Evidence before claims.
Resolvix follows a staged validation pathway from deterministic simulation to hardware-relevant evidence and controlled field validation.
Simulation-backed and deterministic.
Resolvix follows a staged validation pathway from deterministic simulation to hardware-relevant evidence and controlled field validation. Simulation evidence is labelled as simulation evidence. Hardware evidence is labelled as hardware evidence.
The current state is Phase 0: architecture freeze, preserved simulation evidence and a claims register. The immediate next gate is Phase 1 — standalone modules and a deterministic Node Runtime MVP. Live RF, GNSS-contested and hardware-in-the-loop validation follow at Phase 3.
From simulation to deployment pathway.
Product architecture and evidence preservation
Architecture freeze, module inventory, preserved simulation evidence and a claims register. The current programme stage.
Standalone modules and Node Runtime MVP
Independently testable modules composed by a deterministic Resolvix Node Runtime. Module packaging and runtime alpha — the immediate next gate.
Adapter SDK and runtime equivalence
Platform Adapter SDK, ns-3 runtime equivalence, and a forward-hash-chain (FHC) crypto developer preview.
Platform adapters and hardware-in-the-loop
Linux, C2/message-bus, PNT and SDR/radio adapters, protected keys, and hardware-in-the-loop validation.
Controlled partner field pilot
A controlled field pilot with a qualified partner: operationally informed scenarios, defined success criteria and independent feedback.
Release candidate and general availability
Security and assurance review, integration hardening, release candidate and general availability.
Repeatable metrics, with and without Resolvix.
- Message delivery
- C2 latency
- Message freshness
- Sequence continuity
- Partition and rejoin confidence
- Custody continuity
- PNT confidence
- RF/link confidence
- Mission-state divergence
- Trust-state transitions
- Operator escalation
- Evidence traceability
- Constrained-node performance
POSEIDON — planned maritime scenario suite.
POSEIDON is a planned maritime validation scenario suite, designed to test HOLDFAST, SENTRY and VERITY under maritime communications loss, relay degradation, PNT uncertainty, node isolation, custody disruption and distributed sensing ambiguity. Its scenarios and generated evidence are future work, sequenced after the Node Runtime and platform-adapter architecture.
Phase 1 — standalone modules and Node Runtime MVP.
The immediate gate is packaging the modules and standing up a deterministic Node Runtime. We welcome discussions with defence, research, autonomy, RF, GNSS and SDR partners interested in the adapter, hardware-in-the-loop and controlled field-pilot phases that follow.