title: Pt-Ni/rGO counter electrode: electrocatalytic activity for dye-sensitized solar cell
    Authors: A. Bahrami, I. Kazeminezhad, Y. Abdi
    Year: 2019
    Citations: 40
  • Title: The effect of silver doping on the critical current density of Bi‐Pb‐Sr‐Ca‐Cu‐O ceramic superconductor
    Authors: M. Zargar Shoushtari, A. Bahrami, M. Farbod
    Year: 2006
    Citations: 36
  • Title: Structural and optoelectronic properties of electrodeposited CdSe thin films: effect of Cu-dopant
    Authors: H. Kafashan, Z. Orshesh, A. Bahrami, F. Zakerian
    Year: 2024
    Citations: 9
  • Title: CIGS solar cells using ZrS2 as buffer layer: Numerical simulation
    Authors: H. Kafashan, A. Bahrami
    Year: 2024
    Citations: 3
  • Title: Investigating the potential of WO3 and WS2 as Cd-free buffer layers in Sb2Se3-Based thin-film solar cells: A numerical study with SCAPS-1D software
    Authors: K. J. Abbas, A. Bahrami
    Year: 2024
    Citations: 2
  • Title: The Study of Interaction of Melphalan with SWCNT-BNNT Through Force Fields Molecular Mechanics and Quantum Calculations in Different Solvents and Temperatures
    Authors: M. H. Jamshidi, N. Hasanzadeh, H. Yahyaei, A. Bahrami
    Year: 2023
    Citations: 1
  • Title: Investigation of the Correlation between Geometrical Relationship and the Anomeric effect on Conformational Reactivities and Analyze the 1, 4-elimination
    Authors: A. Maknali, N. Hasanzadeh, A. Bahrami
    Year: 2023
    Citations: 1
  • Title: Fabrication and Electrochemical Impedance Spectroscopy of Pt1-xNix Alloy Counter Electrodes for DSSC Applications
    Authors: A. Bahrami, I. Kazeminezhad, Y. Abdi
    Year: 2017
    Citations: 0
  • Title: The effect of silver doping on the properties of Bi1/6Pb0/4Sr2Ca2Cu3Oδ superconductor
    Authors: M. F. A. Bahrami, M. Zargar Shoushtari
    Year: 2005
    Citations: 0

Amina Lyria Deghal Cheridi | Energy | Best Researcher Award

Mrs. Amina Lyria Deghal Cheridi | Energy | Best Researcher Award

Researcher at Nuclear Research Centre of Birine, Algeria

Mrs. Amina Lyria Deghal Cheridi is a Senior Researcher in Energetic Physics at the Nuclear Research Center of Birine, Djelfa, Algeria. Born on September 12, 1974, in Constantine, she holds a Magister and Doctorate in Energetic Physics from the University of Mentouri Constantine, with high honors. Since joining the Nuclear Research Center in 2002, she has progressed through various research positions, specializing in nuclear safety, photo-thermal energy, and radioprotection. She has extensive experience, having participated in numerous specialized training programs, including workshops on nuclear safety and reactor technology in Algeria and internationally. Her practical knowledge is reinforced by hands-on training at SONATRACH’s Skikda complex. With over two decades of research experience and a dedication to advancing nuclear science, Mrs. Deghal Cheridi is a leading figure in her field, contributing significantly to energy safety and innovation. Her work emphasizes applying theoretical physics to real-world nuclear safety challenges.

Professional Profile:

Education🎓 

Mrs. Amina Lyria Deghal Cheridi has a robust academic background in Energetic Physics, with qualifications from the University of Mentouri Constantine, Algeria. She completed her Bachelor’s degree (DES) in Energetic Physics, specializing in Photo-thermal Energy, in June 1997, earning honors. She then pursued advanced degrees, obtaining a DEA (Diplôme d’Études Approfondies) in the same field in 1999, followed by a Magister in Energetic Physics in January 2002, graduating with the highest distinction, “Très Bien.” Her academic journey culminated with a Doctorate in Energetic Physics in September 2013, again with high honors and special jury commendation. Throughout her academic career, Mrs. Deghal Cheridi focused on photo-thermal energy, radioprotection, and nuclear safety, building a solid foundation for her research and professional achievements. Her strong educational background has played a critical role in her rise to becoming a Senior Researcher at the Nuclear Research Center of Birine.

Professional Experience 💼

Mrs. Amina Lyria Deghal Cheridi has over two decades of professional experience in the field of Energetic Physics, specifically in nuclear safety and photo-thermal energy. She began her career in 2002 as a researcher at the Nuclear Research Center of Birine, Djelfa, where she has advanced through several positions, from Research Assistant to Senior Researcher. Her expertise spans nuclear safety analysis, radioprotection, and energy systems, contributing to the safety of nuclear reactors. Between 2003 and 2007, she served as an Attaché de Recherche, and by 2007, she became a Chargé de Recherche. In 2013, she was promoted to Maître de Recherche B, reflecting her deepening expertise. In 2019, she attained the rank of Senior Researcher. Throughout her career, Mrs. Deghal Cheridi has participated in specialized training in nuclear safety, reactor technology, and thermal hydraulics, strengthening her practical knowledge and making her a key contributor to Algeria’s nuclear research initiatives.

Research  Interest🔍

Mrs. Amina Lyria Deghal Cheridi’s research interests are deeply rooted in Energetic Physics, with a focus on photo-thermal energy, nuclear safety, and radioprotection. Her work centers on the analysis and safety assessment of nuclear reactors, contributing to advancements in nuclear energy technologies. She is particularly engaged in studying the application of photo-thermal techniques to improve energy efficiency and exploring nuclear safety protocols to enhance reactor reliability and mitigate risks. Mrs. Deghal Cheridi’s expertise extends to thermal hydraulics, reactor safety systems, and radiological protection, where she applies theoretical principles to solve practical challenges in the nuclear energy sector. Her contributions also include participation in several high-level training programs related to reactor physics and safety management systems, which have shaped her interest in ensuring the safe deployment of nuclear technologies. Her research aims to bridge the gap between theoretical physics and real-world nuclear safety, fostering innovation in energy sustainability and reactor safety systems.

Award and Honor

Mrs. Amina Lyria Deghal Cheridi has received significant recognition for her academic and research achievements throughout her career in Energetic Physics. Notably, she was awarded “Très Honorable avec Félicitations” (Very Honorable with Jury Commendation) for her Doctorate in Energetic Physics in 2013 from the University of Mentouri Constantine, highlighting her exceptional research contributions in photo-thermal energy and nuclear safety. Her Magister degree in 2002 also earned her high distinction, reflecting her academic excellence and expertise in her field. These honors underscore her dedication to advancing nuclear research and energy efficiency. In addition to these academic accolades, her long-standing position as a Senior Researcher at the Nuclear Research Center of Birine demonstrates the recognition of her expertise and leadership within the scientific community. Her continuous contributions to nuclear safety and energy sustainability have solidified her reputation as a respected figure in Algeria’s nuclear research sector.

Conclusion:

Mme DEGHAL Née CHERIDI Amina Lyria is a strong candidate for the Women Researcher Award based on her extensive academic qualifications, long-term professional experience in nuclear physics, and commitment to specialized training. To enhance her application, it would be beneficial to highlight her research publications, international collaborations, and leadership in mentoring young women in STEM. This would make her profile more comprehensive and align it with the expectations of such an award.

 

Publications top noted📜

 

  • Bouam, A., Deghal Cheridi, A.L., Koudiah, N., Kentouche, A., & Khelfi, D.
    Design, construction and commissioning of a new vortex cooling tower prototype for nuclear application
    Nuclear Engineering and Design, 2024, 429, 113607.
    Citations: 0
  • Dadda, A., Bouali, B., Bouam, A., Dahia, A., & Deghal Cheridi, A.L.
    Source term analysis and impact study during a hypothetical accident in Haiyang nuclear power plant
    Radiation Physics and Chemistry, 2024, 218, 111542.
    Citations: 1
  • Deghal Cheridi, A.L., Dadda, A., Dahia, A., Kentouche, A., & Khelfi, D.
    Flow blockage accident analysis in a multi-purpose research reactor using Relap5 system code
    Progress in Nuclear Energy, 2024, 168, 105019.
    Citations: 0
  • Dadda, A., Bouali, B., Bouam, A., Deghal Cheridi, A.L., & Graine, H.
    Impact study of radioactive release to the environment after a hypothetical accident of AP1000 Nuclear Reactor
    2nd International Conference on Energy Transition and Security, ICETS 2023, 2023.
    Citations: 0
  • Dahia, A., Cheridi, A.L.D., & Boumaza, M.
    Transient analysis of the flow behavior under a small leakage accident in feed water pipeline
    Journal of Applied Fluid Mechanics, 2023, 16(12), pp. 2529–2539.
    Citations: 0
  • Cheridi, A.L.D., Bouaam, A., Dadda, A., & Dahia, A.
    Influence of geometric parameters on the performance of a vortex-type cooling tower
    Lecture Notes in Networks and Systems, 2023, 591 LNNS, pp. 565–573.
    Citations: 0
  • Deghal Cheridi, A.L., Bouam, A., Dadda, A., Koudiah, N., & Attari, K.
    Realization and experimentation of a novel vortex cooling tower
    Energy Conversion and Management, 2022, 270, 116197.
    Citations: 4
  • Deghal Cheridi, A.L., Bouam, A., Dadda, A., Aguedal, I., & Kerris, A.
    Numerical investigation of a novel cooling vortex tower using Relap5 computer code
    Nuclear Engineering and Design, 2022, 391, 111730.
    Citations: 4
  • Bouam, A., Deghal Cheridi, A.L., Attari, K., Dadda, A., & Kerris, A.
    Vortex Tower Prototype Realization
    2022 2nd International Conference on Advanced Electrical Engineering, ICAEE 2022, 2022.
    Citations: 0
  • Deghal Cheridi, A.L., Loubar, A., Dadda, A., & Bouam, A.
    Modeling and simulation of a natural circulation water-tube steam boiler
    SN Applied Sciences, 2019, 1(11), 1405.
    Citations: 9

Xiang Wang | Energy | Best Researcher Award

Assoc Prof Dr. Xiang Wang | Energy | Best Researcher Award

Assistant Professor at Nanjing Institute of Technology, China

Wang Xiang, is a distinguished researcher and master’s supervisor at the School of Energy and Power Engineering, Nanjing Institute of Engineering. He has over 20 years of expertise in mechanical vibration faults, fault diagnosis technology, and the development of vibration monitoring systems. Since 2007, he has been committed to teaching and research in the areas of steam turbines and digital electro-hydraulic control systems. His extensive practical and theoretical knowledge has benefited industries like power, chemical, and metallurgy through industry-university research collaborations. Wang has led over 50 research projects and published more than 20 academic papers, 9 of which are indexed in SCI and EI. His work has contributed to solving complex mechanical issues and ensuring the safe operation of key industrial equipment. He has been instrumental in developing advanced mechanical fault diagnosis systems and is well-regarded for his contributions to both academia and industry.

Professional Profile:

Education🎓 

Wang Xiang holds a Ph.D. in Engineering from Hohai University, which he completed in 2015, following a Master’s degree in Engineering from Southeast University, obtained in 2007. His educational background has provided him with a solid foundation in the principles of mechanical and electrical engineering, with a focus on fault diagnosis technology and mechanical vibration monitoring. At both institutions, he gained significant exposure to cutting-edge research in engineering, contributing to his profound understanding of complex mechanical systems and the practical applications of theoretical research. His academic training has been instrumental in shaping his career, enabling him to lead significant projects in mechanical fault diagnosis and vibration analysis. His research skills have been enhanced by his studies in advanced mechanical systems, ultimately leading him to his current teaching and research role at Nanjing Institute of Engineering.

Professional Experience 💼

Wang Xiang has been serving as a faculty member at the School of Energy and Power Engineering, Nanjing Institute of Engineering since 2007. Over the past two decades, he has built a robust career in teaching, research, and industry collaboration, specializing in mechanical vibration faults and fault diagnosis systems for rotating machinery. His hands-on experience spans over 50 research projects and more than 20 power plants, including collaborations with renowned power generation companies such as Huaneng, Datang, and China Power Investment Corporation. His work involves fault diagnosis, system development, and on-site technical services for key industrial machinery, ensuring their optimal performance and safety. Wang has also contributed extensively to training technicians in thermal power plants, combining practical engineering solutions with academic research. He has led the implementation of advanced diagnostic tools like Emerson CSI systems and Bently DAIU-408 testers, enhancing the capabilities of mechanical health monitoring systems.

Research  Interest🔍

Wang Xiang’s research interests lie primarily in the areas of mechanical vibration faults, fault diagnosis technologies, and vibration monitoring systems for rotating machinery. His work focuses on the early detection and diagnosis of mechanical anomalies, with a particular emphasis on frequency spectrum analysis. He has made significant contributions to the development of advanced diagnostic tools, including mechanical health expert systems and multifunctional fault simulation test benches. His research aims to improve the reliability and safety of key industrial equipment by providing effective solutions for monitoring and diagnosing mechanical faults. Additionally, Wang’s research involves industry-university collaborations, where his practical engineering experience is combined with theoretical advancements to solve real-world challenges in sectors such as power generation, chemical processing, and metallurgy. His work continues to push the boundaries of mechanical fault diagnosis, focusing on enhancing system efficiency and ensuring the operational integrity of critical industrial systems.

Award and Honor

Wang Xiang has earned several accolades throughout his career, recognizing his contributions to both academia and industry. He has been honored with funding for over 50 research projects, with a total funding amount exceeding 10 million yuan, demonstrating his success in securing competitive research grants. His leadership in these projects has been acknowledged by national and provincial bodies, showcasing his ability to combine practical engineering expertise with advanced research. Wang’s academic work, especially his publications in prestigious journals indexed by SCI and EI, has also garnered attention, positioning him as a key figure in the field of mechanical fault diagnosis. His collaborations with major power generation companies have further cemented his reputation as an expert in mechanical vibration monitoring and fault diagnosis, making his contributions invaluable to both industrial operations and academic progress.

Conclusion

Wang Xiang’s impressive track record in research, teaching, and practical applications makes him a strong contender for the Best Researcher Award. His depth of experience in mechanical vibration faults and fault diagnosis, coupled with substantial funding and publication achievements, positions him as a leader in his field domestically. By expanding international collaborations and interdisciplinary research efforts, Wang Xiang could further elevate his profile and impact in the global research community.

 

Publications top noted📜

 

  • Wang, X., Du, Y.
    (2024). Fault Diagnosis of Wind Turbine Gearbox Based on Modified Hierarchical Fluctuation Dispersion Entropy of Tan-Sigmoid Mapping. Entropy, 26(6), 507.
    Citations: 1
  • Wang, X., Du, Y.
    (2024). Fault Diagnosis Method for Wind Turbine Gearbox Based on Ensemble-Refined Composite Multiscale Fluctuation-Based Reverse Dispersion Entropy. Entropy, 26(8), 705.
    Citations: 0
  • Wang, X., Xu, W.
    (2024). A Decoupled Approach to Enhance the Elrod Algorithm. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, 238(1), 86–95.
    Citations: 1
  • Xu, W., Wang, X., Huang, T., Yang, J.
    (2023). Efficient Implementation of Numerical Methods for Solving Bearing Cavitation Problems Using Symmetric System Solvers. Tribology International, 186, 108624.
    Citations: 3
  • Wang, X., Jiang, H.
    (2023). Gearbox Fault Diagnosis Based on Refined Time-Shift Multiscale Reverse Dispersion Entropy and Optimised Support Vector Machine. Machines, 11(6), 646.
    Citations: 2
  • Wang, X., Wang, J., Xu, W.
    (2022). Fault Diagnosis Method of Wind Turbine Gearbox Based on S-SLLE | 基于S-SLLE的风电机组齿轮箱故障诊断方法研究. Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 43(3), 343–349.
    Citations: 3
  • Song, G., Zhao, S., Wang, X., Wang, H., Xiao, J.
    (2022). An Efficient Biomass and Renewable Power-to-Gas Process Integrating Electrical Heating Gasification. Case Studies in Thermal Engineering, 30, 101735.
    Citations: 7
  • Wang, J., Wang, J., Bi, X., Wang, X.
    (2016). Performance Simulation Comparison for Parabolic Trough Solar Collectors in China. International Journal of Photoenergy, 2016, 9260943.
    Citations: 24
  • Wang, X., Zheng, Y., Zhao, Z., Wang, J.
    (2015). Bearing Fault Diagnosis Based on Statistical Locally Linear Embedding. Sensors (Switzerland), 15(7), 16225–16247.
    Citations: 132

Betül Özer | Energy | Best Researcher Award

Assoc Prof Dr. Betül Özer | Energy | Best Researcher Award

Academician at Kırklareli University Technology Faculty, Turkey

Assoc. Prof. Dr. Betül Özer is a dedicated environmental engineer with a strong academic and research background. She holds a Ph.D. in Environmental Engineering from Istanbul Technical University, where she explored CO2 emission reduction in the Turkish electricity sector. With over two decades of experience in sustainable energy systems and environmental management, Dr. Özer has made significant contributions to both academia and applied research. She has supervised numerous master’s theses on renewable energy, sustainability, and biogas potential, contributing to the development of future experts. Her work is marked by an emphasis on practical applications, such as carbon footprint analysis, energy efficiency, and biogas production. Dr. Özer’s contributions have been recognized through high-impact projects and international collaborations, positioning her as a leader in environmental sustainability and clean energy solutions. 🌍💡

Professional Profile:

Education🎓 

Dr. Betül Özer’s academic journey is rooted in her passion for environmental engineering. She earned her Ph.D. in Environmental Engineering from Istanbul Technical University (İTÜ) in 2012, with a thesis focused on CO2 emission reduction potential in the Turkish electricity sector, supervised by Prof. Dr. Hüseyin Erdem Görgün and Prof. Dr. Salahattin İncecik. Prior to that, she completed her M.Sc. in Environmental Engineering from İTÜ in 2000, where her research addressed environmental management systems in the electrical components industry under the guidance of Prof. Dr. İlhan Talınlı. She began her academic career with a B.Sc. in Environmental Engineering from İTÜ, graduating in 1997. Throughout her education, Dr. Özer has demonstrated a strong commitment to tackling pressing environmental issues, laying the foundation for her future contributions in renewable energy and sustainability. 🎓📚

Professional Experience 💼

Dr. Betül Özer has an extensive career in both academia and applied research. She is currently an Associate Professor in the Energy Systems Engineering Department at Kırklareli University, where she supervises multiple research projects and master’s theses. Her professional experience includes leading significant projects such as the calculation of the carbon footprint for Kırklareli University’s Kayalı Campus and consultancy roles in national and international bioenergy and biogas initiatives. She has also contributed to the Republic of Turkey’s Ministry of Environment and Urbanization as an expert on emissions control and environmental management systems. Additionally, Dr. Özer served as a Postdoctoral Researcher for TÜBİTAK’s national air pollution emission management project and as a consultant on energy efficiency projects in various sectors. Her role as a leader in environmental research and her commitment to sustainability are reflected in her impactful work. 🌱🛠️

Research  Interest🔍

Dr. Betül Özer’s research interests focus on sustainable energy systems, renewable energy, and environmental management. Her primary area of expertise lies in reducing CO2 emissions, particularly in the Turkish electricity sector, where she has conducted extensive scenario analysis using energy-environment models. Dr. Özer is also deeply involved in exploring the potential of biogas energy from agricultural waste and animal by-products, contributing to the development of renewable energy resources in Turkey. Other key research interests include energy efficiency in industries such as textiles and cement, where her work has resulted in practical solutions to minimize environmental impact. She is passionate about carbon footprint reduction, particularly in the context of university campuses and organized industrial zones. Dr. Özer continues to explore innovative methods to integrate sustainability into energy systems, making her research crucial for addressing global environmental challenges. 🔋🌱

Award and Honor

Throughout her career, Assoc. Prof. Dr. Betül Özer has earned several awards and honors for her significant contributions to environmental engineering and sustainable energy solutions. She has been recognized for her leadership in key projects such as the carbon footprint calculation for Kırklareli University and her consultancy role in international bioenergy projects funded by the European Bank for Reconstruction and Development (EBRD). Additionally, her collaboration with the Republic of Turkey’s Ministry of Environment on emissions control and environmental management systems has further elevated her standing in the environmental field. Her impactful contributions in academia are evident in her supervision of master’s theses and national projects, where she has guided students and professionals toward innovative energy solutions. Dr. Özer’s recognition as an expert in CO2 emission reduction and renewable energy potential reflects her ongoing commitment to sustainability and environmental responsibility. 🏆🌍

Conclusion

Assoc. Prof. Dr. Betül Özer is a highly suitable candidate for the Best Researcher Award due to her expertise in environmental engineering, with a strong focus on sustainable energy systems, energy efficiency, and carbon emissions reduction. Her research leadership, involvement in national and international projects, and mentoring of future researchers further bolster her candidacy. Enhancing her research output in peer-reviewed journals and expanding her international collaboration would help her continue to grow as a leading expert in the field of environmental engineering.

 

Publications top noted📜

  • Özer, B., Yay, A.S.E. (2021). “Comparative life cycle analysis of municipal waste management systems: Kırklareli/Turkey case study.” Environmental Science and Pollution Research, 28(45), pp. 63867–63877.
    Citations: 10
  • Özer, B., Güven, B. (2021). “Energy efficiency analyses in a Turkish fabric dyeing factory.” Energy Sources, Part A: Recovery, Utilization and Environmental Effects, 43(7), pp. 852–874.
    Citations: 5
  • Ozer, B., Guven, B. (2019). “Energy Efficiency Implementation in a Fabric Finishing Factory in Turkey.” 2019 4th International Conference on Smart and Sustainable Technologies, SpliTech 2019, 8783010.
    Citations: 0
  • Özer, B., Bayar, S. (2018). “Biomass as a renewable energy option in electricity generation: ‘Trakya region’ case study.” Green Energy and Technology, pp. 485–492.
    Citations: 1
  • Özer, B. (2017). “Biogas energy opportunity of Ardahan city of Turkey.” Energy, 139, pp. 1144–1152.
    Citations: 32
  • Özer, B., Incecik, S., Görgün, E. (2017). “The evaluation of CO2 emissions mitigation scenarios for Turkish electricity sector.” International Journal of Global Warming, 11(2), pp. 157–181.
    Citations: 1
  • Özer, B. (2014). “Evaluation of Turkish electricity demand projections.” Progress in Exergy, Energy, and the Environment, pp. 559–568.
    Citations: 0
  • Özer, B. (2013). “Biogas potential of animal wastes for electricity generation in Ardahan city of Turkey.” Causes, Impacts and Solutions to Global Warming, pp. 697–707.
    Citations: 2
  • Özer, B., Görgün, E., Incecik, S. (2013). “The scenario analysis on CO2 emission mitigation potential in the Turkish electricity sector: 2006-2030.” Energy, 49(1), pp. 395–403.
    Citations: 71

Hong Fan | Energy | Best Researcher Award

Prof. Hong Fan | Energy | Best Researcher Award

Assistant Professor at Shanghai University of Electric Power, China

Dr. Hong Fan is an Associate Professor at the School of Electric Power Engineering, Shanghai University of Electric Power. With 15 years of experience, she specializes in optimizing power systems, focusing on power grid planning, smart grids, and simulation. Her impressive portfolio includes over 60 publications and numerous completed and ongoing research projects. Dr. Fan’s work has earned her significant recognition, including multiple prestigious awards. She is dedicated to advancing energy solutions and contributing to the field of electrical engineering.

Professional Profile:

Education🎓 

Dr. Fan holds a Ph.D. in Electrical Engineering from Shanghai Jiaotong University (2009), a Master’s degree from Guangxi University (2004), and a Bachelor’s degree from Hubei University for Nationalities (1999). Her doctoral research focused on optimizing power system efficiency, laying a strong foundation for her subsequent career in electrical engineering. Her academic journey reflects a robust and comprehensive education in her field.

Professional Experience 💼

Since 2009, Dr. Fan has been an Associate Professor and master’s tutor at Shanghai University of Electric Power. She has led numerous research projects funded by the National Natural Science Foundation of China and various industry sponsors. Her previous roles include substantial contributions to research and teaching in power systems, optimizing power flows, and smart grid technologies. Her professional experience underscores her leadership and expertise in electrical engineering.

Research  Interest🔍

Dr. Fan’s research focuses on optimizing power systems, including power grid planning, optimal power flow, reactive power optimization, and smart grid technologies. Her work addresses critical challenges in energy efficiency and grid stability, aiming to enhance power system performance and reliability. Her ongoing projects explore cutting-edge solutions in energy management and smart grid integration, contributing significantly to advancements in electrical engineering.

Award and Honor

Dr. Fan has received significant accolades for her contributions to scientific and technological progress. Notable awards include the first and third prizes for scientific and technological advancements from the State Grid Sichuan Electric Power Company, and the Third Prize for Scientific and Technological Progress in Sichuan Province. These honors recognize her outstanding contributions to energy optimization and power systems.

 

Publications top noted📜

 

Journal: Electric Power Systems Research
ISSN: 0378-7796
Type: Review
Role: Reviewer
Publisher: Elsevier Editorial
Review Date: 2023

Elham Khorashadizade | Energy | Best Faculty Award

Dr. Elham Khorashadizade | Energy | Best Faculty Award

Assistant Professor at Pasargad Institute for Advanced Innovative solutions (PIAIS), Iran

Elham Khorashadizade is a prominent Iranian physicist specializing in condensed matter physics with a focus on renewable energy technologies. Currently, she is a researcher at the Islamic Public of Iran, where she leads innovative projects on photoelectrochemical systems and catalysis. Elham’s extensive experience includes teaching various advanced physics courses and contributing to significant research initiatives, including solar cells and supercapacitors. Her international background, with research stints in Germany, and her role in advancing sustainable technologies underscore her dedication to impactful science.

Professional Profile:

Education🎓 

Elham Khorashadizade earned her Ph.D. in Condensed Matter Physics from Sharif University of Technology, Iran, with a GPA of 19.50. Her thesis focused on enhancing the photoelectrochemical performance of titanium dioxide nanotubes. She completed a M.Sc. in Solid State Physics at the University of Birjand, where she investigated strontium hexaferrite nanoparticles. Elham also holds a B.Sc. in Physics from Ferdowsi University of Mashhad. She furthered her research skills during a sabbatical at Friedrich-Alexander University, Germany, under the supervision of Prof. Patrik Schmuki.

Professional Experience 💼

Elham Khorashadizade’s professional experience spans several roles in academia and research. As a researcher, she leads projects on photoelectrochemical systems and renewable energy technologies. She has taught various physics courses, including solar cells and analytical electrochemistry. Elham has served as a research assistant and teacher assistant at Sharif University of Technology, where she supervised projects related to titanium dioxide nanotubes and nanostructured materials. Her previous roles also include teaching physics courses at Payam Noor University and University of Birjand, Iran.

Research  Interest🔍

Elham Khorashadizade’s research interests are centered around advanced photoelectrochemical systems, solar cells, supercapacitors, and hydrogen production. She explores the effects of defect engineering in titanium dioxide nanotubes and develops new electrocatalysts for energy applications. Her work also includes fabricating nanostructured materials and enhancing supercapacitor performance. Elham is committed to advancing sustainable energy technologies through her innovative research, contributing significantly to the field of renewable energy.

Award and Honor

Elham Khorashadizade has received significant recognition for her research and academic contributions. Her work on photoelectrochemical systems and renewable energy technologies has been acknowledged through various awards. Her innovative research projects, such as fabricating TiO2 nanotubes and developing novel electrocatalysts, have positioned her as a leading figure in her field. While specific awards were not listed, her high GPA and international research experience reflect her esteemed status in the scientific community.

 

Publications top noted📜

 

  1. Comparing Plasma Reduction and Thermal Hydrogenation in Oxygen Deficient TiO2-x Nanotubes for Photoelectrochemical H2 Production
    Khorashadizade, E., Rahimi, K., Mohajernia, S., et al.
    International Journal of Hydrogen Energy, 2024, 74, pp. 434–446
    📄 Citations: 0
  2. Enhanced Photoelectrochemical Water Splitting via Hydrogenated TiO2 Nanotubes Modified with Cu/CuO Species
    Pour-Ali, S., Tavangar, R., Namdar-Asl, H., Esfandiari, N., Khorashadizade, E.
    Journal of Photochemistry and Photobiology A: Chemistry, 2024, 452, 115586
    📄 Citations: 1
  3. Intrinsically Ru-Doped Suboxide TiO2 Nanotubes for Enhanced Photoelectrocatalytic H2 Generation
    Khorashadizade, E., Mohajernia, S., Hejazi, S., et al.
    Journal of Physical Chemistry C, 2021, 125(11), pp. 6116–6127
    📄 Citations: 25
  4. Alkali Metal Cation Incorporation in Conductive TiO2 Nanoflakes with Improved Photoelectrochemical H2 Generation
    Khorashadizade, E., Mohajernia, S., Hejazi, S., et al.
    ChemElectroChem, 2020, 7(7), pp. 1699–1706
    📄 Citations: 12
  5. Recent Progress on Doped ZnO Nanostructures for Visible-Light Photocatalysis
    Samadi, M., Zirak, M., Naseri, A., Khorashadizade, E., Moshfegh, A.Z.
    Thin Solid Films, 2016, 605, pp. 2–19
    📄 Citations: 601
  6. Doping Effect on Crystal Structure and Magnetic Properties of Highly Al-Substituted Strontium Hexaferrite Nanoparticles
    Khorashadizade, E., Arabi, H., Yousefi, A.
    Applied Mechanics and Materials, 2012, 229-231, pp. 210–214
    📄 Citations: 2

Yonghong Niu | Energy | Best Researcher Award

Prof Dr. Yonghong Niu | Energy | Best Researcher Award

Professor at Inner Mongolia University of Science & Technology, China

Prof. Yonghong Niu, born on June 17, 1977, is a distinguished professor and doctoral supervisor at the School of Energy and Environment, Inner Mongolia University of Science and Technology. With a focus on renewable energy and strategic resources, he has significantly contributed to the clean and efficient use of biomass energy. He is recognized as a high-level talent in the Inner Mongolia Autonomous Region and has led numerous national and regional research projects. Prof. Niu’s innovative work and leadership have earned him a prominent position in the field of energy science and engineering. 📚🔬

Professional Profile:

Education🎓 

Prof. Niu Yonghong holds advanced degrees in energy science and engineering, though specific degrees are not detailed. His education supports his expertise in renewable energy and strategic resources, enabling him to lead significant research projects and contribute to advancements in the field. His academic background lays a solid foundation for his work in energy conversion and utilization. 🎓🌍

Professional Experience 💼

Prof. Niu has an extensive career in renewable energy research, leading over 20 projects funded by the National Natural Science Foundation of China and the Inner Mongolia Natural Science Foundation. His roles include being an expert for national and regional scientific evaluations and serving as a special reviewer for prestigious journals. His professional journey reflects his commitment to advancing clean energy technologies and his influence in the field of energy science. 🌟🔬

Research  Interest🔍

Prof. Niu’s research focuses on the clean and efficient utilization of biomass energy, including the optimization of thermal conversion processes and catalyst development. He explores the use of rare earth resources to improve biomass energy systems and aims to advance the practical applications of renewable energy technologies. His work has significant implications for sustainable energy practices and strategic resource utilization. 🌱⚡

Award and Honor

Prof. Niu has received numerous accolades, including recognition as a high-level talent in Inner Mongolia and as an academic leader in Baotou City. He has been honored with awards for his contributions to renewable energy research and has been acknowledged by various scientific and technological organizations. His extensive list of awards underscores his impact and excellence in his field. 🏅🎖️

Publications top noted📜

  • Mechanistic analysis of hydrogen-rich Co-gasification of pine wood and polypropylene-based waste masks using Fe/Dol catalyst
    • Authors: Niu, Y.-H., Chi, Z.-Y., Wang, Z.-Q., Yang, M., Han, F.-T.
    • Journal: Journal of the Energy Institute
    • Year: 2024
    • Citation Count: 0 📅🔬
  • Analysis of the effects of Pr1-xCexCoO3/dolomite catalyst on energy saving and carbon reduction in biomass gasification for the production of hydrogen-rich syngas
    • Authors: Niu, Y.-H., Chi, Z.-Y., Han, S., Li, M., Han, F.-T.
    • Journal: Journal of the Energy Institute
    • Year: 2024
    • Citation Count: 0 📅🔬
  • Advancements in biomass gasification research utilizing iron-based oxygen carriers in chemical looping: A review
    • Authors: Niu, Y., Chi, Z., Li, M.
    • Journal: Materials Reports: Energy
    • Year: 2024
    • Citation Count: 0 📅🔍
  • Non-isothermal and isothermal co-pyrolysis characteristics of coal gangue/coal slime and pine sawdust: Thermogravimetric analyzer and fixed bed pyrolysis reactor study
    • Authors: Niu, Y., Han, S., Hu, Y., Yang, M., Han, F.
    • Journal: International Journal of Hydrogen Energy
    • Year: 2024
    • Citation Count: 0 📅🔬
  • Study on catalytic gasification of pine wood with cerium loaded dolomite based clay ceramics
    • Authors: Niu, Y.-H., Qian, X.-R., Liu, Z., Li, Y.-K.
    • Journal: Ranliao Huaxue Xuebao/Journal of Fuel Chemistry and Technology
    • Year: 2023
    • Citation Count: 1 📅🔬
  • Biomass to hydrogen-rich syngas via tar removal from steam gasification with La1-XCeXFeO3/dolomite as a catalyst
    • Authors: Zhang, J., Niu, Y.
    • Journal: International Journal of Hydrogen Energy
    • Year: 2022
    • Citation Count: 13 📅🔥
  • Co-gasification of coal gangue and pine sawdust on a self-made two-stage fixed bed: Effect of mixing ratio
    • Authors: Niu, Y., Hu, Y., Wang, W.
    • Journal: International Journal of Hydrogen Energy
    • Year: 2022
    • Citation Count: 8 📅⚗️
  • Experiment on Pine Pyrolysis Based on Semi-coke Catalyzed by La
    • Authors: Niu, Y., Zhang, J., Cai, Y., Li, Y., Yang, Z.
    • Journal: Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery
    • Year: 2021
    • Citation Count: 2 📅🌲
  • Experimental study on enhancement characteristics of steam/nitrogen condensation inside horizontal multi-start helical channels
    • Authors: Wen, J., Dou, Z., Zhong, J., Hu, Z., Zheng, D.
    • Journal: Open Physics
    • Year: 2021
    • Citation Count: 0 📅🔬
  • Performance research of lanthanum-loaded dolomite catalyst for pine catalytic gasification
    • Authors: Niu, Y.-H., Song, Z.-Z., Li, Y.-K., Wen, J.-J., Zheng, K.-C.
    • Journal: Ranliao Huaxue Xuebao/Journal of Fuel Chemistry and Technology
    • Year: 2021
    • Citation Count: 6 📅🔬

Aicha Djalab | Energy | Best Researcher Award

Ms. Aicha Djalab | Energy | Best Researcher Award

Professor at Higher Education, University of Djelfa, Algeria

Aicha Djalab, born on August 13, 1979, in Djelfa, Algeria, is a dedicated researcher and academic in the field of Electrical Engineering. She holds a Doctorate degree in Electrical Engineering with a focus on Industrial Diagnostics and Renewable Energy Systems. Aicha is committed to advancing renewable energy technologies and optimizing photovoltaic systems through her innovative research.

Professional Profile:

Education🎓 

🎓 Doctorate Degree (2020)
Field: Electrical Engineering
Specialty: Industrial Diagnostics
Thesis: Diagnosis of faults in a renewable energy system based on artificial intelligence techniques

🎓 Master’s Degree (2012)
Field: Electrical Engineering
Specialty: Automatic

Professional Experience 💼

🔬 Researcher
Institution: University of Djelfa, Algeria
Role: Doctoral Researcher focusing on renewable energy technologies and photovoltaic systems.

📚 International Conference Presenter
Aicha has presented her research at numerous international conferences, sharing insights into photovoltaic systems and renewable energy technologies.

Research  Interest🔍

🌞 Renewable Energy Technologies
🔋 Solar Power
⚙️ Electrical and Electronics Engineering
🤖 Fuzzy Logic Control
🔬 Photovoltaic Systems
☀️ Solar Radiations

Award and Honor

🏅 Publication Recognition
Aicha has been recognized for her contributions to journals and conferences, including notable publications on photovoltaic systems and fault diagnosis.

🏅 Research Grants
She has successfully secured competitive research grants, including funding from the National Natural Science Foundation of China.

Aicha Djalab’s work exemplifies a dedication to advancing renewable energy and optimizing photovoltaic systems through innovative research and extensive expertise.

Achievements🏅
  • 🎓 Doctorate Degree (2020): Earned a Ph.D. in Electrical Engineering with a focus on Industrial Diagnostics and renewable energy systems.
  • 🏆 Conference Presentations: Presented at several international conferences, including:
    • PVCON’18 (July 2018, Ankara, Turkey)
    • CEIT’18 (October 2018, Istanbul, Turkey)
    • IC-AIRES’18 (November 2018, Tipaza, Algeria)
    • ICEE’18 (December 2018, El-oued, Algeria)
    • ISTSID’19 (February 2019, El-oued, Algeria)
  • 📜 International Publications: Authored several papers in high-impact journals, including:
    • “Robust Method for Diagnosis and Detection of Faults in Photovoltaic Systems Using Artificial Neural Networks” in Periodica Polytechnica Electrical Engineering and Computer Science.
    • “A Comprehensive Review of Floating Photovoltaic Systems” in Solar Energy (2024).
  • 🔬 Research Grants: Secured competitive research grants, including one from the National Natural Science Foundation of China.
  • 🛠 Technical Skills: Proficient in Power System Analysis, PV Systems, Fuzzy Logic Control, and MATLAB Simulation.
  • 🏅 Award Recognition: Recognized for contributions to renewable energy technologies and photovoltaic systems through publications and conference presentations.

Publications top noted📜

  • 📚 “The Impact of Strategic Vigilance on E-management in the National Railway Transport Company (SNTF)”
    • Authors: K Karima, D Zohra
    • Journal: Journal of Information Technology Management
    • Volume & Issue: 13 (2), 202-230
    • Citations: 21
    • Year: 2021
  • 📚 “The Effect of Organisational Citizenship Behavior on Cultural Diversity: A Case Study of Ophthalmological Hospital Friendship Algeria-Cuba”
    • Authors: Djalab Zohra, Ali Naas Said, Kasmi Karima, Noori Al-hamdany Saba, Emad …
    • Journal: Business Ethics and Leadership
    • Volume & Issue: 7 (1), 25-36
    • Citations: 5*
    • Year: 2023
  • 📚 “The Impact Of International Capital Flows On The Economic Growth In Algeria During The Period 1990-2018”
    • Authors: Djalab Zohra, Said Ali Naas
    • Journal: Les Cahiers du CREAD
    • Volume & Issue: 39 (1), 63-86
    • Citations: 1*
    • Year: 2023
  • 📚 “Assessing the Impact of Competencies Management on Organizational Learning: A Case of the University of Djelfa, Algeria”
    • Authors: Djalab Zohra, Kasmi Karima, Siddig Balal Ibrahim, Said Ali Naas, Saba Noori …
    • Journal: Journal of Innovations and Sustainability
    • Volume & Issue: 7 (1)
    • Citations: 1
    • Year: 2023
  • 📚 “The Role of Organizational Culture on Enhancing the Organizational Citizenship Behavior-A Field Study of the Algerian-Cuban Friendship Hospital for Ophthalmology in Djelfa”
    • Authors: D Zohra, H Tarek
    • Journal: Strategy and Development Review
    • Volume & Issue: 11 (2), 561-580
    • Citations: 1
    • Year: 2021
  • 📚 “A Comprehensive Review of Floating Photovoltaic Systems: Tech Advances, Marine Environmental Influences on Offshore PV Systems, and Economic Feasibility Analysis”
    • Authors: A Djalab, Z Djalab, A El Hammoumi, GM TINA, S Motahhir, AA Laouid
    • Journal: Solar Energy
    • Volume: 277, 112711
    • Citations: Not available
    • Year: 2024
  • 📚 “The Impact of Robotic Automation on Industrial and Productive Enterprises in Achieving Entrepreneurship”
    • Authors: Z Djalab, A Djalab, AA Laouid, AN Said, MEA Abdelli
    • Journal: International Journal on Engineering, Science and Technology
    • Volume & Issue: 6 (2), 189-203
    • Citations: Not available
    • Year: 2024
  • 📚 “Investigating the Impact Of Organizational Climate On Organizational Silence In Higher Education Institutions”
    • Authors: DZ R Kettaf, K Karima
    • Journal: SocioEconomic Challenges (SEC)
    • Volume & Issue: 8 (1), 170-182
    • Citations: Not available
    • Year: 2024
  • 📚 “L’IMPACT DES FLUX INTERNATIONAUX DE CAPITAUX SUR LA CROISSANCE ECONOMIQUE DE L’ALGERIE AU COURS DE LA PERIODE 1990-2018.”
    • Authors: Z DJALAB, AN SAID
    • Journal: Les Cahiers du CREAD
    • Volume: 39 (1)
    • Citations: Not available
    • Year: 2023
  • 📚 “تقييم أثر ممارسات التسويق الداخلي في تعزيز اليقظة الإستراتيجية لمنظمات الأعمال – دراسة ميدانية في المديرية العملية لاتصالات الجزائر بالجلفة-‎”
    • Authors: جعلاب الزهرة، قاسمي كريمة‎
    • Journal: دراسات اقتصادية
    • Volume & Issue: 16 (01), 187-205
    • Citations: Not available
    • Year: 2022
  • 📚 “واقع المسؤولية الاجتماعية والأخلاقية للمؤسسات العمومية الجزائرية في ظل الأوبئة العالمية كوفيد 19 نموذجا – دراسة تحليلية‎”
    • Authors: بعيرة فطوم، جعلاب الزهرة‎
    • Journal: تنمية الموارد البشرية
    • Volume & Issue: 16 (1), 147-171
    • Citations: Not available
    • Year: 2021
  • 📚 “ضرورة إدارة التغيير لمنظمات الأعمال من خلال تفعيل دور الثقافة التنظيمية‎”
    • Authors: الزهرة جعلاب‎
    • Journal: دراسات اقتصادية
    • Volume & Issue: 9 (1), 22-32
    • Citations: Not available
    • Year: 2020
  • 📚 “نحو التغيير الثقافي كمدخل حديث لتعزيز سلوكيات القيادة التحويلية في مديريات توزيع الكهرباء والغاز بالجزائر‎”
    • Authors: جعلاب الزهرة, هزرشي طارق, سعيد علي النعاس‎
    • Journal: مجلة العلوم الاقتصادية والتسيير والعلوم التجارية
    • Volume & Issue: 13 (1), 48-63
    • Citations: Not available
    • Year: 2020
  • 📚 “القيادة التحويلية ودورها في تمكين رأس المال الفكري لمواجهة مقاومة التغيير – دراسة ميدانية في المديرية العملية لاتصالات الجزائر بالجلفة-“
    • Authors: جعلاب الزهرة . زيد الخير ميلود .‎
    • Journal: مجلة دفاتر اقتصادية
    • Volume & Issue: 6 (2), 62-80
    • Citations: Not available
    • Year: 2015
  • 📚 “أثر الثقافة التنظيمية على إدارة التغيير: حالة شركة كهرباء إربد في الأردن”
    • Author: جعلاب، الزهرة بلقاسم بغداد
    • Journal: جامعة اليرموك
    • Year: 2009

Elnaz Yaghoubi | Energy | Best Researcher Award

Dr. Elnaz Yaghoubi | Energy | Best Researcher Award

Electrical and Electronics Engineering at karabuk university, Turkey

https://globalscholarawards.com/elnaz-yaghoubi-energy-best-researcher-award-24494/Elnaz Yaghoubi is a seasoned researcher with a notable career in both academia and industry. She has been leading research initiatives at PEDAR Group since 2023, focusing on innovative solutions for power systems and microgrids. Her work emphasizes enhancing the security, efficiency, and resilience of these systems through advanced methodologies. Elnaz’s professional background also includes significant experience in traffic monitoring and data support, as well as data network design, which complements her research efforts.

Professional Profile:

Education🎓 

Elnaz Yaghoubi’s educational background underpins her expertise in power systems and microgrid technologies. She has a comprehensive foundation in her field, supported by advanced degrees and specialized knowledge:

  • Current Pursuit: Elnaz is actively pursuing advanced research in her field through her current position as Principal Researcher at the Power Electrical Developing Advanced Research (PEDAR) Group.
  • Previous Education: Her previous education includes specialized training and experience in data networks and telecommunications, which she applied in her professional roles.

Professional Experience 💼

Elnaz Yaghoubi has a robust background in both academia and industry, which is evident from her professional experience and research publications. She currently serves as the Principal Researcher at the Power Electrical Developing Advanced Research (PEDAR) Group, a role she has held since 2023. This position signifies a leadership role in a research-focused environment, suggesting her capacity to guide complex projects and contribute to cutting-edge advancements in power systems and microgrid technologies.

Research Skill🔍

Elnaz Yaghoubi possesses a diverse set of research skills that are critical to her role and contributions:

  • Advanced Analytical Techniques: She employs sophisticated methods such as deep learning and model predictive control to address challenges in smart power microgrids.
  • Cybersecurity Expertise: Her research focuses on enhancing security in power systems, highlighting her skill in tackling contemporary issues related to cyber-attacks and data integrity.
  • Collaborative Research: Elnaz’s ability to collaborate with other experts, as seen in her co-authored publications, demonstrates her proficiency in working within multidisciplinary teams and contributing to high-impact research.

Award and Honor

Elnaz Yaghoubi’s achievements and contributions to her field have been recognized through various accolades and awards. Some highlights include:

  • Global Recognition: Her innovative research and leadership in power systems have earned her recognition in international research communities.
  • Emerging Achievements: Her papers and research have been well-received, with several notable publications under review in leading journals, reflecting her growing influence and reputation in her field.

Publications top noted📜

1. State-of-the-Art Review on Energy and Load Forecasting in Microgrids Using Artificial Neural Networks, Machine Learning, and Deep Learning Techniques

  • Authors: R. Wazirali, E. Yaghoubi, M.S.S. Abujazar, R. Ahmad, A.H. Vakili
  • Journal: Electric Power Systems Research
  • Volume/Page: 225, 109792
  • Year: 2023
  • Summary: This review explores the latest advancements in forecasting energy and load requirements in microgrids through artificial neural networks, machine learning, and deep learning techniques. The paper discusses various methodologies and their effectiveness in improving the accuracy of forecasts in microgrid systems.

2. The Role of Mechanical Energy Storage Systems Based on Artificial Intelligence Techniques in Future Sustainable Energy Systems

  • Authors: M. Khaleel, E. Yaghoubi, E. Yaghoubi, M.Z. Jahromi
  • Journal: International Journal of Electrical Engineering and Sustainable
  • Volume/Page: 01-31
  • Year: 2023
  • Summary: This paper investigates the impact of mechanical energy storage systems on sustainable energy systems, focusing on the integration of artificial intelligence techniques to enhance system efficiency and sustainability.

3. Triple-Channel Glasses-Shape Nanoplasmonic Demultiplexer Based on Multi-Nanodisk Resonators in MIM Waveguide

  • Authors: A.A. Faghani, E. Yaghoubi, E. Yaghoubi
  • Journal: Optik
  • Volume/Page: 237, 166697
  • Year: 2021
  • Summary: This research introduces a nanoplasmonic demultiplexer with a triple-channel glasses-shape configuration using multi-nanodisk resonators in a metal-insulator-metal (MIM) waveguide, aimed at advancing optical communication technologies.

4. Electric Vehicles in China, Europe, and the United States: Current Trend and Market Comparison

  • Authors: M. Khaleel, Y. Nassar, H.J. El-Khozondar, M. Elmnifi, Z. Rajab, E. Yaghoubi, et al.
  • Journal: International Journal of Electrical Engineering and Sustainable
  • Volume/Page: 1-20
  • Year: 2024
  • Summary: This article presents a comparative analysis of electric vehicle trends and market dynamics across China, Europe, and the United States, highlighting key factors influencing the adoption and development of electric vehicles.

5. Tunable Band-Pass Plasmonic Filter and Wavelength Triple-Channel Demultiplexer Based on Square Nanodisk Resonator in MIM Waveguide

  • Authors: A.A. Faghani, Z. Rafiee, H. Amanzadeh, E. Yaghoubi, E. Yaghoubi
  • Journal: Optik
  • Volume/Page: 257, 168824
  • Year: 2022
  • Summary: This study proposes a tunable band-pass plasmonic filter and a wavelength triple-channel demultiplexer utilizing a square nanodisk resonator in an MIM waveguide, contributing to the field of plasmonic devices and optical filtering.

6. Reducing the Vulnerability in Microgrid Power Systems

  • Authors: Z. Yusupov, E. Yaghoubi, V. Soyibjonov
  • Journal: Science and Innovation
  • Volume/Page: 2 (A5), 166-175
  • Year: 2023
  • Summary: This paper addresses strategies for minimizing vulnerabilities in microgrid power systems, focusing on enhancing resilience and security against potential disruptions.

7. A Systematic Review and Meta-Analysis of Artificial Neural Network, Machine Learning, Deep Learning, and Ensemble Learning Approaches in the Field of Geotechnical Engineering

  • Authors: E. Yaghoubi, E. Yaghoubi, A. Khamees, A.H. Vakili
  • Journal: Neural Computing and Applications
  • Volume/Page: 1-45
  • Year: 2024
  • Summary: This review provides a comprehensive analysis of various learning approaches applied to geotechnical engineering, including artificial neural networks, machine learning, deep learning, and ensemble learning, assessing their effectiveness and trends.

8. Controlling and Tracking the Maximum Active Power Point in a Photovoltaic System Connected to the Grid Using the Fuzzy Neural Controller

  • Authors: Z. Yusupov, E. Yaghoubi, E. Yaghoubi
  • Conference: 2023 14th International Conference on Electrical and Electronics Engineering
  • Year: 2023
  • Summary: This conference paper discusses the use of a fuzzy neural controller to manage and track the maximum active power point in photovoltaic systems integrated with the grid, aiming to improve energy efficiency and system performance.

9. Modeling and Control of Decentralized Microgrid Based on Renewable Energy and Electric Vehicle Charging Station

  • Authors: Z. Yusupov, N. Almagrahi, E. Yaghoubi, E. Yaghoubi, A. Habbal, D. Kodirov
  • Conference: World Conference on Intelligent Systems for Industrial Automation
  • Volume/Page: 96-102
  • Year: 2022
  • Summary: This paper presents a model and control strategy for decentralized microgrids incorporating renewable energy sources and electric vehicle charging stations, addressing challenges and solutions in integrated microgrid management.

10. A Systematic Review and Meta-Analysis of Machine Learning, Deep Learning, and Ensemble Learning Approaches in Predicting EV Charging Behavior

  • Authors: E. Yaghoubi, E. Yaghoubi, A. Khamees, D. Razmi, T. Lu
  • Journal: Engineering Applications of Artificial Intelligence
  • Volume/Page: 135, 108789
  • Year: 2024
  • Summary: This review explores predictive models for electric vehicle (EV) charging behavior using machine learning, deep learning, and ensemble learning approaches, evaluating their accuracy and applicability in forecasting charging patterns.