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MeriTalk

Eliminating Silos in IT/OT Cybersecurity Is a Funding Challenge, Not a Technical One The FedRAMP High Supply Crisis Is a Federal Security Problem – Not a Procurement Footnote How More Tightly Focused Software Development Initiatives Will Unlock Innovation Across Government Transforming Federal Cybersecurity Through Private Sector Innovation Evolving Zero Trust and Embedded AI – Federal Government Cybersecurity Predictions for 2026 Unlocking AI’s Potential in High-Assurance Environments Accelerate Agentic AI in the Federal Government: Top Takeaways Why Congress Must Reauthorize the Technology Modernization Fund Make Cybersecurity a Key Ingredient of Modernization How Spectro Cloud’s PaletteAI Secure helps agencies scale AI securely, compliantly, and confidently Fix the Foundation: How Hybrid Cloud and Trusted Data Enable Government AI New Google Workspace Cost-Saving Offer Available for U.S. Federal Government Reinventing FedRAMP in the Age of AI Balancing Security and Efficiency: The Federal IT Dilemma in the AI Era Meeting Evolving State and Local Cyber Threats AI Is the Solution to Stop AI Data Theft Enhancing U.S. Government Operations with AI and Human-Centered Design How FinOps Can Help Agencies Slash Cloud Costs in 5 Steps Will Quantum Computing Weaken or Strengthen Cybersecurity of Federal Systems? Improving Citizen and Federal Employee Experience with Virtual AI Assistants Strategies for Securing the Federal Supply Chain Reframing the U.S. Government’s Approach to Cybersecurity Oversight Three Steps Agencies Can Take to Meet Government’s AI Requirements The Impact of NIST’s PQC Standardization on the Federal Cybersecurity Ecosystem Generative AI is Revolutionizing Federal Government Operations NIST’s new PQC Algorithms and What They Mean for Federal Agencies Addressing the U.S. Quantum Labor Shortage Before It’s Too Late How a Community Vigil Approach and Secure by Design are Critical to Software Cybersecurity Addressing the Talent Shortage: How Digital Government Improves Satisfaction, Retention Here’s What We Can Learn (and Do) About Cybercrime from FBI’s Latest Internet Crime Report Implementing AI Assurance Safeguards Before OMB’s December Deadline The Next AI Wave: Quantum AI CDM’s Evolution to Non-Traditional Technology: Why Now and How Will it Succeed? Customer Expectations Require Agencies to Raise the Bar on Customer Experience, Report Shows Applying for Government Benefits Shouldn’t Be Difficult When It Comes to Identity Verification Four Federal Software Supply Chain Security Trends to Watch FedRAMP Baseline Transition Points to OSCAL-Native Tools What Zero Trust Means for Modern Government: Best Practices for Key Tenets Four Ways to Handle the IT Funding Crunch Agencies Need to Get Creative to Fill the Cyber Workforce Gap Customer Identity trends report shows control trumps convenience Federal Agencies Making Strides Toward Sustainability and Climate Action Executive Order 14028 | Improving the Nation’s Cybersecurity Depends on Data | All Data is Security Data Applying Geospatial Intelligence, AI/ML to Climate Change Challenge My Cup of IT: Angry at Arthritis, Hunting for Cures How the Federal Government Can Help Combat a Fragmented Internet Accelerating Cybersecurity for US Critical Infrastructure Getting in on the Ground Floor of the ‘New Observability’ Comply-to-Connect is Key to Zero Trust for DoD How Will Upcoming Cryptocurrency Regulations Affect Industry? My Cup of IT: Cup Cake for Kushner? Launching a New Era of Government Cloud Security Managing IT Complexity in Federal Agencies Agencies Must Modernize Zero Trust Approaches to Achieve Optimal Protection Five Essential Metrics for Measuring Federal Government CX Unlocking the Benefits of 5G and Beyond The Federal Factory of the Future: How AI is Transforming Manufacturing The Quantum Impact on Cyber How Next-Gen Computers Will Transform What’s Possible for Federal Government Agencies Must Take an Authentic Approach to Synthetic Data Biometrics and Privacy: Finding the Perfect Middle Ground Two-Way Street: Why Officials and Constituents Are Equally Responsible for Securing the Midterms The “Programmable World” Will Bring the Best of the Virtual World Into the Physical One Cyberattacks are a Common Occurrence and the Costs are Higher Than Ever Increasing Equity Through Data and Customer Experience The AI Edge: Why Edge Computing and AI Strategies Must Be Complementary How Metaverses and Web3 can Reshape Government Four Emerging Technology Trends set to Impact Government Most Plugging Cyber Holes in Federal Acquisition Resilient Critical Infrastructure Starts with Zero Trust The Evolution of Government Tech Procurement Under CMMC 2.0 Zero Trust Requires Continuous, Tested Security for Federal Agencies How Multi-INT Fusion Accelerates Mission Intelligence for Real-Time Decision Advantage Three Things to Consider for Responsible AI in Government Legislation, White House Orders Show Agencies Opportunity for Hybrid Cloud Creating an Effective Framework for DoD’s Software Factories Realizing Upsides for Digital Security in the Hybrid Workplace A Future With AI and ML: The Power of Workforce Education Five Tips to Begin MFA Integration and Embrace Zero Trust The Vital Intersection Between Equity and Digital Transformation Equity as a Platform: Applying a New Mindset to Scale Innovation Harnessing the Right Data for Evidence-Based Equity From EO to Action: Human Factors of Enabling a Cyber Safety Review Board For Equity in Government Services, It’s Time to Change the Paradigm Critical Questions to Ask When Considering Explainable AI (XAI) for Your Federal Agency The Telework Model for Government: COVID Lessons for Building an Effective Workforce DevSecOps: 4 Steps for Mitigating the Next Cyber Attack in Your Federal IT Environment Better Cyber Hygiene Helps, but Federal Security Needs SASE Lift DoD, Feds Plot Top Cyber, Cloud Priorities for 2022 Cloud-Native Government: How to Transform With Intention DoD and VA Health Networks Face Growing Threat From Medical-Device Vulnerabilities New Federal Cybersecurity Requirements: How Agencies Should Implement a Zero Trust Architecture Protecting Our Nation Through Big Data Analytics Three Ways COVID-19 Altered Federal, State IT Budget Allocations Ransomware is More Than a Cybersecurity Issue From Me to We: Take the Mission Further With Multiparty Systems Anywhere, Everywhere: Integrating Your Virtual Workplace ‘I, Technologist’: Empowering Innovators in the Federal Workforce Mirrored World: Digital Twins Report for Duty Across Government Stack Strategically: Rearchitecting Government for What’s Next
5G Enables AI at the Edge
MeriTalk Sta · 2022-09-03 · via MeriTalk

By Michael Zurat, Senior Solutions Architect, GDIT

5G, Artificial Intelligence and Edge Computing have been areas of focus in the IT space for some time. What’s been given less attention, until recently, is how these three powerful technologies interact with one another and how, as one example, 5G is precisely what enables AI capabilities at the edge.

The proliferation of data-creating devices – whether that’s smart phones, Internet of Things (IoT) devices or drones – means that the sheer volume of data that exists is too large for humans to examine, and it has been for a while now. AI algorithms enable us to identify patterns and outliers and to either address a problem or pinpoint the things that require human intervention. 5G enables us to deploy those algorithms faster and more securely to devices at the edge, making them more powerful and capable than ever before.

Massive Machine-To-Machine Connectivity

Here’s why: 5G enables massive machine-to-machine connectivity. This allows for connected sensors and devices to “speak” to each other – sometimes without connecting to an enterprise or hub, such as in a mesh network. This allows for devices to manage themselves and react to data inputs from other devices, even without connecting to a cloud or centralized server. By leveraging embedded algorithms and even machine learning at the edge, we’re at the beginning of what will become a smart and independent mesh network of devices.

One example is how smart city traffic lights can automatically adjust to control or regulate the flow of traffic without communicating to a central server. As edge computing like this becomes ubiquitous, it will start to compete with the cloud as a compute and storage commodity. This may provide alternative physical locations for storage and compute for existing cloud vendors, and it could disrupt them altogether with potential new offerings from cellular network operators.

We’re already seeing the beginning of this from content distribution services. Netflix stores data in massive data centers in Virginia and California, but locally they’re using Akamai relays to cache data at the neighborhood level.

Blurred Lines Demand Advanced Cybersecurity

In this example and hundreds like it, as data moves from place to place with encryption at both ends, 5G and edge are, in effect, blurring the lines and creating a larger and more diverse attack surface in need of advanced cybersecurity. On top of that, more complex system architectures are built on more complex Infrastructure as a Service (IaaS), Software as a Service (SaaS) and Platform as a Service (PaaS) services that abstract the cloud and edge compute and storage locations. There are also more complex layers of containerization involved. No longer will cyber teams be able to think about security in local, cloud or on-prem contexts.

In environments where everything is virtualized and when it’s not exactly clear where the data is at any given moment, or when serverless systems are being leveraged, cybersecurity becomes more important than ever. So, too, does having a secure software supply chain. Look no further than the recent log4j breach.

As ever-more complex systems enable ever-more complex capabilities, it can be easy to focus on the delivery of functionality without looking back at how and what software is being used and how secure it is. The stakes are even higher for government and Department of Defense customers and their mission partners. As a systems integrator, GDIT has broad and deep capabilities that address these complexities and the stakes – both today and for the future. This includes our 5G Emerge Lab that proves out 5G solutions and demonstrates how we can securely connect and protect 5G-enabled devices, data, and applications across the broader enterprise.

Underpinning Technologies Paved the Way

Paving the way for what’s to come with regard to AI at the edge are a host of underpinning technologies. Containerization, as mentioned above, helps to quickly move applications into the cloud. Virtualization abstracts applications from physical hardware. Graphical Processing Units, or GPUs, allow us to accelerate workloads. Gaming engines gave us the blueprint for reusing software components or to more quickly port applications to other platforms.

Today, GDIT is leveraging these advances as well as the capabilities offered by 5G to enable AI at the edge on a diverse array of use cases – from training and simulations that leverage virtual reality on edge devices, to medical trainings with smart mannequins. We are also exploring how to use AI and guided assistance within Denied, Disrupted, Intermittent, and Limited bandwidth (DDIL) environments. Another use case involves deploying smart warehouse technology on edge devices for logistics and supply chain management purposes.

What is clearer than ever is that teams are just scratching the surface of the enormous potential of AI at the edge. 5G, and the continued bandwidth enhancements that will come after it, will expand that potential exponentially. And we stand ready to capitalize on it, exploring the art of the possible, for customers.