You've heard of Internet of Things, but what about Internet of Underwater Things? 🤔 🌊 At the PLOCAN test site in the Canary Islands, GEORGE partners will be demonstrating how underwater sensors, autonomous vehicles, and communication systems can work together as a connected network. 🌐 Using innovative Internet of Underwater Things (IoUT) technology, GEORGE partners PLOCAN, WSense and ClearWaterSensors are taking a key step towards real-time ocean data transmission. 👉 Read more: https://lnkd.in/dQgXTFcu Plataforma Oceánica de Canarias (PLOCAN) WSENSE ClearWater Sensors EMSO ERIC ICOS - Integrated Carbon Observation System #HorizonEurope #InternetOfUnderwaterThings #IoUT #OceanObservations #AutonomousOceanObservations
GEORGE Partners Demonstrate Internet of Underwater Things at PLOCAN
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This was actually suuuper story to work on. I learned a lot about the challenges of underwater data transmission and the environments that are used for testing marine technology. The experiment set-up should be pretty interesting to non-marine scientists, too, I encourage you to read this one 👇
You've heard of Internet of Things, but what about Internet of Underwater Things? 🤔 🌊 At the PLOCAN test site in the Canary Islands, GEORGE partners will be demonstrating how underwater sensors, autonomous vehicles, and communication systems can work together as a connected network. 🌐 Using innovative Internet of Underwater Things (IoUT) technology, GEORGE partners PLOCAN, WSense and ClearWaterSensors are taking a key step towards real-time ocean data transmission. 👉 Read more: https://lnkd.in/dQgXTFcu Plataforma Oceánica de Canarias (PLOCAN) WSENSE ClearWater Sensors EMSO ERIC ICOS - Integrated Carbon Observation System #HorizonEurope #InternetOfUnderwaterThings #IoUT #OceanObservations #AutonomousOceanObservations
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Developing autonomous underwater vehicles can be challenging due to lack of GPS, expensive sensors and limited visibility. A virtual environment can address these issues by providing a quick way to develop navigation and control algorithms and verify them without having to access expensive hardware. Check out the RoboSub Virtual Environment which provides high fidelity dynamics simulation, support for popular sensors like cameras, Doppler Velocity Loggers (DVL), IMU’s etc. It also supports some of the popular actuators used in RoboSub such as torpedoes and markers! Check out how you can get started with simulating underwater vehicle with this blog! #RoboSub #UnderwaterRobotics #AutonomousSystems https://spr.ly/6041B6euax
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Developing autonomous underwater vehicles can be challenging due to lack of GPS, expensive sensors and limited visibility. A virtual environment can address these issues by providing a quick way to develop navigation and control algorithms and verify them without having to access expensive hardware. Check out the RoboSub Virtual Environment which provides high fidelity dynamics simulation, support for popular sensors like cameras, Doppler Velocity Loggers (DVL), IMU’s etc. It also supports some of the popular actuators used in RoboSub such as torpedoes and markers! Check out how you can get started with simulating underwater vehicle with this blog! #RoboSub #UnderwaterRobotics #AutonomousSystems https://spr.ly/6042B6dHxq
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Developing autonomous underwater vehicles can be challenging due to lack of GPS, expensive sensors and limited visibility. A virtual environment can address these issues by providing a quick way to develop navigation and control algorithms and verify them without having to access expensive hardware. Check out the RoboSub Virtual Environment which provides high fidelity dynamics simulation, support for popular sensors like cameras, Doppler Velocity Loggers (DVL), IMU’s etc. It also supports some of the popular actuators used in RoboSub such as torpedoes and markers! Check out how you can get started with simulating underwater vehicle with this blog! #RoboSub #UnderwaterRobotics #AutonomousSystems https://spr.ly/6046B6datI
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Developing autonomous underwater vehicles can be challenging due to lack of GPS, expensive sensors and limited visibility. A virtual environment can address these issues by providing a quick way to develop navigation and control algorithms and verify them without having to access expensive hardware. Check out the RoboSub Virtual Environment which provides high fidelity dynamics simulation, support for popular sensors like cameras, Doppler Velocity Loggers (DVL), IMU’s etc. It also supports some of the popular actuators used in RoboSub such as torpedoes and markers! Check out how you can get started with simulating underwater vehicle with this blog! #RoboSub #UnderwaterRobotics #AutonomousSystems https://spr.ly/6047B6gKDF
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Developing autonomous underwater vehicles can be challenging due to lack of GPS, expensive sensors and limited visibility. A virtual environment can address these issues by providing a quick way to develop navigation and control algorithms and verify them without having to access expensive hardware. Check out the RoboSub Virtual Environment which provides high fidelity dynamics simulation, support for popular sensors like cameras, Doppler Velocity Loggers (DVL), IMU’s etc. It also supports some of the popular actuators used in RoboSub such as torpedoes and markers! Check out how you can get started with simulating underwater vehicle with this blog! #RoboSub #UnderwaterRobotics #AutonomousSystems https://spr.ly/6049B6bykB
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Developing autonomous underwater vehicles can be challenging due to lack of GPS, expensive sensors and limited visibility. A virtual environment can address these issues by providing a quick way to develop navigation and control algorithms and verify them without having to access expensive hardware. Check out the RoboSub Virtual Environment which provides high fidelity dynamics simulation, support for popular sensors like cameras, Doppler Velocity Loggers (DVL), IMU’s etc. It also supports some of the popular actuators used in RoboSub such as torpedoes and markers! Check out how you can get started with simulating underwater vehicle with this blog! #RoboSub #UnderwaterRobotics #AutonomousSystems https://spr.ly/6049B6wCBv
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Robotaxi is Elon's gift to patient capital. While Waymo builds expensive, geofenced lidar rigs, Tesla is leveraging its massive fleet to drive its costs 50% lower than Waymo's by 2030. Autonomy at scale isn't about having the best tech demo. It's about achieving the lowest cost per mile.
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New Post: Adaptive Federated Graph‑Reinforcement Learning for Dynamic 3‑D Airspace Partitioning in Urban UAM Operations - https://lnkd.in/gq4GxMgX Federated Graph‑Reinforcement Learning for Dynamic 3‑D Airspace Partitioning in Urban UAM Operations **Abstract** Urban air mobility \(UAM\) requires rapid, conflict‑free allocation of three‑dimensional \(3‑D\) air corridors for dozens of autonomous air vehicles \(AAVs\). Existing traffic‑management solutions rely on static prescriptive models or centralized optimization that cannot scale to the thousands of concurrent requests in \[…\]
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New Post: Hybrid LiDAR–Camera Fusion for Real‑Time Adaptive Cruise Control in Urban Autonomous Driving - https://lnkd.in/guqXmRed ### Abstract \(≈150 words\) Urban autonomous vehicles must perceive complex, dynamic environments and react within milliseconds to ensure safety and efficiency. Conventional single‑sensor pipelines suffer from modality‑specific blind spots: LiDAR struggles with transparency and weather, while vision systems are ill‑suited for low‑light or adverse lighting. This paper presents a hybrid perception‑control architecture that merges point‑cloud \[…\]
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