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with colleagues. Who we are The Group of Integrated Photonics at Aarhus University studies how light can be generated and controlled on chips. Our work combines modelling, nonlinear optics, device design
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largely undeveloped. Addressing this challenge will be the central objective of your PhD research. Responsibilities and qualifications You will develop a physics-based modelling framework for bearingless
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estimation, and performance prediction. Build computationally efficient models suitable for monitoring, performance prediction, optimization, and control, and evaluate their accuracy, robustness, computational
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behaviour for system monitoring, state estimation, and performance prediction. Build computationally efficient models suitable for monitoring, performance prediction, optimization, and control, and evaluate
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engineering, control engineering, operations research, applied mathematics, or a closely related field. Documented experience in energy-system modelling, mathematical optimization, control, digital twins
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components based on performance, reliability, and cost, and validating designs through simulation and testing. Experience in advanced BMS development, control strategies, and system integration is an advantage
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energy-system modelling, mathematical optimization, control, digital twins, or related areas. Strong programming and numerical modelling skills using Python, MATLAB/Simulink, Julia, hardware in the loop
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, experimental, and modelling datasets related to physical oceanography, bentho-pelagic coupling, and carbon export. • Investigate the mechanisms controlling carbon export from surface waters to the deep ocean
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development, collected with a Hirst trap • Access to data from 3 Poleno Jupiters for model development. These Instrument that have been running in Denmark since 2025 • Access to DNA based observations
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chemical characteristics of both the Vertical Electrical Shaft Kiln and the e-Transformer. Based on this model, you will design, analyse and evaluate control concepts for the pilot system. The model will be