Alures Space — Orbital compute (01) Systems in development

Orbital compute layer built for data infrastructure beyond Earth.

Alures develops radiation-aware edge compute for spacecraft and relay systems that need to process data before the next ground contact.

Orbit-specific

Radiation analysis

Onboard

Inference and data triage

Pass-aware

Communications planning

Thermally bounded

Compute scheduling

(02) The company

Alures is an orbital compute company. We develop onboard inference, autonomy, and storage systems so spacecraft can respond to sensor data, navigation events, and payload anomalies when a ground link is unavailable or too slow for the mission need.

(05) Process

One clear path from mission need to orbital compute

We qualify the orbit, payload, autonomy loop, and ground interfaces before hardware enters the mission plan.

01

Mission fit review

We map orbit, payload type, latency budget, compute load, and failure modes with your systems and operations teams.

Output: capacity model + risk register

02

Architecture baseline

Node class, redundancy model, runtime, and ground-interface contracts are baselined through mission design reviews.

Output: ICD + verification plan

03

Integration window

Alures simulates your workload, hardens the deployment path, and validates command, telemetry, and rollback behavior.

Output: integration build + verification report

04

Orbit operations

Once deployed, we monitor compute health, model performance, storage pressure, and task queues across passes and eclipses.

Output: operations dashboards + scheduled reviews

Orbital operations concept — onboard processing before downlink

(06) Blockchain compute

Blockchain workloads under orbital constraints

Proof-of-work mining is power intensive, and nearly all input power becomes heat that a spacecraft must reject through its thermal-control system. Feasibility therefore depends on the mission power budget, radiator capacity, orbit, and duty cycle.

Alures treats mining as an interruptible background workload, scheduled only within payload power and temperature margins. Other blockchain tasks, including verification and indexing, can use the same signed-deployment and telemetry controls.

Power-bounded

Scheduled within mission margins

Thermally scheduled

Temperature and radiator limits

Interruptible

Checkpoints and controlled restart

(07) Contact

Put compute
in the loop.

Tell us about your orbit, payload, latency budget, and ground architecture. We will map where orbital compute changes the mission.