Denmark – PhD in Power System Control at Technical University of Denmark

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Shire Of Denmark, Österreich PhDFinder Vollzeit

Denmark – PhD in Power System Control at Technical University of Denmark 5 days ago  Be among the first 25 applicants University: Technical University of DenmarkCountry: DenmarkDeadline: Fields: Electrical Engineering, Power Systems, Control Systems, Renewable Energy, Energy Systems Engineering Are you passionate about advancing the global transition to green energy and eager to contribute to the future of renewable power systems? Do you want to be at the forefront of developing innovative control architectures for hybrid power plants, shaping the sustainable energy landscape of tomorrow? Denmark, renowned for its leadership in wind energy and green technology, offers an exceptional opportunity for aspiring researchers to join the Technical University of Denmark (DTU) as a PhD student in “Power System Support from Hybrid Power Plants via Technology-Agnostic Control Architecture.” This fully funded position is part of the prestigious WindConnect European Doctoral Network, providing a unique platform for international collaboration and professional growth. About The University or Research Institute The Technical University of Denmark (DTU) stands as one of the leading technical universities worldwide, celebrated for its excellence in research, education, innovation, and scientific advice. Located in the city of Roskilde, DTU Wind and Energy Systems is at the heart of Europe’s renewable energy revolution, offering access to state-of-the-art research infrastructure, including a fully controllable MW-scale hybrid power plant on campus. The university fosters an international and collaborative environment, where academic freedom, collegial respect, and responsibility underpin its pursuit of scientific excellence. Denmark itself is a global pioneer in sustainable energy solutions, consistently ranking among the best countries for quality of life, work‑life balance, and innovation. International researchers benefit from Denmark’s supportive work culture, vibrant academic community, and access to a thriving green technology sector. DTU provides comprehensive support for international staff, including relocation seminars and guidance on living and working in Denmark, making it an ideal location for launching an impactful research career. Research Topic and Significance The research focuses on the development of advanced methods for modeling and controlling renewable hybrid power plants (HPPs) that integrate wind, solar, and battery storage technologies. As the world accelerates its transition to renewable energy sources, the complexity of modern power systems increases, posing significant challenges in system integration, control, and reliability. Hybrid power plants—combining multiple renewable sources behind a single grid connection—offer enhanced value to both plant owners and the power grid by providing flexible, reliable, and efficient energy services. However, traditional control architectures often struggle to coordinate these diverse assets, leading to inefficiencies and operational challenges. This PhD project aims to design a technology-agnostic, two-layer control architecture that streamlines operations, reduces communication delays, and improves the interoperability and adaptability of HPPs. By addressing these challenges, the research will contribute to Europe’s leadership in green energy, support the decarbonization of power systems, and help meet ambitious climate targets. Project Details The PhD position is funded through the European Union’s Horizon 2020 Marie Skłodowska-Curie Actions programme, as part of the WindConnect Doctoral Network. The RES section at DTU Wind and Energy Systems leads this multidisciplinary initiative, collaborating with top universities and industry partners across Europe and beyond. Key Features Of The Project Include Enrollment in a 36‑month PhD programme with full employment benefits. Participation in a network of 15 doctoral researchers working on the design, modeling, control, and techno‑economic optimization of wind turbines, wind farms, and HPPs. Access to cutting‑edge technical, entrepreneurial, and soft‑skill training. Industrial secondments, co‑supervision, and networking with leading research institutes and industry partners. Opportunities for external research stays (6–9 months) at partner institutions. Engagement with the IEA Wind Task 50 on Hybrid Power Plants. Responsibilities include modeling, simulation, controller development, performance analysis, publication of research findings, teaching assistance, and co‑supervision of MSc theses. Candidate Profile The Ideal Candidate Will Have A Master’s degree (or equivalent, 120 ECTS) in power system engineering, electrical engineering, control systems, or a closely related field. A solid foundation in power system dynamics, converter control, and control theory. Experience with modeling and simulation of energy systems (e.g., MATLAB/Simulink, Python). Familiarity with renewable energy technologies such as wind, solar PV, and battery storage. Understanding of converter‑based generation systems and grid integration. Strong analytical and independent research skills. Proficiency in written and verbal English. Ability to work collaboratively across disciplines and cultures. Eligibility Criteria Must not already hold a doctoral degree at the time of recruitment. Less than four years of full‑time research experience following the qualifying degree. Must not have resided or carried out the main activity (work or studies) in Denmark for more than 12 months in the past 36 months prior to recruitment. Admission to the PhD program at DTU is required, subject to academic approval and fulfillment of DTU’s enrolment requirements. Application Process To apply, candidates must submit a complete online application by 7 December 2025 (23:59 Danish time). Application materials (in English, as a single PDF) should include: Cover letter (motivation for application) Curriculum vitae Grade transcripts and BSc/MSc diploma (with grading scale) 1‑page research statement (max 500 words), including achievements, methodologies, and objectives relevant to the PhD project Applicants may apply before obtaining the Master’s degree but cannot begin the position without it. Applications received after the deadline will not be considered. For further details and to apply, please visit the official job posting: Conclusion This is a unique opportunity to join a world‑class research environment at the Technical University of Denmark and contribute to groundbreaking advancements in renewable energy systems. If you are motivated to make a real impact in the field of green energy and meet the eligibility criteria, you are strongly encouraged to apply. We’re an independent team helping students find opportunities. #J-18808-Ljbffr



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