G-ROGUE
Edge Computing Meets SATCOM In The Field
G-ROGUE is a low SWaP SATCOM-enabled platform with GPU acceleration. Austere environment ready.
THE PROBLEM
Field Teams Struggle To Process Data At The Edge
Field teams can’t perform on-device processing without bulky computers.
GPU processing demands exceed what portable radios can deliver.
Low SWaP requirements prevent deploying advanced SATCOM platforms to austere locations.
THE SOLUTION
G-ROGUE Combines SATCOM and GPU Processing In One Low SWaP Platform.
GPU-accelerated SDR enables on-device data processing.
Integrated GPU eliminates need for separate computing equipment.
Low SWaP design enables deployment to extreme environments.
Unlock novel CONOPs that leverage government-owned waveforms.
How It Works
Low SWaP, SATCOM-enabled, GPU-accelerated SDR That Unlocks Field Edge Data Processing
G-ROGUE lets field teams process data at point of collection through an integrated GPU, SATCOM-enabled platform.
Onboard computing for field analytics
G-ROGUE’s integrated GPU enables processing of mission-intensive applications—imaging analysis, signal processing, machine learning—directly on the platform at point of collection.
Key Capabilities
- Integrated GPU for onboard processing
- Mission-intensive computing at field edge
- Real-time data analysis without ground delays
Minimal size, weight, power footprint
G-ROGUE’s low SWaP design enables deploying SATCOM platforms with GPU processing to austere locations where traditional heavy systems cannot operate.
Key Capabilities
- Low size, weight, and power consumption
- Austere environment deployment capability
- Extreme location operational reach
Adaptable RF for changing environments
G-ROGUE’s modular hardware and externally swappable RF front end enable adapting to different RF environments and frequency requirements.
Key Capabilities
- Modular COTS hardware components
- Externally swappable RF front end
- Mission-specific frequency configuration
Device-to-device BLOS over SATCOM networks
Integrated SATCOM enables reaching distant teams covertly—device-to-device over SATCOM networks—enabling communications impossible with terrestrial-only systems.
Key Capabilities
- Device-to-device BLOS over SATCOM
- Government-owned Infil/Exfil waveforms
- Covert operational capability
ATAK-compliant interface for military operations
ATAK compliance enables immediate deployment. Military users can operate G-ROGUE at first touch without training.
Key Capabilities
- ATAK-compliant plug-in interface
- Military-standard command control
- Immediate operational capability
Advanced processing enables new operational approaches
GPU co-processing supports novel operational concepts—advanced waveforms, complex processing requirements, mission-specific algorithms—enabling operational approaches traditional platforms cannot support.
Key Capabilities
- GPU co-processing enables novel CONOPs
- Supports government-owned Infil/Exfil waveforms
- Advanced processing capabilities at field edge
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Integrated CPU and GPU02
70 MHz - 6 GHzSDR Frequency
03
Hot-swappable Battery04
Built in GPS Module05
Externally Swappable RF Module06
5.9 x 2.6 x 1.6 in.Size
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2.2 lbs.Weight
08
9-24 VDCInput Power
FAQ
Common Questions About GPU-accelerated SATCOM SDR
What is G-ROGUE and how does GPU acceleration enable field operations?
G-ROGUE is a low SWaP (size, weight, power) SATCOM-enabled platform with integrated GPU acceleration enabling advanced processing at the field edge. GPU co-processing supports novel operational concepts with government-owned Infil/Exfil waveforms and device-to-device beyond-line-of-sight communications. Integrated GPU enables operations impossible with traditional field SDRs—advanced processing capabilities directly on platform without requiring ground station support.
How does G-ROGUE differ from ROGUE Radio?
G-ROGUE integrates GPU co-processing capability enabling novel operational concepts while ROGUE emphasizes multi-transport communications redundancy and multi-waveform network diversity. G-ROGUE’s GPU acceleration enables processing-intensive missions requiring advanced co-processing at field edge. ROGUE focuses on accessing multiple networks simultaneously through multi-transport architecture. Both platforms support government waveforms and ATAK interfaces but serve different mission requirements—G-ROGUE for processing-intensive operations, ROGUE for communications diversity.
What operational concepts does GPU co-processing enable?
G-ROGUE’s GPU co-processing enables novel operational concepts with government-owned Infil/Exfil waveforms supporting advanced field operations impossible with traditional SDR platforms. GPU capability unlocks operational approaches requiring advanced processing—complex waveform support, mission-specific algorithms, real-time field processing. Traditional field radios lack GPU capability limiting operations to basic communications only where G-ROGUE enables advanced mission concepts.
What is low SWaP and why does it matter for G-ROGUE?
Low SWaP means minimal Size, Weight, and Power consumption enabling deployment to austere environments where traditional systems cannot operate. G-ROGUE’s low SWaP design combined with GPU acceleration enables deploying advanced processing capability to extreme locations—foot deployments, helicopter insertion, covert positions. Traditional GPU systems are power-hungry and require cooling, preventing deployment to austere locations where G-ROGUE’s low SWaP enables advanced capability reaching extreme environments.
Can G-ROGUE operate in GPS-denied or communication-denied environments?
Yes. G-ROGUE enables device-to-device beyond-line-of-sight communications leveraging SATCOM networks for connectivity in GPS-denied and communication-denied environments. On-platform GPU processing enables advanced operations without relying on ground station connectivity. Field teams maintain communications and processing capability despite denied environments where traditional systems require ground infrastructure support.
What waveforms does G-ROGUE support?
G-ROGUE supports government-owned Infil/Exfil waveforms and device-to-device beyond-line-of-sight messaging enabling covert operational concepts. Multi-waveform capability enables accessing diverse operational networks. GNU-Radio compliance enables rapid waveform development for deploying new capabilities supporting novel operational requirements.
How quickly can developers add new processing applications?
G-ROGUE’s Kubernetes-based micro-services architecture enables rapid deployment of new applications and algorithms. Platform-as-a-Service capability enables hosting third-party applications enabling flexible capability expansion. Containerization approach reduces development timeline for deploying new processing applications enabling rapid innovation supporting emerging mission requirements.
What makes G-ROGUE suitable for covert operations?
G-ROGUE’s government-owned Infil/Exfil waveforms enable covert operational concepts where traditional communications expose operational activity. Low SWaP enables deploying to extreme covert locations traditional systems cannot reach. GPU co-processing enables advanced operational concepts supporting covert mission requirements impossible with traditional field platforms.
How does integrated GPU processing improve field operations?
G-ROGUE’s integrated GPU enables advanced processing directly on the platform at field edge without requiring ground station processing or data transmission. On-platform processing eliminates data transmission vulnerability and ground processing delays enabling immediate operational response. GPU integration delivers processing-intensive capability from a single portable device where separate systems would increase equipment burden and logistics complexity.
What special operations and intelligence units use G-ROGUE today?
G-ROGUE supports special operations and intelligence units requiring advanced processing capability in austere and denied environments. Units deploying to extreme locations leverage G-ROGUE for processing-intensive operations combining SATCOM connectivity with onboard computing capability. Advanced processing combined with low SWaP enables novel operational concepts supporting special operations requirements.
Ready To Enable Edge Processing In Austere Environments?
Whether you need mission-intensive processing, covert operations, or extreme location deployment, G-ROGUE delivers GPU-accelerated SATCOM capability in a single low SWaP unit.