Dr. Cedric Worthmann | Strategic Leadership | Best Researcher Award

Dr. Cedric Worthmann | Strategic Leadership | Best Researcher Award

Caribbean Utilities Company Ltd | Cayman Islands

Cedric Worthmann is a dynamic leader in business development, engineering, and energy planning with over a decade of experience in advancing energy efficiency, renewable integration, and strategic planning across the utility sector. Currently serving as Director of Business Development, Engineering, and Planning at Caribbean Utilities Company, he leads energy transition initiatives, renewable adoption, and infrastructure modernization in alignment with national energy policy and integrated resource planning. Previously, he served as Business Development Manager at Eskom Holdings in South Africa, where he spearheaded energy efficiency strategies, customer retention programs, renewable integration, and large-scale demand-side management projects. His career demonstrates expertise in strategic forecasting, project management, and regulatory alignment, with strong emphasis on optimizing energy systems to enhance customer value and sustainability. He has also played a pivotal role in establishing project management frameworks, developing design and construction standards for generation, transmission, and distribution, and promoting innovative energy solutions. His professional interests lie in renewable energy integration, demand-side management, sustainable power planning, and emerging energy technologies. With a proven record of leading cross-functional teams and delivering impactful projects, Cedric continues to drive innovation and efficiency in the energy sector, contributing to the global transition toward cleaner, smarter, and more resilient energy systems.

Profile:  ORCID

Featured Publications

Worthmann, C. A. (2025). Oversight methodologies for artificial intelligence implementation in the energy sector [Doctoral dissertation, SSBM Geneva]. Digital Repository of Theses.

Worthmann, C. A., & Malik, K. (2025, August 28). Comprehensive and comparative analysis of AI in the energy sector. AI and Ethics. Advance online publication.

Worthmann, S., Dintchev, O., & Worthmann, C. (2017, April). South African low pressure solar water heating mass rollout program and its impacts on carbon. Energy Engineering, 114(2), 7–27.

Worthmann, C. A. (2001). Feasibility study of a neural network current controller for a boost rectifier [Master’s thesis,

Mr. Kasra Shafiei Power System Resilience | Best Researcher Award

Mr. Kasra Shafiei Power System Resilience | Best Researcher Award

University of tabriz, Iran

Profile

Google Scholar

Early Academic Pursuits 🎓

Kasra Shafiei’s academic journey began in Tabriz, Iran, where his passion for engineering and technology took root. As an inquisitive student, he excelled in scientific subjects, particularly in mathematics and physics, which laid the foundation for his future endeavors. His early education equipped him with the analytical and problem-solving skills necessary to navigate the complexities of electrical engineering and energy systems. Driven by curiosity and an eagerness to explore innovative solutions, he pursued higher education at the University of Tabriz, where he further honed his technical expertise.

Professional Endeavors 🌍

Kasra Shafiei has established himself as a dedicated professional in the fields of energy systems, renewable energy integration, and carbon emission management. His work in optimizing power distribution and enhancing energy resilience has contributed significantly to the development of more sustainable and efficient energy solutions. With proficiency in software tools such as Cytoscape, MATLAB, and Python, he has engaged in complex modeling and analysis to drive advancements in the field.

Beyond academic research, he has contributed as a Teaching Assistant, imparting knowledge to aspiring engineers and researchers. His role as a reviewer for international journals and conferences further highlights his active engagement with the global academic community. By critically evaluating research submissions, he plays a crucial role in maintaining the quality and rigor of scholarly publications in his field.

Contributions and Research Focus 🏰

Kasra Shafiei’s research primarily revolves around the integration of renewable energy resources, battery energy storage systems, and demand response mechanisms. His published journal papers reflect his commitment to addressing the challenges associated with energy management and sustainability. His study, published in The Journal of Engineering, explores strategies for efficiently managing power generation while minimizing carbon emissions. By leveraging renewable resources and storage technologies, the research presents viable solutions for reducing environmental impact. Another notable contribution, published in Journal of Energy Storage, emphasizes the importance of resilience in energy networks, particularly in integrating renewable sources and storage solutions to ensure stability and efficiency.

His work is crucial in the transition toward greener energy solutions, contributing to policy-making and the development of sustainable infrastructures worldwide. His deep understanding of energy storage systems and their integration into existing power grids makes his research valuable in addressing modern challenges in energy security and environmental sustainability.

Accolades and Recognition 🏆

Kasra Shafiei’s contributions have not gone unnoticed. His exceptional academic performance and research initiatives earned him the Outstanding Talent Recognition from the University of Tabriz, a testament to his dedication and intellectual prowess. Additionally, his expertise has led him to serve as a reviewer for international journals and conferences, where he evaluates groundbreaking research and contributes to the advancement of the field.

His certification in HSE Training from the University of Tabriz and his UTEPT (University of Tehran English Proficiency Test) qualification further demonstrate his commitment to professional and linguistic development, equipping him with essential skills to communicate his research on a global scale.

Impact and Influence 🌐

Through his research and professional engagements, Kasra Shafiei has made a meaningful impact in the field of energy systems. His work on optimizing renewable energy integration and carbon management has implications for both academic research and industry applications. As a thought leader, he actively contributes to discussions on sustainable energy, providing insights that shape future technologies and policies.

His role as a Teaching Assistant has also enabled him to mentor and inspire students, fostering the next generation of engineers and researchers. By sharing his expertise and experiences, he empowers young minds to pursue innovative solutions for pressing global challenges.

Legacy and Future Contributions ✨

Looking ahead, Kasra Shafiei is poised to continue his influential work in renewable energy and power system optimization. With an unwavering commitment to sustainability and technological advancement, he aims to further explore the integration of smart grid technologies to enhance energy efficiency. He is also deeply interested in analyzing the economic and environmental impacts of large-scale renewable energy adoption and developing AI-driven models for energy demand forecasting and optimization.

His vision extends beyond academic research, encompassing real-world applications that can drive sustainable development and energy security. As an emerging leader in his field, his legacy will be defined by his contributions to cleaner, more resilient energy systems that benefit future generations.

📝Notable Publications

Planning for a Network System with Renewable Resources and Battery Energy Storage, Focused on Enhancing Resilience

Author: K. Shafiei, S.G. Zadeh, M.T. Hagh
Journal: Journal of Energy Storage
Year: 2024

Integration of Wind Farm, Energy Storage, and Demand Response for Optimum Management of Generation and Carbon Emission

Author: K. Shafiei, M. Tarafdar Hagh, A. Seifi
Journal: The Journal of Engineering
Year: 2024

Optimal Generation and Reduce Carbon Emissions Through the Integration of Wind Turbine, Battery Energy Storage Systems, and Demand Response

Author: K. Shafiei, A. Seifi, M.T. Hagh
Journal: 2024 28th International Electrical Power Distribution Conference (EPDC)
Year: 2024

A Novel Multi-Objective Optimization Approach for Resilience Enhancement Considering Integrated Energy Systems with Renewable Energy, Energy Storage, Energy Sharing, and Demand

Author: K. Shafiei, A. Seifi, M.T. Hagh
Journal: Journal of Energy Storage
Year: 2024