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drift caused by robot model uncertainties, Navigational inaccuracies, and undesired post-landing motions (e.g., slipping, rolling, or bouncing). This PhD research will address these challenges and propose
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This PhD opportunity at Cranfield University explores how next-generation AI models can be embedded within resource-constrained electronic systems to enable intelligent, real-time performance
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This fully-funded PhD studentship, sponsored by the EPSRC Doctoral Landscape Awards (DLA), Cranfield University and Spirent Communications, offers a bursary of £24,000 per annum, covering full
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This fully-funded PhD research opportunity, supported by EPRSC Doctoral Landscape Awards (DLA) and Cranfield University offers a bursary of £22,000 per annum, covering full tuition fees. This PhD
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This is an exciting fully-funded studentship (with a stipend of £18,800 p.a. plus full tuition covered for a 3 year period) under the ‘Cranfield Industrial Partnership PhD Scholarships Scheme
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. This PhD thesis aims to achieve this integration, enabling safer deployment of robot swarms for several real-world applications in our future society. Towards this objective and with minimal assumptions
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excellent interpersonal skills. About You You will hold a PhD in a relevant subject such as Aerospace, Mechanical, Electrical, or Software Engineering for the Research Fellow position, or hold a Master's