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Field
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engineering, robotics, transport and logistics Offered by: School of Engineering. Department of Mechanical and Industrial Engineering Description Key areas of research include: Conceptual framework design
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systems and cyber-physical environments. The lab includes autonomous robots, ABB robots with interchangeable grippers, distributed control systems, and testbeds for smart grids and real-time simulations
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the intersection of computational design, robotic fabrication, and environmentally performative architecture. The research will investigate how 3D printed clay systems—columns, claddings, and related architectural
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production architectures. The research will also be carried out in LTU’s AIC³ Lab, an advanced test environment for future industrial systems and cyber-physical environments. The lab includes autonomous robots
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intelligence related to field robotics and autonomous vehicles. Last day to apply is November 15, 2025. Starting date is March 1, 2026, or by agreement. Project description Physics-based simulation is an
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research in information and digital technologies (computer science, automation, robotics, artificial intelligence), with the aim of developing methods for representation, analysis, and control of complex
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intelligence related to field robotics and autonomous vehicles. Last day to apply is November 15, 2025. Starting date is March 1, 2026, or by agreement. Project description Physics-based simulation is an
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About the Opportunity This job seeks a research assistant to work on one or more projects related to the development and assessment of wearable robotics. Possible projects topics include: 1
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University explores synergies between nonlinear control theory and physics informed machine learning to provide formal guarantees on performance, safety, and robustness of robotic and learning-enabled systems
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on performance, safety, and robustness of robotic and learning-enabled systems. The research group is seeking a talented Doctoral Researcher in nonlinear systems and control with strong interest in nonlinear