HPC-scale cyber-threat detection using neuromorphic processing
Pennsylvania State University
Twelve years building what the Department of Defense and the Department of Energy ask for and cannot buy. Real-time cybersecurity, neuromorphic computing, hyperspectral imaging and radar, taken from first principles through to fielded hardware and software.
Our cybersecurity work runs alongside the perimeter tools an organisation already has. It is built to reduce the likelihood that an intrusion succeeds, and to surface the ones that do sooner.
Fourteen federal programs across cybersecurity, imaging, radar, materials and hypersonics. Each one starts as a problem with no answer yet and ends as something that works outside a laboratory.
Work delivered with Lockheed Martin, Idaho National Laboratory, Penn State, Duke and North Carolina State, under Navy, Air Force, DARPA, MDA, DHS and Department of Energy sponsorship.
We design the method, build the hardware and software around it, and carry it through to something a program office can actually field. No handoff to a third party in the middle.
Real-time network defense through to source code, plus the materials and mobile-security work that came out of the same research floor.
Real-time network defense that learns what normal traffic looks like on your network, then flags what does not fit. The same models run in a cloud core or on a low-power chip at the edge, so detection happens where the traffic is.
Traffic is scored as it arrives rather than in a batch after the fact.
One engine, deployable on CPU, GPU or neuromorphic silicon at the edge.
Models retrain continuously instead of waiting on a signature update.
Interface preview. Layout is representative of the product console; values shown are illustrative, not measured performance.
CyberNeuro-RT scaled up to an operations centre. Vanguard watches an entire estate rather than a single segment, and acts on what it finds without waiting for someone to read an alert queue.
One picture across datacentre, campus and remote sites.
Containment steps run on detection instead of after triage.
Interface preview. Layout is representative of the product console; values shown are illustrative, not measured performance.
Finds exploitable defects in source code before the code ships. CodeLens reads a repository the way a reviewer would, ranks what it finds by how reachable it actually is, and puts the short list in front of the team that has to fix it.
Reachable defects first, so the queue is short enough to work through.
Runs against the repository on the schedule the team already keeps.
Interface preview. Layout is representative of the product console; values shown are illustrative, not measured performance.
Recovers gold, copper and other metals of value from electronic waste electrochemically, at room temperature. Developed with Idaho National Laboratory and now commercialised.
Higher recovery than conventional processing, with far less reagent.
Runs at room temperature rather than through a smelter.
Interface preview. Layout is representative of the product console; values shown are illustrative, not measured performance.
Hardening for Android devices at the kernel, for fleets that leave the building and still have to be trusted when they come back.
Protection sits in the kernel, not in something a user can uninstall.
Designed around devices an organisation issues and has to account for.
Interface preview. Layout is representative of the product console; values shown are illustrative, not measured performance.
A joint venture, not a Quantum Ventura product and not wholly owned by us. Vulcan Ventura carries the radio-frequency and radar portfolio into programs that neither partner would take on alone.
About the joint ventureThe same three-step shape underneath the cybersecurity, imaging and radar work. What changes is the sensor at the front and the action at the end.
Network packets, hyperspectral frames, radar returns and optical sensors, taken in as they arrive.
Learned models score what is ordinary and what is not, running on GPUs or on low-power neuromorphic chips.
The decision reaches something that can use it, a firewall rule, an operator console, a tracking handoff.
Sponsored research with the Navy, the Air Force, DARPA, the Missile Defense Agency, Homeland Security and the Department of Energy, run alongside Lockheed Martin and the national laboratories.
Pennsylvania State University
Lockheed Martin · U. Wisconsin–Madison
Idaho National Lab · Colt Refining
Lockheed Martin
Lockheed Martin · University of Florida
North Carolina State University
Lockheed Martin · Bodkin Design
Lockheed Martin · Bodkin Design
Duke University
Lockheed Martin
No programs match that filter.
14 federal programs · 8 more behind the button
Federal program offices bring us problems that have no answer yet. In government work you cannot be a single-focused company.
Real-time network defense and source-code analysis
Neuromorphic and edge inference, verification and validation
UAV and concealed-contraband detection
Radar and signal processing, real-time simulation
Infrared beam control and optical recognition
Multi-sensor object detection and tracking
Ground-based threat detection on neuromorphic hardware
A multifaceted operation. In government work you cannot be a single-focused company.
Quantum Ventura Inc.
Operations
Quantum Guru · Unit R40, Burjuman
Distribution and support
Engineering
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