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with the team. Lead sensor deployment experiments in controlled and semi-controlled aquaculture environments; optimize and calibrate and validate sensor streams for real-time analytics. Prototype and test AI
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FEA Simulation and Computational fluid dynamics SLS, SLM, FDM, PBF and DED 3D printing experiment Monitoring and Inspection of AM Optimization and control to improve quality of polymer and metallic
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project progress control ability, channel development and industry exhibition promotion ability Hard skills: 2 or more language skills, design software use and manufacturing processing ability Solid
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not new, but many of the existing methods have size-controlling problems. In this project, we shall study these issues thoroughly and propose some new and innovative approaches to overcome these issues
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tasks using impedance control Contribute to data analysis of force/torque and kinematic data Integrate key research findings in novel robot impedance control frameworks Publish research outcome in peer
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writing/presentation Job Requirements PhD degree in an engineering field related to this project Experience in dynamic modeling, machine learning and optimization & controls Having basic knowledge in carbon
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focused on designing, developing, and controlling an avian-inspired robot capable of precise and agile flight in urban environments. This initiative merges advanced computational modeling, AI-driven control
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and RISC-V architectures. Investigate various aspects of system design, including: Topology exploration, routing algorithms, protocol and flow control design Chiplet oriented and interposer design
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architectures. Investigate various aspects of system design, including: Topology exploration, routing algorithms, protocol and flow control design Chiplet oriented and interposer design strategies, SiP and
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. The team also assesses and develops emission control scenarios to provide science-based policy solutions for a sustainable environment in the present and future years. Key Responsibilities: The position will