LE_VECTOR provides a unified orchestration platform that translates operator‑defined doctrines into executable, synchronized plans for heterogeneous air, ground, surface, and underwater autonomous assets. Its open‑architecture API and real‑time synchronization mesh enable secure, low‑latency coordination, conflict resolution, and state monitoring across legacy and third‑party platforms, supporting defense ministries, joint‑force commands, and OEMs through a software‑licensing model.
Funding
Funding not disclosed
Founders
Product
Problem
Coordinating fleets that span air, ground, surface, and underwater domains requires multiple proprietary control stacks, leading to fragmented command, high integration costs, and vendor lock‑in. Operators also struggle to translate high‑level doctrines into synchronized maneuvers across heterogeneous sensors and effectors in real time.
Solution
LE_VECTOR delivers a single orchestration layer that ingests an operator‑defined doctrine—roles, rules, constraints—and compiles it into executable plans for mixed autonomous assets. The platform distributes these plans over a secure mesh, ensuring each vehicle receives the appropriate maneuver fragment while maintaining global timing coherence. An open‑architecture API set enables direct integration with legacy and third‑party hardware without replacing existing flight or navigation stacks. Real‑time synchronization, conflict resolution, and state monitoring are handled centrally, allowing operators to adjust tactics on the fly and preserve mission intent across dynamic environments. The solution is offered under a software‑licensing model, giving manufacturers and end users the flexibility to scale deployments without vendor lock‑in.
Target Audience
Primary customers are defense ministries, joint‑force command units, and OEMs of autonomous platforms that require coordinated multi‑domain operations, as well as contractors delivering mission‑critical ISR, strike, and logistics services.
Features
- Doctrine engine that encodes high‑level intent into role‑based, constraint‑driven executable plans for multi‑domain swarms
- Open‑architecture integration layer with REST/ROS2 and proprietary SDKs, supporting air, ground, surface, and underwater platforms
- Real‑time synchronization protocol that guarantees temporal coherence for coordinated ISR, strike, and logistics missions
- Distributed state management and conflict‑resolution module that deconflicts overlapping sensor footprints and effectors in milliseconds
- AI‑augmented decision loop (detect‑decide‑act) that can incorporate human‑in‑the‑loop inputs and onboard analytics
- Secure communications mesh with adaptive relay placement to maintain connectivity in degraded or contested environments
- Modular plug‑in framework for electronic warfare, jamming, and time‑windowed operations, allowing rapid capability insertion
- Web‑based mission dashboard with live telemetry, plan visualization, and role‑specific command overrides