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Defence & Aerospace · TRIpura · Air-gapped

Seventy-two hours of autonomy in a deliberately denied network

Edge inference, mesh re-formation and local command picture with the uplink cut for the duration of the exercise.

Operational Metrics
72 h
Continuous operation with no reachback
0
Operator interventions required
< 4 min
State reconciliation on link restore
100%
Local mission autonomy preserved

The situation

Field exercises under simulated electronic warfare conditions required deployed reconnaissance units to maintain complete situational awareness and coordinated team decision-making when primary satellite and high-bandwidth long-range RF uplinks were jammed or severed.

Existing commercial and defense cloud-dependent architectures suffered total failure: command consoles froze, local sensor pipelines stalled, and mission coordination broke down when contact with headquarters was lost.

What constrained the design

Operating in contested environments imposes extreme computing and communications limits:

  • —Assumed total loss of cloud reachback for periods ranging from hours to several days.
  • —Hostile electronic warfare and jamming causing ad-hoc network fragmentation and intermittent hops.
  • —Zero ITAR hardware requirements — software stack had to operate on commercial-off-the-shelf sovereign ruggedized silicon.
  • —Strict deterministic recovery when communication channels re-open without state corruption or split-brain conflicts.

What we deployed

The TRIpura suite was deployed across tactical edge nodes. KalAMOS executed local machine learning inference and sensor classification directly on edge compute. NobisGRID maintained a peer-to-peer resilient wireless mesh that dynamically rerouted whenever terrain or electronic interference dropped a hop.

BoSC3 utilized a decentralized conflict-free replicated data type (CRDT) consensus model with causal ordering. Nodes recorded decisions and mission state locally without waiting for unreachable peers. When satellite connectivity was restored, the distributed mesh synchronized all state changes across 72 hours in 3 minutes and 42 seconds.

What it cost to run

The system operated continuously throughout the 72-hour simulated denial with zero manual resets or configuration overrides by field personnel.

Where it stands now

The sovereign TRIpura architecture is now scheduled for validation across multi-domain joint tactical testing exercises.

Underlying Scientific Research

Publications behind this deployment

Confidentiality & Non-Disclosure Assurance
Bilateral MNDA Standard

Client identities held under strict non-disclosure.

AdviQ · Sovereign assurance protocol

Every metric published across our engineering dossiers was generated by the client’s own operational instrumentation, reviewed jointly under bilateral NDA, and cleared for anonymised release. Technical architecture blueprints and direct peer reference calls with engineering leadership are available to verified counterparties under matching NDA terms.

01 · Operational Exhaust
Direct Telemetry

Production performance figures captured directly from client cloud monitoring and verified against SLA targets.

02 · Peer Reference Calls
Executive Verification

Direct peer briefings with enterprise CTO, VP Engineering, or Security leadership arranged under bilateral non-disclosure.

03 · Cleared Dossiers
Architecture Blueprints

Unredacted component topologies, schema definitions, and migration playbooks available for qualified in-house review.

Mutual Non-Disclosure Agreement (MNDA) executed within 24 business hours.

Engagement Dossier Facts

ReferenceUE-CS-2026-006
ProgramTRIpura
DeploymentAir-gapped, field
EnvironmentDDIL (Denied, Degraded, Intermittent)
ExportITAR-free
Node computeTactical edge micro-clusters
ArchitectureDecentralized CRDT consensus
IndustryDefence & Aerospace
DeploymentAir-gapped
Executive Narrative
Read the customer outcome summary
View executive story →
Strategic Advisory

Start with the Inventory, not the algorithm.

AdviQ · Post-Quantum Readiness Framework

A quantum risk assessment produces the definitive cryptographic bill of materials (CBOM) and empirical exposure ranking. Most organizations find the risk order substantially different from asset criticality.
Tripura Research CommitmentsGuaranteed
  • ◆Deterministic in-silico simulation models
  • ◆Pre-wet-lab target viability validation
  • ◆Transparent mathematical formulation & documentation
  • ◆Full data provenance and cryptographic auditability
Modeling fidelityPre-clinical validated