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projects with other ACT researchers, combining computational bio-inspired modelling and biological abstraction with areas such as biomimetics, AI, mission analysis, guidance and control, or unconventional
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planetary atmospheres. The Section also initiates and manages a wide range of related modelling, software and hardware R&D activities. You are encouraged to visit the ESA website: https://www.esa.int/ Field(s
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Mitigation Policy and Requirements were updated in 2023, with a further update planned for 2030. Addressing this global concern requires not only models capable of projecting debris populations over different
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learning, understand their mathematical foundations, and connect them to space-related technologies and missions. The focus is on building rigorous models that explain and predict the behaviour of modern
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functionalities that can further improve operational performance, such as the integration of predictive models, orbital dynamics knowledge, or drag-aware optimisation strategies to enhance manoeuvre timing and
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control, optimisation, AI, space systems or unconventional computing; participate together with the team in the assessment of innovative space-system concepts, and propose new mathematical models and
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. Priorities include novel high-resolution products (precipitation, evaporation, soil moisture), high-resolution hydrological modelling, human impacts in the water cycle, ground water storage, global water cycle
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(for example insect-eye–inspired motion detectors for planetary landing and insect-inspired navigation algorithms) to evolutionary and neuromorphic approaches to autonomous control, as well as soft-robotic