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through ESA contracts; implementing campaigns in support of radar mission algorithm development, and defining science and engineering products and associated performance requirements; coordinating campaign
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microcontrollers. Duties As a Junior Professional, your tasks and responsibilities will include: identifying the 3GPP communication payload signal processing, control and security algorithms to be implemented in
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and conducting work in the modelling of EEPS (scene generators, geometry module, spacecraft, payload, forward and retrieval algorithms, level 0 to level 1 algorithms, etc.); initiating and conducting
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objectives with societal indicators, geophysical algorithm development and related research activities; supporting the implementation of the renewed ESA EO science strategy and the definition of future
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intelligence and machine learning technologies/algorithms Background in software engineering and programming languages, data analysis and BI tools Proven experience in technical project and service management
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processing; ensuring the provision of necessary instrument inputs for the development of level 1 processing tools/algorithms and the associated ground processor prototype; ensuring the timely availability
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ESA Graduate Trainee in Advanced RF Payloads and TT&C Subsystems, On-board Processing & Technologies
to work in one or more of the following topics, depending on your background and interest: Software Defined Radio algorithms and techniques for TT&C/PDT applications: Evaluation of Modulation and
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and validation of state-of-the-art spacecraft communication, monitoring and control, signal processing and/or artificial intelligence algorithms on existing and specifically on the Ultra Deep SubMicron
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or the “Fast replay – Cloud computing” Algorithm engineering and performance analysis platform; Support the continuous development of the Performance tools and algorithm engineering platform, in coordination
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of the similarities between soft robots and natural systems, it is closely related to biomimetics, bio-inspired design and algorithms, and model-free neural control. While you are encouraged to propose your own