📌 6G Integration: Future of Communication Unveiled Last Friday's meeting on 6G integration projects was mind-blowing. Here's what you missed: AI-Powered UAVs ⤷ UC3M's custom-built drone detects humans using AI and LLMs Space-Based Communication ⤷ CubeSats launched for next-gen connectivity Advanced Learning for NTNs ⤷ Reinforcement learning techniques for non-terrestrial networks And that's just the tip of the iceberg! The future of 6G is unfolding before our eyes. It's not just about faster speeds; it's about revolutionizing how we interact with the world. P.S. Which 6G application excites you the most? 1) AI drones, 2) Space comms, or 3) Smart networks?
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🔥Tomorrow at UA Week: Ready to supercharge your image analytics program? Join Alex Johnson's session at 3:15PM - LabelOps: The Rocket Fuel for Image Analytics. Discover how consistent and accurate data labeling can transform the way utilities use visual data to drive decision-making and power AI models. Alex will share how utilities can advance their image analytics programs with better data labeling, integration of advanced AI techniques, and strategic planning for seamless AI deployments. Whether you’re working with drones, LiDAR, or satellites, this session will reveal insights for unleashing the full potential of your visual assets. https://lnkd.in/eWp6HwMt #UAWeek #Presentation #ImageAnalytics #LabelOps #Drones #LiDAR #AssetManagement #UtilityAnalytics
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#CallForPaper 🚀 Exciting News! We are now accepting submissions for the special issue of CMC titled “Intelligent Soft Computing Techniques for Enhancing Wireless Networks with Unmanned Aerial Vehicles”, guest edited by Prof. Giovanni Pau. This issue will explore the innovative use of soft computing techniques—like fuzzy logic, neural networks, and evolutionary algorithms—to optimize the performance, reliability, and security of wireless networks, specifically focusing on UAVs. Submission: https://lnkd.in/e3g27KmC Submission Deadline: 01 June 2025 As UAV technology transforms logistics, surveillance, and environmental monitoring, the need for advanced methodologies is more critical than ever. Join us in addressing these challenges! #UAVAssistedNetworkManagement #QualityOfServiceEnhancement #SecurityandPrivacyinUAVNetworks #EnergyEfficientUAVOperations #CollaborativeUAVNetworks #RealTimeDataProcessingandDecisionMaking
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#DroneDetection technology: The detection portion of the system employs a variety of technological tools, such as radar, optical sensors, and thermal imaging devices, for the timely detection of UAVs flying nearby. These technologies can accurately identify the type, location, and behavioral intent of the UAV, providing critical information for subsequent warning and entrapment.#ANTIDRONE
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𝗙𝗶𝘅𝗲𝗱-𝗪𝗶𝗻𝗴 𝗗𝗿𝗼𝗻𝗲𝘀: 𝗔𝗿𝗲 𝗧𝗵𝗲𝘆 𝗕𝗲𝘁𝘁𝗲𝗿 𝗧𝗵𝗮𝗻 𝗠𝘂𝗹𝘁𝗶-𝗥𝗼𝘁𝗼𝗿? Hosted by Eric Andelin CP, Senior Workflow Advisor with SimActive and guest speaker, Yovist Taufan, Founder and Director of Quantindo. Are multi-rotors dying a slow death in the traditional mapping space? As projects get bigger, it makes more sense to use fixed-wing drones as they cover more ground per mission. With the introduction of new payloads such as multi-camera systems and lidar, fixed wings are now capable of doing everything a multi-rotor can. So if fixed-wings take over the traditional mapping space, are they a threat to aircraft? Not necessarily, as it depends on geographic location and access. Yovist Taufan, Founder and Director of Quantindo, joins our host Eric Andelin to discuss how larger mapping projects create unique challenges. Specifically, attendees will learn about the following: • Advantages of fixed-wing drones over multi-rotor • Projects that benefit from fixed-wing • New fixed-wing payload options • Unique processing challenges Register here: https://hubs.ly/Q02ySdb10
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🚨 WALDO 3.0: The Future of AI Surveillance? 🚨 Imagine a world where overhead imagery powered by AI can detect cars, people, buildings, bikes, boats, and even solar panels with incredible precision. 🌍Enter WALDO 3.0, a cutting-edge AI detection model that scans data from drones, helicopters, satellites, and more. 🔍 This technology promises to revolutionize industries like: Disaster recovery | Wildlife monitoring | Traffic management | Drone safety Governments, corporations, organizations, and even individuals now have the power to monitor vast areas, gaining insights into everything from urban infrastructure to environmental changes. While WALDO 3.0 could make our world smarter and more efficient, we must ask ourselves... #privacy.. #AI #geospatial #objectdetection #detectionalgorithms #WALDO3 #FutureInnovation
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Ever wondered what it’s like to control a drone… using just your mind?🚁🧠 Recently at Starlab's offices, our attendees got a firsthand look at how EEG technology can turn brain activity into drone flight commands! With nothing but his attention and concentration, our brave volunteer successfully made the drone rise and fall—showing how focus can directly influence technology. 💭✨ This demo showcases the exciting potential of neurotechnology in a fun and engaging way, giving a glimpse into the future of brain-machine interfaces. 🧑🚀 Curious to learn more? Check out the video to see some high-flying EEG action! 🎬 #Neurotech #EEG #MindControl #Drones #Innovation #FunWithScience
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Drones: The Evolution of a Game-Changing Technology The use of drones has exploded across industries, from surveying and mapping to wildlife monitoring and disaster management. 🌍 With innovations like AI, LiDAR, and machine learning, drones are more powerful than ever. But what does this mean for the geospatial world? Explore how drones have evolved over time and their growing impact in the latest article from Afrospatial Magazine. 🔗 Read more here: https://rb.gy/5dcb76 #DroneTechnology #GeospatialIndustry #Innovation #TechTrends #AfrospatialMagazine
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Not just Chinese balloons in U.S. skies. —— Near Space Labs, a leader in stratospheric remote sensing, reached a historic milestone with the nationwide deployment of its first Swift robots across the United States. This achievement establishes the first network of stratospheric robots delivering ultra-high-resolution aerial imagery across the continental US, now with enhanced 7cm resolution capabilities that match or exceed traditional aerial survey quality. Operating at altitudes between 60,000 and 85,000 feet, this compact 12-pound autonomous system provides insurance companies, urban planners, and government agencies with unprecedented access to precisely detailed, frequently updated aerial imagery at a fraction of the cost of traditional methods, including drones.
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Applications are limitless.
The new lidar could be installed on underwater drones for high-precision exploration. https://lnkd.in/dmKW9hxk 🚀 Explore more with Interesting Engineering! Check out our YouTube channel and subscribe: https://ie.social/V9yxY
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A team from Xiamen University developed a single-photon Raman lidar system that won the 2023 Best Paper Prize from Applied Optics. This innovative technology can detect objects up to 3,280 feet (1000 meters) underwater, surpassing the limitations of traditional lidar systems. The system's high sensitivity allows it to analyze oil spills from 39.4 feet away using a low-power laser pulse, enabling applications in ocean surveys and resource exploration. Its compact size and low power consumption make it suitable for integration into autonomous underwater vehicles (AUVs) for various underwater monitoring tasks.
The new lidar could be installed on underwater drones for high-precision exploration. https://lnkd.in/dmKW9hxk 🚀 Explore more with Interesting Engineering! Check out our YouTube channel and subscribe: https://ie.social/V9yxY
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Funded Projects Manager en FIDAMC - Fundación para la Investigación, Desarrollo y Aplicación de Materiales Compuestos
3moQuite interesting projects and developments! I could confirm how much composite materials can contribute to satellital and HAPS platforms. Thankyou José Alberto Hernández for inviting me to the event.