Edge Computing Applications

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  • View profile for Alain Gavin

    EUROPEAN DEFENCE, SPACE, SECURITY VC | Value Creation | DeepTech Investing | DefTech | Security/Cybersecurity | SpaceTech | MobilityTech | Host: Tech Command Investing Podcast

    8,916 followers

    🚀 Europe’s Armed Forces Face a 15km 'Death Zone'—Startups Could Be the Key to Surviving It Europe’s militaries are confronting a new battlefield reality: a 15km "zone of total death" identified from the Ukrainian frontlines, where traditional logistics and manned operations have become lethal due to drones, electronic warfare, and precision strikes. At the recent UK-Ukraine Defence Tech Forum, General Valerii Zaluzhnyi put it bluntly: “Classical offensive operations are not just ineffective—they’re suicidal in these zones.” 👉 This challenge demands a radical rethink of logistics at the tactical edge. Troops cannot risk driving trucks into these zones. Instead, quiet, electric Unmanned Ground Vehicles (UGVs) must be deployed to ferry ammunition, supplies, and even evacuate the wounded—taking humans out of harm’s way. But here’s the breakthrough: AI-driven autonomy is making this possible. Startups like TENCORE are scaling rapidly to meet this need, delivering modular UGVs capable of: ✅ Autonomous navigation in GPS- and comms-denied environments using AI-powered perception and route planning ✅ Real-time adaptation to battlefield threats without direct operator control ✅ Modular mission-switching—from logistics to mine-laying to fire support—on a single platform These vehicles are engineered for extreme resilience and flexibility: battery swaps in under 10 seconds, lego-like repairability, and minimal human intervention. But let’s be clear: 👉 Hardware is now table stakes. It’s software that will win the wars of the future. The edge lies in the software layer: AI that can navigate and decide under electronic warfare and jamming Swarming algorithms that enable distributed, coordinated missions Autonomous decision-making at the tactical edge without waiting for command uplinks 🔥 The startup opportunity? Europe’s militaries urgently need: AI-first, software-defined autonomy platforms Interoperable software ecosystems across NATO forces Rapid software iteration matching the speed of battlefield adaptation In today’s wars, humans are the most expensive and vulnerable resource. AI-enabled autonomy isn’t just a buzzword—it’s the frontline’s survival mechanism. The future of defence will be fought in code, deployed on autonomous machines. 💬 If you’re building robotics, AI, autonomy platforms, or distributed software systems, this is your moment. Let’s connect: Europe’s defence ecosystem is ready for bold innovators. #DefenceInnovation #MilitaryLogistics #UGVs #AI #AutonomousSystems #SoftwareDefinedWarfare #StartupOpportunity #EuropeanSecurity #TechForDefence #Ukraine #KARISTA #PSION #NationalSecurity #Geopolitics #DualUseTech #OmniUse #DefenceTech #VentureCapital #Investing #TechCommandInvesting

  • View profile for David Linthicum

    Top 10 Global Cloud & AI Influencer | AI Architect & GenAI Pioneer | Keynote Speaker | 5x Bestselling Author | Podcast & TV Guest Expert

    198,959 followers

    AI at the Edge: Smaller Deployments Delivering Big Results The shift to edge AI is no longer theoretical—it’s happening now, and I’ve seen its power firsthand in industries like retail, manufacturing, and healthcare. Take Lenovo's recent ThinkEdge SE100 announcement at MWC 2025. This 85% smaller, GPU-ready device is a hands-on example of how edge AI is driving significant business value for companies of all sizes, thanks to deployments that are tactical, cost-effective, and scalable. I recently worked with a retail client who needed to solve two major pain points: keeping track of inventory in real time and improving loss prevention at self-checkouts. Rather than relying on heavy, cloud-based solutions, they rolled out an edge AI deployment using a small, rugged inferencing server. Within weeks, they saw massive improvements in inventory accuracy and fewer incidents of loss. By processing data directly on-site, latency was eliminated, and they were making actionable decisions in seconds. This aligns perfectly with what the ThinkEdge SE100 is designed to do: handle AI workloads like object detection, video analytics, and real-time inferencing locally, saving costs and enabling faster, smarter decision-making. The real value of AI at the edge is how it empowers businesses to respond to problems immediately, without relying on expensive or bandwidth-heavy data center models. The rugged, scalable nature of edge solutions like the SE100 also makes them adaptable across industries: Retailers** can power smarter inventory management and loss prevention. Manufacturers** can ensure quality control and monitor production in real time. Healthcare** providers can automate processes and improve efficiency in remote offices. The sustainability of these edge systems also stands out. With lower energy use (<140W even with GPUs equipped) and innovations like recycled materials and smaller packaging, they’re showing how AI can deliver results responsibly while supporting sustainability goals. Edge AI deployments like this aren’t just small innovations—they’re the key to unlocking big value across industries. By keeping data local, reducing latency, and lowering costs, businesses can bring the power of AI directly to where the work actually happens. How do you see edge AI transforming your business? If you’ve stepped into tactical, edge-focused deployments, I’d love to hear about the results you’re seeing. #AI #EdgeComputing #LenovoThinkEdgeSE100 #DigitalTransformation #Innovation

  • View profile for Justin Nerdrum

    B2G Growth Strategist | Daily Awards & Strategy | USMC Veteran

    20,615 followers

    Edge AI shifts from slide-deck fantasy to tactical reality. Rifle companies now carry 1,800 TOPS of computing power in two Pelican cases, enabling sense-decide-act cycles in 300 milliseconds even when every communication link is jammed or burning. Dell's new Pro Max systems with GB10 Grace-Blackwell accelerators fundamentally rewrite the tactical playbook. A 15-kilogram package now delivers what previously required containerized server farms, running 120-billion parameter models on vehicle power or 8-hour batteries without throttling. The operational specifications that matter include 1 petaFLOP of AI performance at 250W total system draw, and 128 GB of coherent unified LPDDR5x memory, keeping multiple models resident. NVIDIA Confidential Computing with FIPS 140-3 options for TS/SCI weights, while liquid-metal and vapor-chamber cooling enable 60°C ambient operation. This translates to AI firepower that survives Iraqi summers in a JLTV. Ukraine validates these capabilities daily. Pro Max Mini systems control 80 drones from a single Pelican case, using 120B coordination models that retask swarms, handle attrition, and adapt to jamming in real time. Marine Littoral Regiments are running models four times larger than 2024 systems at half the power consumption. The impact on engagement timelines is dramatic. Mast cameras stream 8K video at 120–180+ fps on 4K/8K feeds for instant threat detection. The system generates threat pop-up boxes, weapon slew commands, and shoot/don't shoot recommendations at 95% confidence levels. Human reaction time averages 4-6 seconds. AI-assisted response collapses to 400 milliseconds. Three fundamental shifts emerge from this edge computing revolution. Speed beats latency; 300ms local processing outperforms 3-second satellite round-trips. Resilience beats connectivity; systems function when everything else is offline. Integration beats isolation. One system handles every AI mission. For contractors: edge AI has moved from PowerPoint promises to operational reality. The question isn't whether to integrate AI at the tactical edge, but how fast you can deliver it. #DellProMax #EdgeAI #Defense

  • View profile for Arlon Smith

    Defense Technology & AI Executive | Founder, Project Dynamis | AI-Powered Decision Advantage at the Tactical Edge | U.S. Marine Colonel

    10,051 followers

    For more than a decade, we've talked about Combined Joint All-Domain Command and Control (CJADC2). Over the past two weeks, I watched the future of it being built. Project Dynamis Serial 008 brought together Marines, Soldiers, Sailors, and commercial technologists to rapidly iterate on a next-generation, AI-powered battle management capability under the stress of operationally realistic field conditions. It wasn’t an experiment; it was a rehearsal. While Army operations unfolded at Fort Irwin, our team established an expeditionary Multi-function Air Operations Center (MAOC) at Marine Corps Air Station Cherry Point, bringing together Marines from Project Dynamis, Marine Corps Warfighting Laboratory/Futures Directorate, Naval Information Warfare Center Atlantic, and industry engineers. Our objective was audacious: Develop a next generation expeditionary battle management C2 capability that seamlessly integrates aviation, fires, intelligence, logistics, maneuver, cyber, space, and electromagnetic operations into a single AI-enabled decision-making environment. So what? Since the Third Offset Strategy, the vision for CJADC2 has been clear. The challenge was never the vision. It's getting the joint force to converge on common software, a common data ontology, and common operational workflows with a single point of accountability. Today something fundamentally different is happening. Instead of building separate Service solutions and attempting to integrate them years later, the Army's NextGen C2 effort, Marine Corps Project Dynamis, and the Navy's Project Overmatch are iterating together on inherently joint solutions from the beginning. That changes everything. Rather than adding another layer to legacy command-and-control systems, we’re leveraging a shared dual-use commercial technology foundation: → Palantir Technologies Maven Smart System (MSS) as the AI-enabled battle management software platform. → Anduril Industries Lattice Edge Data Mesh (EDM) as the common data orchestration layer connecting sensors, platforms, autonomous systems, and command nodes across distributed formations. Technology is advancing too quickly for decade-long integration efforts built around bespoke systems. That's not acceptable when you're operating in a profession where the stakes are so high and the consequences of failure so final. What I witnessed over the past two weeks convinced me that the future of joint warfighting won't be built by integrating separate Service capabilities after the fact. Operators, engineers, and industry partners will collaboratively build it from day one, continuously rehearsing and refining common solutions. I’m incredibly proud of what our joint team is accomplishing. The Dynamis pre-season "hurry-up" offense rolls on. No timeouts. No excuses. Just relentless execution. Hello 29 Palms. Here we come. PAE Marine Corps PAE Mission Systems DoW Chief Digital and Artificial Intelligence Office (CDAO)

  • View profile for Andrew Spiess

    Defense Software and Technology | Security Clearance

    3,348 followers

    The "Speed of War" isn't a buzzword—it's a requirement. Recent Warfighter Exercises (WFX) prove it: Our headquarters are drowning in data but starving for actionable insights. We are still trying to win modern battles with "digitized analog" processes—manual slides, fragmented chats, and disconnected trackers. Onebrief is changing the game. It’s not just another tool; it’s an AI-powered Operating System for Commanders to drive the planning process. ✅ Sync at Scale: One update to a "Card" (task/risk) flows instantly from Corps to Division. ✅ Kill the Drudgery: Automated workflows replace 20+ hours of manual slide deck maintenance per week. ✅ Unified Truth: Real-time data integration across NIPR, SIPR, and JWICS. ✅ Decide Faster: Transform complex data into actionable insights before the enemy can react. From the single services to Joint Staff, the shift toward data-centric C2 is here. Stop managing slides and start mastering the domain. The future of the battlefield belongs to those who can synthesize information the fastest. Are you ready? #DefenseTech #JADC2 #Onebrief #WFX #ModernWarfare #CommandAndControl #Innovation

  • 🚨 Utilidata Raises $60M to Bring Edge AI to the Grid — Right Where the Electrons Flow ⚡ AI isn’t just for GPUs and data centers. It’s hitting the grid edge. Rhode Island-based Utilidata just secured a $60 million Series D, backed by NVIDIA, NextEra, and DTE, to deploy real-time AI at the meter — pushing intelligence out of the control room and into the field. 📊 What Makes This a Game-Changer: 🔌 Smart meters with NVIDIA Jetson chips = edge inferencing for voltage, frequency, and load conditions ⚡ Enables real-time decision-making across distributed energy resources (DERs), EVs, and microgrids 🧠 Moves from “data collection” to in-situ intelligence — where AI can act before a centralized system even finishes syncing 🌍 Aligns with the need for AI-native infrastructure as utilities navigate renewables, grid instability, and load spikes 💰 Backed by big names: NVIDIA, Sands Capital, Energy Impact Partners, and two of the largest utilities in the U.S. 📌 Why It Matters: As AI reshapes compute, Utilidata is showing us what it means to reshape control. This is grid-native AI — not just smarter forecasting, but autonomous operations at the edge. It’s the intelligence layer the energy transition has been waiting for. Read More: https://lnkd.in/d8E8vR3V 💬 Are we entering the era of the “thinking grid”? Or is this just the first node of something bigger? #GridModernization #EdgeAI #EnergyInfrastructure #Utilities #AITransformation

  • View profile for Tony Grayson

    Apple VP | AI Infrastructure & Global Operations | Former President & GM | P&L & Capital Allocation | Built, Scaled & Exited a $100M+ Business | Data Centers, Cloud, Defense, Power & Nuclear | Nuclear Submarine Commander

    57,060 followers

    NATO recently sounded the alarm over Russia's potential to disrupt Western infrastructure, particularly undersea internet cables and GPS systems. The article highlights that over 95% of international communications rely on these cables, meaning any disruption could have catastrophic consequences for military and civilian operations. To counter these threats, disaggregated operations provide a tactical solution that ensures resilience and operational continuity. This approach decentralizes critical military functions, enabling units to operate independently while maintaining horizontal communication with other units. Some specifics: We distribute C2 functions across mobile platforms, such as vehicles or portable containers, to avoid disruptions. These mobile units are designed for quick deployment, adaptability, and autonomous operation. We rely on SD-WAN (Software-Defined Wide Area Networking) to maintain communication between these mobile C2 units. By leveraging SD-WAN, we use multiple communication paths and dynamically route data to ensure secure and resilient connectivity, even when traditional networks fail. We deploy microservices across multiple nodes instead of relying on centralized servers. This decentralized approach enhances system resilience, ensuring critical services stay operational even under attack. We position compute nodes closer to the front lines to enhance resilience and reduce latency. These edge nodes process data locally, enabling faster decision-making and action. Coupled with SD-WAN, we ensure efficient data processing and communication, even in disconnected environments. We implement mesh networks, supported by SD-WAN, to provide a flexible and robust alternative when traditional hierarchical communication fails. This allows units to communicate directly with each other, maintaining operational coherence even when cut off from higher headquarters. As operations grow more complex, we ensure seamless communication between different units and allied forces. SD-WAN manages diverse communication channels, keeping these networks interoperable and effective across various platforms and nationalities. Inspired by HIMARS's "shoot and scoot" tactics, we design mobile C2, compute, and network nodes for high mobility and quick redeployment. This mobility allows us to avoid detection and targeting by adversaries while continually adapting to the battlefield's dynamic nature. We combine the mobility of these units with SD-WAN’s ability to maintain communication, enabling dynamic operations. This allows us to relocate quickly and re-establish connections to stay ahead of the enemy. We implement radium-based internal timing systems in environments where GPS is jammed or unreliable. These systems provide precise timing independent of external GPS signals, ensuring that operations can continue seamlessly despite attempts to disrupt navigation and synchronization. What do you think? #SDWAN #threat

  • View profile for Rory Christian, CEM, CEA

    Chairman of New York State Public Service Commission

    5,668 followers

    As part of last week’s milestone in the Proactive Planning Proceeding, the Commission approved 29 projects that cost-effectively address near-term electrification needs to enable building and transportation electrification. A key feature of this effort is the integration of Grid-Enhancing Technologies (GETs) to deliver flexible, innovative solutions to grid modernization. GETs maximize the transmission of electricity across the existing system by using sensors, power flow control devices, and analytical tools to optimize the existing system. They reduce the need for more expensive new infrastructure projects, improve grid reliability and make it easier to integrate renewable energy, leading to cost savings for both utilities and consumers. For example, National Grid’s approved mobile energy storage project uses GETs to meeting immediate capacity needs at high-demand transportation electrification sites like Thruway service plazas. These technologies allow the system to respond to urgent load growth without waiting for traditional substation buildouts, reducing costs and improving resiliency. GETs are proving to be a valuable tool in this proactive approach to grid planning. They deliver capacity faster, more affordably, and with greater flexibility. They help manage uncertainty, avoid overbuilding, and ensure that the grid can keep pace as we advance New York’s clean energy agenda. Read more here: https://lnkd.in/e4MrZUhK

  • View profile for Rob Albritton

    Unafraid to innovate in the gray and hack bureaucracies | Applied AI Trailblazer | Defense Tech Disruptor | AI Computing SME | MBA | Ex-IBM, Ex-NVIDIA, Ex-MITRE, Ex-US Government, Ex-Octo

    8,247 followers

    I saw a super cool demo this week from Decisive LLC's Jay McNallie. Years ago, we were running around with USSOCOM components building sensor integration and C2 platforms dropped data when federating and synchronizing data across many tactical tactical data nodes. Jay McNallie went off and solutioned it. Continuum is a partition-tolerant state synchronization platform for the tactical edge, keeping distributed data and C2 state coherent when links drop and disconnection is the norm (DDIL). Using conflict-free replicated data types (CRDTs), every node reads and writes locally through a comms blackout, then converges automatically the moment connectivity returns—no central server, no manual merge, no lost edits. It's TAK-native, deploys as a K3s sidecar onto existing tactical Kubernetes baselines, and prioritizes command-critical data across eight precedence levels so it moves first when bandwidth is scarce. https://lnkd.in/ecE39bDt USSOCOM | U.S. Customs and Border Protection | Drug Enforcement Administration | U.S. Department of State | US Army | 4th Infantry Division, Fort Carson | 25th Infantry Division and U.S. Army Hawai'i | Marine Forces Special Operations Command (MARSOC) | IBMoLabs | Layne Lewis

  • View profile for Paul Garcia

    Founder, Merge Combinator | Venture Studio for National Security | Fighter Pilot | Tactics Instructor | GCH Squire

    1,905 followers

    If you're building counter-UAS systems and haven't considered the JIATF-401 Commercial Solutions Opening, you may be 𝐦𝐢𝐬𝐬𝐢𝐧𝐠 𝐨𝐧𝐞 𝐨𝐟 𝐭𝐡𝐞 𝐦𝐨𝐬𝐭 𝐢𝐦𝐩𝐨𝐫𝐭𝐚𝐧𝐭 𝐭𝐫𝐚𝐧𝐬𝐢𝐭𝐢𝐨𝐧 𝐰𝐢𝐧𝐝𝐨𝐰𝐬 in defense right now. In less than five weeks, the market structure materially changed. Feb. 24: JIATF-401 launched its c-UAS marketplace, creating a procurement layer for validated solutions through an existing enterprise vehicle rather than forcing new contracting cycles. Feb. 27: The CSO opened with a low-friction Phase 1 requirement: a five-page solution brief across mobile, fixed-site, and command-and-control capability areas. Mar. 14: The first major signal arrived when JIATF-401 selected Anduril's Lattice as the common tactical C2 backbone in an initial $87M task order inside the larger $20B ID/IQ announcement. A lot of founders saw the $20B award to Anduril as market closure, "new Prime becoming the old Prime." No, it is the opposite and this is our moment. What JIATF-401 really signaled is that the counter-UAS fight needs a common, open, rapidly deployable platform layer that can integrate sensors, effectors, EW, and interagency workflows without rebuilding the stack every time. They've opened the door for Anduril to prove Lattice can become an important component in that layer. They can reach scale fast and can bring others with them if they choose to send the elevator back down. For everyone else building in sensing, EW, fixed-site defense, mobility, or effectors, there is real opportunity to share this win with the right strategic partnering. Some of the dust is finally settling after months of urgency, and JIATF-401 is leading. They recognize the need for interoperability, data sharing and have started with the U.K. We've been working closely with Japan Self Defense Force, USMC, and NATO on this for the last year to share those lessons across theaters. The teams that engage now can still shape the assumptions, workflows, and data standards. The teams that wait inherit requirements written by, and optimized for, someone else. For senior leaders, stop the shortsighted corner cutting that is costing us time and money every program cycle. Instead, follow the 401 pattern: give yourself options with an open C2 platform, broad acquisition ecosystem, and market competition of real capability. Don't get left behind. If your system works but your pathway to JIATF-401 is unclear, find and work with others who know the way. https://lnkd.in/gAujee_R

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