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Extensions of Dynamic Programming, Machine Learning, Discrete Optimization
TREES
Extensions of Dynamic Programming, Machine Learning, Discrete Optimization

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subsea networks

Bioinspired Subsea Robots and Underwater Networks

Dr. Rudolf Bannasch, Managing Director (and co-founder), EvoLogics GmbH

May 8, 18:15 - 18:45

B18 Fellowship Hall

Featured Sessions

Underwater communication and positioning subsea networks smart robots swarm collaboration artificial intelligence

Abstract Advanced subsea robots and monitoring networks have become increasingly important for subsea exploration, environmental observation, industrial control, and maritime security. These systems face challenges ranging from shallow water to deep-sea applications. To overcome these challenges, engineers can draw inspiration from nature. Studies on the bio-sonar of dolphins provide a clue for reliable underwater communication and positioning, which is the basis for modern subsea networks and collaborative underwater robots. Pressure-resistant electronic design enables devices to operate at

Extensions of Dynamic Programming, Machine Learning, Discrete Optimization (TREES)

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