Aditta Chowdhury | IoT (Internet of Things) Analytics | Research Excellence Award

Mr. Aditta Chowdhury | IoT (Internet of Things) Analytics | Research Excellence Award

Chittagong University of Engineering and Technology | Bangladesh

Aditta Chowdhury is an electrical and electronic engineering researcher and academic whose work focuses on advancing biomedical signal processing, embedded systems, and sustainable energy technologies. He holds both a Bachelor of Science and a Master of Science in Electrical and Electronic Engineering from the Chittagong University of Engineering and Technology, graduating with top academic distinction. His professional journey includes teaching and research roles in reputed engineering institutions, where he has contributed to curriculum development, laboratory instruction, and collaborative research. His research experience spans FPGA-based biomedical signal processing, photoplethysmogram-driven cardiovascular and metabolic disease detection, multimodal physiological signal analysis, plasmonic biosensing, microgrid feasibility assessment, and low-power VLSI system design. He has published extensively in high-impact journals and international conferences, demonstrating expertise in hardware–software co-design, machine learning applications in healthcare, and emerging sensor technologies. His work has resulted in several innovative solutions, including cardiovascular disease classifiers, hypertension detection systems, EOG-based eye-movement processors, and microgrid sustainability assessments. He has received multiple academic scholarships and awards recognizing his exceptional academic performance and research accomplishments. Driven by a commitment to impactful scientific contribution, he aims to continue developing intelligent, efficient, and accessible engineering solutions through interdisciplinary research and innovation.

Profile : Google Scholar

Featured Publications

Chowdhury, A., Das, D., Eldaly, A.B.M., Cheung, R.C.C., & Chowdhury, M.H. (2024). “Photoplethysmogram-based heart rate and blood pressure estimation with hypertension classification.” IPEM–Translation, 100024.

Joy, J.D., Rahman, M.S., Rahad, R., Chowdhury, A., & Chowdhury, M.H. (2024). “A novel and effective oxidation-resistant approach in plasmonic MIM biosensors for real-time detection of urea and glucose in urine for monitoring diabetic and kidney disease.” Optics Communications, 573, 131012.

Chowdhury, A., Das, D., Hasan, K., Cheung, R.C.C., & Chowdhury, M.H. (2023). “An FPGA implementation of multiclass disease detection from PPG.”
IEEE Sensors Letters, 7(11), 1–4.

Islam, M.A., Chowdhury, A., Jahan, I., & Farrok, O. (2024). “Mitigation of environmental impacts and challenges during hydrogen production.”
Bioresource Technology, 131666.

Chowdhury, A., Das, D., Cheung, R.C.C., & Chowdhury, M.H. (2023). “Hardware/software co-design of an ECG–PPG preprocessor: A qualitative and quantitative analysis.”
Proceedings of the 2023 International Conference on Electrical, Computer and Communication Engineering, 9.

Fangdi Ye | Offshore Wind Power | Research Excellence Award

Mr. Fangdi Ye | Offshore Wind Power | Research Excellence Award

Zhejjiang Provincial Energy Group Company Ltd | China

Mr. Fundi is an accomplished energy-sector professional associated with Zhejiang Provincial Energy Group Company Ltd., where he contributes to the advancement of China’s offshore wind power initiatives. He holds an academic background in engineering and renewable energy management, building a solid foundation for his work in large-scale clean-energy development. Throughout his career, he has gained extensive experience in project planning, offshore infrastructure deployment, and strategic energy transition programs, working on initiatives that support regional sustainability goals and national carbon-neutral ambitions. His professional interests include offshore turbine technology, grid integration, marine environmental impact assessment, and the long-term scalability of renewable energy systems. Mr. Fundi has participated in collaborative research efforts with academic and industry partners, focusing on innovation in offshore wind operations and maintenance. He has been recognized within the sector for his contributions to technology modernization and efficiency improvements in coastal wind projects. His ongoing work reflects a commitment to accelerating the deployment of clean, reliable energy resources while promoting responsible environmental stewardship. Overall, Mr. Fundi’s career illustrates a forward-looking vision centered on renewable-energy innovation and the strategic development of China’s offshore wind power capabilities.

Profiles : Scopus | Orcid

Featured Publications

Xiao, T., Lian, J., Ye, F., Xiong, D., & Hao, X. (2024). Experimental and numerical study on motion characteristics of a bucket foundation during immersion process. Ocean Engineering. https://doi.org/10.1016/j.oceaneng.2024.117782

Ye, F., Lian, J., Xiao, T., Xiong, D., Wang, H., Guo, Y., & Shao, N. (2024). Behavior Analysis of a Bucket Foundation with an Offshore Wind Turbine during the In-Water Sinking Process. Journal of Marine Science and Engineering. https://doi.org/10.3390/jmse12030494

Ye, F., Lian, J., Xiong, D., Wang, H., Guo, Y., Wang, P., & Xiao, T. (2023). Effects of damping plate on the motion response of transport ships under waves. Applied Ocean Research. https://doi.org/10.1016/j.apor.2023.103507

Lian, J., Ye, F., Wang, P., Guo, Y., Wang, H., Xiao, T., & Xiong, D. (2023). Integrated transportation of offshore wind turbine and bucket foundation based on a U and K shaped assembled platform. Ocean Engineering. https://doi.org/10.1016/j.oceaneng.2023.114096

Ye, F.-D., Lian, J.-J., Guo, Y.-H., Wang, H.-J., Xiao, T.-R., Xiong, D.-Z., & Yu, T.-S. (2023). Stability Study on the Bucket Foundation with Multi-Compartment During the Floating-up Process Considering Air Compressibility. China Ocean Engineering. https://doi.org/10.1007/s13344-023-0081-8

Ashutosh K Giri | Engineering | Best Researcher Award

Dr. Ashutosh K Giri | Engineering | Best Researcher Award

Government Engineering College Bharuch | India

Dr. Ashutosh K. Giri is an Assistant Professor in the Department of Electrical Engineering at Government Engineering College, Bharuch, Gujarat, India, with over 20 years of teaching and research experience. He earned his Ph.D. from Sardar Vallabhbhai National Institute of Technology (SVNIT), Surat, focusing on control algorithms for power quality issues in wind-based distributed power generation systems. He also holds an M.E. in Electrical Engineering from L.D. College of Engineering, Gujarat University, and a B.Tech in Electrical Engineering from G.B. Pant University of Agriculture and Technology, Pantnagar. Dr. Giri’s research interests include renewable energy power converters, microgrid topology, operation and control, power quality enhancement, electric vehicle technologies, and adaptive control algorithms. He has published extensively in leading journals including IEEE, IET, Springer, Wiley, Elsevier, and Taylor & Francis, authored and edited multiple international books, and contributed to state- and national-level funded research projects. His work has been cited 478 times across 234 documents, with an h-index of 14, reflecting his significant impact in the field. Recognized among the top 2% of scientists globally, Dr. Giri continues to advance research and innovation in distributed generation systems and renewable energy, mentoring students and contributing to the scientific community through high-quality research and academic leadership.

Profiles : Scopus Orcid | Google Scholar

Featured Publications

Joshi, D., Deb, D., & Giri, A. K. (2025). “Metaheuristic adaptive input output feedback linearization control for BLDC motor drive” in IEEE Transactions on Consumer Electronics.

Kanojia, S. S., Suthar, B. N., & Giri, A. K. (2025). “Hybrid optimization approach for optimal location of electric vehicle charging station (EVCS) in distribution network considering voltage stability” in Smart Grids and Sustainable Energy.

Kundu, S., Giri, A. K., & Kadiyan, S. (2025). “An adaptive mixed-step size normalized least means fourth control approach for stand-alone power generation system considering dynamic conditions” in IEEE Journal of Emerging and Selected Topics in Power Electronics.

Bhatt, K. A., Bhalja, B. R., & Giri, A. K. (2024). “Controlled single-phase auto-reclosing technique for shunt reactor compensated lines in electrical energy systems transmission lines” in International Journal of Ambient Energy.

Parmar, D. B., & Giri, A. K. (2024). “Integration of field-oriented and steady-state linear Kalman filter control in PMSG-based grid-connected system for improving voltage control and power balance operation” in Electrical Engineering.

Emerald Henry – Energy Optimization – Best Researcher Award 

Mr. Emerald Henry - Energy Optimization - Best Researcher Award 

Covenant University - Nigeria

Author Profile

Early Academic Pursuits

Mr. Emerald Henry embarked on an academic journey rooted in mechanical engineering, obtaining a Bachelor's degree from Covenant University, Nigeria. During this period, Emerald's curiosity for the intersection of engineering and data science began to flourish. For the final year project, Emerald delved into multiple approaches to model the power curve of wind turbines, culminating in the development of a state-of-the-art deep learning model. This project not only showcased Emerald's technical prowess but also resulted in a published work, underscoring the impact of the research on renewable energy technologies.

Professional Endeavors

Mr. Emerald Henry's professional career is marked by a diverse array of roles that span across multiple domains of artificial intelligence and machine learning. Currently serving as a Fullstack AI Engineer at TechWave, Emerald spearheads the development of an Autonomous Course Generator, a groundbreaking tool designed to revolutionize skill acquisition. This involves the creation of AI agents capable of curating comprehensive courses tailored to various expertise levels based on user inputs. The integration of multiple AI modules, such as course structure generators and learning video transcript generators, highlights Emerald's ability to streamline complex processes and enhance educational technologies.

Prior to joining TechWave, Emerald contributed significantly as a Data Science & ML Tutor at LCA, where the focus was on natural language processing (NLP) and the deployment of language models from HuggingFace, Google, and OpenAI. The role also involved developing AI agents and chatbots, further honing skills in MLOps practices and the orchestration of machine learning pipelines using Kubeflow.

Contributions and Research Focus

Mr. Emerald's contributions to the field of AI and ML are extensive, particularly in the healthcare sector. As a Data Scientist at Clinton Health, Emerald led the development of healthcare databases tailored for the Nigerian National Healthcare Sector. This role entailed conducting exploratory data analysis (EDA) and designing dashboards that facilitated data-driven decision-making. The creation of HTML-based tools to streamline healthcare data collection further exemplified Emerald's innovative approach to solving real-world problems.

In the realm of medical imaging, Emerald's tenure as an AI Researcher at Covenant University involved investigating fine-tuning foundation CNN models for the automated diagnosis of lesions and cancer from medical images. This research extended to exploring the application of hybrid vision transformers for classification, segmentation, and reconstruction tasks, contributing to the advancement of medical diagnostic tools. Techniques such as federated learning, contrastive learning, and knowledge distillation were leveraged, resulting in published work on their applications in medical imaging.

Accolades and Recognition

Mr. Emerald Henry's academic and professional journey is punctuated with notable accolades and recognition. The published works on vision transformers in medical imaging, fault detection in wind turbines, and neural network-based power curve models have garnered attention in the research community. These publications reflect Emerald's commitment to advancing the field through rigorous research and innovative applications of machine learning technologies.

Impact and Influence

Mr. Emerald's work has had a profound impact on multiple sectors, from education and healthcare to renewable energy. The development of the Autonomous Course Generator at TechWave has the potential to transform the way skills are acquired, making education more accessible and personalized. In healthcare, the databases and analytical tools developed have enhanced data-driven decision-making, ultimately improving patient outcomes. The innovations in wind turbine fault detection and energy forecasting contribute to the efficiency and reliability of renewable energy sources.

Legacy and Future Contributions

Looking ahead, Emerald Henry is poised to continue making significant contributions to the field of AI and ML. The ongoing projects and research initiatives demonstrate a commitment to leveraging technology for social good. Future endeavors may include further advancements in educational technologies, more sophisticated healthcare analytics tools, and continued innovation in renewable energy solutions.

Emerald's legacy will be defined by a relentless pursuit of excellence and a dedication to harnessing the power of AI to address complex challenges across various domains. The combination of technical expertise, innovative thinking, and a commitment to impactful research ensures that Emerald's contributions will continue to resonate in the field of artificial intelligence and beyond.

Notable Publication

 

Marianna Rotilio – Machine learning for Buildings – Best Researcher Award 

Prof. Marianna Rotilio - Machine learning for Buildings - Best Researcher Award 

University of L'Aquila - Italy

Author Profile

Early Academic Pursuits

Prof. Marianna Rotilio's academic journey began with her Scientific High School Diploma from the Andrea Bafile Scientific High School in L'Aquila, Italy, where she achieved a perfect score of 100/100. This strong foundation laid the groundwork for her future endeavors in academia. She went on to pursue a five-year degree in Building-Architectural Engineering at the University of L'Aquila, graduating with top honors and a score of 110/110 in 2005. Her thesis titled "Recupero e Sostenibilità. Caso di studio: Civitaretenga" exemplified her early interest in sustainable architecture and restoration.

In 2006, Marianna embarked on a collaborative journey with various prestigious institutions, including the University of Pavia and the University of Rome "La Sapienza", as part of her research doctorate in EU Building-Architecture. This collaborative approach marked the beginning of her interdisciplinary approach to research, a characteristic that would define her future academic pursuits.

Professional Endeavors

Prof. Marianna's professional journey is marked by a series of research grants and appointments that underscore her expertise in sustainable building practices and architectural heritage preservation. Her involvement in projects such as the PRIN 2009 project on "Dry technologies for energy recovery and requalification" and the development of strategic plans for student housing demonstrates her commitment to addressing real-world challenges through research.

Her engagement as a contract lecturer and participation in international research groups further enriched her professional repertoire, allowing her to contribute to the academic community while also staying connected to practical applications of her research.

Contributions and Research Focus

Throughout her career, Marianna's research has focused on several key areas, including spatial planning and post-earthquake reconstruction, the study of building components, public lighting efficiency, and the redevelopment of historical buildings. Her interdisciplinary approach, combining elements of architecture, engineering, and sustainability, has led to impactful contributions in each of these domains.

Her work on developing guidelines for energy-efficient renovation of historical buildings and her research on the hygrothermal behavior of ancient walls have been particularly noteworthy. These contributions have not only advanced the field of sustainable architecture but also provided practical insights for policymakers and practitioners involved in heritage conservation and urban planning.

Accolades and Recognition

Prof. Marianna's dedication to research and academic excellence has been recognized through various accolades and appointments, including her qualifications as both a first-level and second-level university professor in the Design and Technological Planning of Architecture sector. Her involvement in prestigious research projects funded by entities such as Horizon Europe and the European CBHE Program speaks to the high regard in which her expertise is held within the academic community.

Impact and Influence

Prof. Marianna's research has had a significant impact on both academia and practice. By addressing pressing challenges such as energy efficiency in historical buildings and sustainable urban development, she has contributed to advancing knowledge in these areas while also informing real-world decision-making processes. Her collaborations with international research groups and her role as a founding partner of a university spin-off further underscore her influence within the academic and professional spheres.

Legacy and Future Contributions

As Marianna continues her academic journey, her legacy is one of interdisciplinary collaboration, innovative research, and a commitment to sustainability in the built environment. Her future contributions are likely to further shape the field of architectural engineering, with a focus on addressing emerging challenges such as climate change and urbanization. By inspiring future generations of researchers and practitioners, Marianna is poised to leave a lasting impact on the field for years to come.

Notable Publication

 

Pardha Saradhi Maram – Smart Batteries – Best Researcher Award 

Dr. Pardha Saradhi Maram - Smart Batteries - Best Researcher Award 

SRM University AP - India

Author Profile

Early Academic Pursuits

Dr. Pardha Saradhi Maram embarked on his academic journey with a strong foundation in chemistry, earning his Bachelor of Science degree from Acharya Nagarjuna University in 2002. He then pursued a Master of Science in Inorganic Chemistry from Andhra University in 2004, deepening his understanding of chemical principles. His academic pursuits culminated in a Ph.D. in Solid State/Materials Chemistry from the prestigious Indian Institute of Technology Madras in 2010. Under the guidance of Prof. U.V. Varadaraju, he delved into the intricate realm of solid-state materials, focusing on the synthesis and characterization of polyanionic network solids and their photoluminescent properties.

Professional Endeavors

Dr. Maram's professional journey has been marked by a seamless blend of academic rigor and industrial application. Following his doctoral studies, he ventured into the realm of postdoctoral research at the University of California, Davis, under the mentorship of Prof. Alexandra Navrotsky. Here, he honed his expertise in experimental thermochemistry, laying the groundwork for his future endeavors. His contributions to the Peter A. Rock Thermochemistry Laboratory solidified his reputation as a meticulous researcher with a keen eye for detail.

Transitioning to the industrial landscape, Dr. Maram served as a Material Scientist at Clean Diesel Technology Inc., where he spearheaded innovations in emission control technology. His role as the head of the diesel oxidation catalyst division underscored his leadership prowess and his ability to translate academic insights into real-world solutions.

Contributions and Research Focus

Dr. Maram's research pursuits have revolved around elucidating the intricate interplay between microscopic structure features and macroscopic thermodynamic behavior in complex functional materials. His pioneering work encompasses a diverse array of domains, including environmental protection, energy conversion, and catalysis. Noteworthy contributions include the development of novel mixed metal oxide catalysts for emission control systems, high-temperature reaction calorimetry techniques, and advancements in battery electrode materials.

His research endeavors have not only expanded the frontiers of scientific knowledge but have also held profound implications for addressing pressing global challenges such as climate change and energy sustainability. By delving into the fundamental mechanisms governing material properties, Dr. Maram has laid a solid foundation for the development of next-generation technologies with enhanced efficiency and sustainability.

Accolades and Recognition

Dr. Maram's scholarly achievements have been duly recognized through a myriad of accolades and awards. His receipt of the Young Scientist Award from the Department of Science and Technology (DST) in 2010 stands as a testament to his early promise and scholarly prowess. Furthermore, his exemplary doctoral thesis earned him the prestigious Alfred Werner Best Thesis Award in the Department of Inorganic & Analytical Chemistry at the Indian Institute of Technology Madras.

Membership in esteemed organizations such as the Indian Academy of Sciences further underscores his standing as a luminary in the field of chemistry. Dr. Maram's prolific publication record, coupled with a significant citation impact, attests to the far-reaching influence of his scholarly contributions.

Impact and Influence

Dr. Maram's interdisciplinary research endeavors have left an indelible mark on both academia and industry. His collaborative ethos and penchant for innovation have catalyzed advancements across diverse domains, ranging from materials science to environmental engineering. By bridging the gap between fundamental research and practical applications, he has facilitated the translation of scientific discoveries into tangible solutions with real-world impact.

Legacy and Future Contributions

As Dr. Maram continues to chart new frontiers in the realm of materials chemistry, his legacy as a trailblazer and innovator grows evermore pronounced. His unwavering commitment to excellence, coupled with a visionary outlook, ensures that his contributions will resonate far into the future. By inspiring the next generation of researchers and fostering interdisciplinary collaborations, he remains steadfast in his pursuit of scientific excellence and societal impact.

Citations

A total of 1052 citations for his publications, demonstrating the impact and recognition of her research within the academic community.

 

Amir Abd Latif – Energy and Utilities Analytics Award – Best Researcher

Mr. Amir Abd Latif - Energy and Utilities Analytics Award - Best Researcher

Universiti Putra - Malaysia

Author Profile

Early Academic Pursuits

Mr. Amir Bin Abd Latif embarked on his academic journey with a fervent passion for Mechanical Engineering. His dedication and pursuit of knowledge led him to pursue a Bachelor's degree at Universiti Teknologi Mara (UiTM). Graduating with Second Class (Upper) honors, he demonstrated a strong academic foundation and a thirst for exploration within the field. Subsequently, he continued his education at the same institution, undertaking a Master's degree focusing on the development of optical tactile sensors for robotic-assisted surface characterization. This research marked his early foray into innovation and laid the groundwork for his future contributions in materials and applied sciences.

Professional Endeavors

Mr. Amir's professional journey reflects a diverse range of experiences, from serving as a Research Assistant at Universiti Putra Malaysia (UPM) to holding engineering roles at Pakar Engineering & System Sdn Bhd and Fukuyama Engineering Sdn Bhd. These positions provided him with invaluable insights into practical applications and engineering analysis, enriching his academic pursuits with real-world perspectives. His seven years of total experience underscore a commitment to continuous growth and development within the field of Mechanical Engineering.

Contributions and Research Focus

In his research endeavors, particularly during his PhD studies at UPM, Amir has made significant contributions to the advancement of composite materials and mechanical engineering applications. His focus on enhancing pultruded glass fiber reinforced polymer composite (PGFRPC) with a honeycomb sandwich structure for transmission tower cross-arms exemplifies his innovative approach to tackling critical industry challenges. Additionally, his work on developing novel automated techniques for optical tactile sensors expands the capabilities of tactile sensors, particularly in robotic manipulation, showcasing his interdisciplinary research interests.

Accolades and Recognition

Mr. Amir's contributions to research and innovation have not gone unnoticed, as evidenced by numerous accolades and recognition received throughout his career. With publications in esteemed journals and presentations at conferences, he has garnered respect within the academic community for his research prowess. Moreover, his involvement in notable competitions and editorial appointments in journals further underscore his commitment to academic and professional excellence.

Impact and Influence

The impact of Amir's research extends beyond academia, with practical implications for industry and society. His work on enhancing transmission tower technology offers potential cost savings and increased lifespan, contributing to the sustainability and reliability of power infrastructure. Furthermore, his advancements in tactile sensor technology pave the way for more precise and efficient robotic interactions, with implications for various fields such as manufacturing, healthcare, and automation.

Legacy and Future Contributions

As Amir continues to make strides in the field of Mechanical Engineering, his legacy is characterized by a dedication to advancing knowledge and technology for the betterment of society. His interdisciplinary approach, bridging materials science, robotics, and engineering, sets a precedent for future researchers to follow. Looking ahead, he envisions further innovation in composite materials, robotics, and sensor technologies, with a focus on addressing pressing challenges and driving positive change in the world.

In summary, Amir Bin Abd Latif's journey from his early academic pursuits to his current professional endeavors is marked by a relentless pursuit of excellence, innovation, and impact. His contributions to research and development in Mechanical Engineering stand as a testament to his dedication and vision for a brighter, more sustainable future.

Haoming Ma – Energy and Utilities Analytics Award – Best Researcher

Dr. Haoming Ma - Energy and Utilities Analytics Award - Best Researcher Award

University of Texas at Austin - United States

Author Profile

Early Academic Pursuits

Dr. Haoming Ma's academic journey started with a Bachelor of Science degree in Energy Engineering with minors in Environmental Engineering and Energy Business and Finance from Pennsylvania State University in 2018. During his undergraduate studies, he demonstrated a keen interest in interdisciplinary fields, laying the foundation for his future endeavors. He pursued further education with a Master of Science in Energy and Mineral Engineering from Pennsylvania State University in 2019, where he explored the impact of blackout cost recovery on stock behavior among electric utilities. This research showcased his early aptitude for integrating economic analysis with energy systems.

Building upon his master's research, Haoming pursued a Ph.D. in Chemical and Petroleum Engineering at the University of Calgary. Under the mentorship of Dr. Zhangxing Chen and Dr. Sean T. McCoy, he delved into data-driven carbon dioxide enhanced oil recovery models, marking his transition into more specialized and impactful research areas.

Professional Endeavors

Dr. Haoming's professional journey has been characterized by diverse experiences across academia and industry. He has held various roles, including postdoctoral fellowships at the University of Calgary and the University of Texas at Austin, where he worked on energy emissions modeling, data analytics, and life-cycle assessments. His research contributions have spanned topics such as CO2 capture, utilization, and sequestration, reservoir simulation, and machine learning applications in energy systems.

Throughout his career, Haoming has actively engaged in teaching and mentoring activities, emphasizing interdisciplinary education in engineering and economics. His teaching endeavors include courses in Energy & Environmental Engineering and Energy Economics, demonstrating his commitment to nurturing the next generation of energy leaders.

Contributions and Research Focus On Energy and Utilities Analytics

Dr. Haoming's research focuses on integrating system modeling, data analytics, economic analysis, and policy evaluation to address economic and environmental challenges in energy systems and climate change mitigation. He has pioneered the development of AI-powered integrated frameworks for evaluating economic and environmental trade-offs in geological gas and energy storage. His work has laid the scientific groundwork for technology development and policy formulation towards environmental sustainability and carbon neutrality.

His specific research interests encompass reservoir simulation, system-level modeling and optimization, machine learning applications, techno-economic analysis, and life cycle assessment, with applications ranging from CO2 capture and storage to hydrogen production and storage.

Accolades and Recognition

Throughout his academic and professional journey, Haoming has garnered numerous accolades and recognition for his outstanding contributions. Notable awards include the Alberta Graduate Excellence Scholarship, Chemical & Petroleum Engineering Graduate Excellence Award, and Outstanding Graduate Teaching Assistant Award. His research has been recognized through prestigious conference presentations, peer-reviewed publications, and ongoing collaborations with leading institutions and researchers.

Impact and Influence

Dr. Haoming's research and academic pursuits have made a significant impact on advancing knowledge in energy systems, climate change mitigation, and interdisciplinary education. His innovative approaches to addressing complex energy and environmental challenges have contributed to shaping policy decisions and technological advancements in the energy industry. Through his teaching and mentoring efforts, he has inspired and equipped future generations to tackle the pressing issues of energy sustainability and environmental stewardship.

Legacy and Future Contributions

Looking ahead, Haoming Ma's legacy lies in his interdisciplinary approach to addressing pressing energy and environmental challenges. His continued contributions to research, education, and policy formulation are poised to shape the trajectory of the energy industry towards a sustainable and resilient future. With a focus on innovation, collaboration, and impact, Haoming remains dedicated to advancing knowledge and fostering positive change in the global energy landscape.

Citations

  • Citations   106
  • h-index       5
  • i10-index    5

Notable Publication

 

Haoming Ma – Renewable Energy System Analysis Award – Young Scientist

Dr. Haoming Ma - Renewable Energy System Analysis Award - Young Scientist Award

University of Texas at Austin - United States

Author Profile

Early Academic Pursuits

Dr. Haoming Ma's academic journey started with a Bachelor of Science degree in Energy Engineering with minors in Environmental Engineering and Energy Business and Finance from Pennsylvania State University in 2018. During his undergraduate studies, he demonstrated a keen interest in interdisciplinary fields, laying the foundation for his future endeavors. He pursued further education with a Master of Science in Energy and Mineral Engineering from Pennsylvania State University in 2019, where he explored the impact of blackout cost recovery on stock behavior among electric utilities. This research showcased his early aptitude for integrating economic analysis with energy systems.

Building upon his master's research, Haoming pursued a Ph.D. in Chemical and Petroleum Engineering at the University of Calgary. Under the mentorship of Dr. Zhangxing Chen and Dr. Sean T. McCoy, he delved into data-driven carbon dioxide enhanced oil recovery models, marking his transition into more specialized and impactful research areas.

Professional Endeavors

Dr. Haoming's professional journey has been characterized by diverse experiences across academia and industry. He has held various roles, including postdoctoral fellowships at the University of Calgary and the University of Texas at Austin, where he worked on energy emissions modeling, data analytics, and life-cycle assessments. His research contributions have spanned topics such as CO2 capture, utilization, and sequestration, reservoir simulation, and machine learning applications in energy systems.

Throughout his career, Haoming has actively engaged in teaching and mentoring activities, emphasizing interdisciplinary education in engineering and economics. His teaching endeavors include courses in Energy & Environmental Engineering and Energy Economics, demonstrating his commitment to nurturing the next generation of energy leaders.

Contributions and Research Focus On Renewable Energy System Analysis Award

Dr. Haoming's research focuses on integrating system modeling, data analytics, economic analysis, and policy evaluation to address economic and environmental challenges in energy systems and climate change mitigation. He has pioneered the development of AI-powered integrated frameworks for evaluating economic and environmental trade-offs in geological gas and energy storage. His work has laid the scientific groundwork for technology development and policy formulation towards environmental sustainability and carbon neutrality.

His specific research interests encompass reservoir simulation, system-level modeling and optimization, machine learning applications, techno-economic analysis, and life cycle assessment, with applications ranging from CO2 capture and storage to hydrogen production and storage.

Accolades and Recognition

Throughout his academic and professional journey, Haoming has garnered numerous accolades and recognition for his outstanding contributions. Notable awards include the Alberta Graduate Excellence Scholarship, Chemical & Petroleum Engineering Graduate Excellence Award, and Outstanding Graduate Teaching Assistant Award. His research has been recognized through prestigious conference presentations, peer-reviewed publications, and ongoing collaborations with leading institutions and researchers.

Impact and Influence

Dr. Haoming's research and academic pursuits have made a significant impact on advancing knowledge in energy systems, climate change mitigation, and interdisciplinary education. His innovative approaches to addressing complex energy and environmental challenges have contributed to shaping policy decisions and technological advancements in the energy industry. Through his teaching and mentoring efforts, he has inspired and equipped future generations to tackle the pressing issues of energy sustainability and environmental stewardship.

Legacy and Future Contributions

Looking ahead, Haoming Ma's legacy lies in his interdisciplinary approach to addressing pressing energy and environmental challenges. His continued contributions to research, education, and policy formulation are poised to shape the trajectory of the energy industry towards a sustainable and resilient future. With a focus on innovation, collaboration, and impact, Haoming remains dedicated to advancing knowledge and fostering positive change in the global energy landscape.

Citations

  • Citations   106
  • h-index       5
  • i10-index    5

Notable Publication