Charles served in numerous leadership roles at the local, state, national levels on public safety communications, GIS, broadband, information sharing, thermal imaging, enhanced location technology, FirstNet and drones. https://lnkd.in/g-6jvyKs
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‘Remote Sensing: Increasingly Essential Technologies for Modern Municipalities’ The ability to observe the Earth at different scales through drones and satellites has enabled the monitoring of urban and rural areas within municipalities. How can this data be useful? ☺ You just need to call the ghostbusters (TeroMovigo)
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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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micro invisible spying drones wouldn't be capable of processing signals from various sources, those must be transmitting in some other form! The question is what form, how to block? Those invisible spying drones are controlled somehow, how are they receiving commands? Rover on Mars? How do I create my personal space and block? I don't want any electronic interference, i would rather use ethernet cable, when I am working I don't even need mobile signal! How do I block the sh*t in my personal work space? In my personal work breaks i would go to place with mobile signal! The answer has multi trillion dollar industry in corporations and government organisations!
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Register: https://lnkd.in/g7tWcDBg Prepare for takeoff! In 24 hours, our webinar "Drones Meet Computer Vision for Geospatial Insights" is starting at 6 PM IST. Explore how smart drones are reshaping geospatial insights across industries. Discover the power of AI-driven aerial analysis, from urban to agricultural industries. Secure your spot now and improve your perspective on spatial data. Register today! #DroneInspectionUsingComputerVision #GeospatialDataAnalysis #VisionAIinDrone #Webinar
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Wow, now this is quite something. Geospatial 2.0 in action. 3D is one of the core elements of Geospatial 2.0 - the geospatial revolution. Stay abreast of all new advances in the world of geospatial .. Join the 2.0 Community: https://lnkd.in/gvfayQs3
Host, TED AI Show | Ex-Google PM (3D Maps, ARCore, 360/VR) | Scout, A16z | VFX creator with 1.4M+ subs & 445M+ views | ੴ
Linked up with Array Labs -- a YC startup using satellite sensors to build a near real-time 3d map of the world. Here's a sneak peek into a beta reconstruction of San Francisco made entirely from satellite imagery. For those in the know, their goal is essentially Vricon 3d on steroids -- doing multi-view 3d reconstruction using ubiquitous satellite imagery, allowing you to get a 3d view where flying planes and drones is not possible or impractical.
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Power beaming is an advanced wireless energy transfer technology, enabling UAVs to receive power mid-flight without requiring physical connectors or battery swaps. Here’s an overview of how it works and its potential applications: How Power Beaming Works: 1. Electromagnetic Energy Transmission: Power is transmitted as electromagnetic waves (radio, microwave, or laser beams) from a ground or aerial power source to the UAV. 2. Phased-Array Antennas: These antennas direct the power beam with high precision, ensuring minimal energy loss. The UAV uses a receiver to convert the incoming energy into electrical power for charging its battery. 3. Line-of-Sight Charging: The system maintains real-time telemetry and line-of-sight for efficient energy transfer over significant distances Advantages: • Extended Flight Times: Drones can stay operational for hours or even days without landing to recharge. • Reduced Downtime: Eliminates the need for battery swaps or charging stations. • Versatility: Applicable to various UAV sizes, from small tactical drones to large surveillance systems. Applications: • Military Missions: Long-endurance operations like reconnaissance and surveillance. • Commercial Use: For logistics and delivery drones covering wide areas. • Emergency Services: Extending operational capabilities for search and rescue or disaster monitoring. Example Projects: • DARPA’s Initiative: Developing far-field power beaming for UAVs flying at altitudes of up to 50,000 feet. The system ensures efficient charging with phased-array antennas, overcoming challenges like power dispersion and environmental interference. #PowerBeaming #WirelessPower #EnergyTransfer #WirelessEnergy #LaserPower #MicrowavePower #EnergyInnovation #WirelessCharging #SpaceSolar #FutureEnergy #EnergyTransmission #PowerWithoutWires #RemoteEnergy #NextGenEnergy #SustainablePower
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Check out our article on the game-changing potential of quantum computing in enhancing #DroneTechnology. From faster data processing to smarter navigation and more secure communication, here's how quantum computing could revolutionize the skies. https://wix.to/2LcWpHA #UncrewedAerospace #TheDronePro #QuantumComputing #Drones
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𝑪𝒂𝒏 𝒐𝒃𝒋𝒆𝒄𝒕𝒔 𝒃𝒆 𝒅𝒆𝒕𝒆𝒄𝒕𝒆𝒅 𝒂𝒕 𝒏𝒊𝒈𝒉𝒕 ? At night or in low-light conditions, using color images for object recognition or classification is not possible. Thermal imaging can help here. It captures infrared radiation (invisible to the human eye) emitted by objects in an image that displays the temperature variations across the scene. Quite well-known applications of this non-invasive technology are the identification of heat loss due to poor insulation, air leaks, and water leaks in buildings. This technology is especially useful for drones, also known as Unmanned Aerial Vehicles (UAVs), engaged in specialized tasks such as search and rescue, surveillance and military operations. The current deep learning models can achieve better performance on small objects than previous models. They have a lower number of parameters and can achieve realtime performance on embedded systems, making them suitable for implementation in drones. I am curious to see how thermal imaging is used in future applications. #thermalimaging #computervision #UAV
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Signals are easy to optimize with new omnidirectional antennas Gooseneck Omni antennas offer a wide range of frequencies and radiation patterns. They are designed for use with unmanned vehicles (drones), video transmission, walkie-talkie communication, manpack radios, surveillance and more. Gooseneck antennas provide several advantages over conventional fixed-mount antennas. First, they are flexible and versatile. They can be bent and repositioned at any angle, letting users optimise signal reception and transmission. Second, they are durable and made from rugged materials such as fibreglass and metal, which gives them resistance to shock, vibration and other environmental hazards. The third advantage of goosenecks is that they are lightweight and compact, making them easy to transport and deploy in the field. #Antenna #Technology
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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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