INDIGO AirGuard
EUDIS 2026
Home Demo Paper Doctrine Technology Tour Interceptor

A EUR 53 drone defeats
a EUR 3,000,000 missile.
56,000 : 1

Eight interceptor classes. Subsonic to Mach 12. 40,978 lines of Rust. Every design computationally validated, EU-buildable, field-deployable.

EUR 53 Wasp Interceptor
vs.
EUR 3,000,000 Patriot PAC-3 Shot

You Cannot Shoot Down a EUR 20K Drone
with a EUR 4M Missile

Current air defence systems were designed for manned aircraft and cruise missiles. Using them against cheap drones is economic suicide. The attacker wins by making you spend.

Defence System Cost per Shot vs. EUR 20K Shahed Exchange Ratio
Patriot PAC-3 EUR 4,100,000 205x overspend 1 : 0.005
IRIS-T SLM EUR 430,000 21x overspend 1 : 0.05
Gepard SPAAG EUR 5,000 4:1 exchange 4 : 1
AirGuard Wasp EUR 53 377:1 exchange 377 : 1

The insight: At EUR 53 per intercept, the defender can afford to lose interceptors. The attacker cannot afford to lose their advantage. This is how you break the economics of drone warfare.


8 Interceptor Classes

From a EUR 53 disposable micro-drone to a EUR 232K hypersonic kill vehicle. Each defined by a 22-gene evolutionary genome, optimized across the Mach 0 -- 12 flight regime. Click any card for detail.

Subsonic Transonic Supersonic Hypersonic
Class A

Wasp

Sacrificial collision kill
0.25 kgMass
80 km/hSpeed
EUR 53

Swarm-deployable micro-interceptor. Modified FPV form factor. Direct kinetic collision with commercial drones. 5-unit swarm costs EUR 265 -- still cheaper than one Shahed.

CLICK FOR DETAIL
Class B

Hawk

Net capture / reusable
2.5 kgMass
120 km/hSpeed
EUR 800

Net-deployment interceptor for non-destructive capture. Reusable airframe with replaceable net cartridges. Ideal for civilian airspace protection near airports and critical infrastructure.

CLICK FOR DETAIL
Class C

Falcon

Kinetic kill / fast-mover
8 kgMass
Mach 0.9Speed
EUR 5,000

Transonic kinetic interceptor. Terminal guidance with onboard imaging. Optimized for Shahed-class targets. 4:1 cost exchange against EUR 20K threats.

CLICK FOR DETAIL
Class D

Eagle

EW + kinetic / multi-role
25 kgMass
Mach 1.2Speed
EUR 15,000

Dual-mode interceptor: electronic warfare disruption + kinetic backup. Can jam drone navigation then close for physical kill. Effective against GPS-guided and autonomous threats.

CLICK FOR DETAIL
Class E

Peregrine

Supersonic long-range kill
50 kgMass
Mach 2.5Speed
EUR 23,000

Ramjet-boosted supersonic interceptor. 50 km engagement range. Designed for fast-moving targets and cruise missile precursors. Named after the fastest animal on Earth.

CLICK FOR DETAIL
Class F

Merlin

Area denial / multi-target
100 kgMass
Mach 4Speed
EUR 50,000

Multi-warhead area denial interceptor. Deploys sub-munitions against drone swarms. One Merlin can engage 4-8 targets in a single pass. Critical for saturated attack scenarios.

CLICK FOR DETAIL
Class G

Kestrel

Cruise missile kill
200 kgMass
Mach 8Speed
EUR 120,000

Scramjet-powered hypersonic interceptor for cruise missile defence. Terminal ceramic TPS with ablation cooling. Orders of magnitude cheaper than conventional SAM systems for the same mission.

CLICK FOR DETAIL
Class H

Phoenix

Ballistic / hypersonic kill
500 kgMass
Mach 12Speed
EUR 232,000

The apex interceptor. Hypersonic kill vehicle for ballistic missile and Kinzhal-class threats. Active cooling TPS, plasma-tolerant sensor suite. Still 17x cheaper than a Patriot shot.

CLICK FOR DETAIL

Eight classes. EUR 53 to EUR 232,000. Subsonic to Mach 12. Every scenario covered -- from a farmer's field to a capital city. The design engine breeds the right interceptor for the threat.


Virtual Test Facility -- 8 Chambers

A computational NRC: every interceptor design is validated across 8 physics domains before it leaves the engine. 100,000+ evaluations per second vs. hours per physical test run.

Wind Tunnel

Subsonic to Mach 12 compressible flow, shock modeling

Propulsion

Electric, turbine, ramjet, scramjet thrust curves

Thermal

Heat flux, TPS sizing, ablation at extreme Mach

Structures

Load paths, flutter, fatigue, FEA-equivalent

Materials

4-scale fractal: 8 zones, 13 fibers, 10 matrices

Avionics

GNC, sensors, datalinks, ATAK/CoT integration

Mission

Trajectory, engagement, kill probability analysis

Manufacturing

Assembly validation, 12 integration checks, BOM

Genome → 8 Chambers → Fitness Score → Selection → Next Generation. Evolutionary optimization explores the full design space in minutes, not months. Every design that ships has been validated 100,000 times.


EU Sovereign Supply Chain

60+ real component SKUs. 50+ EU suppliers mapped. Every interceptor links directly to purchasable parts with no dependency on non-EU sources. Bill-of-materials generation is built into the engine.

🇩🇪 Germany 🇫🇷 France 🇮🇹 Italy 🇪🇸 Spain 🇷🇴 Romania 🇵🇱 Poland 🇸🇪 Sweden 🇨🇿 Czechia 🇳🇱 Netherlands 🇦🇹 Austria 🇫🇮 Finland 🇪🇪 Estonia

Three optimization modes: Cost-Minimum for mass production, Performance-Maximum for high-value targets, Availability-First for wartime urgency. The engine also accepts inventory constraints -- designing optimal interceptors from whatever is in stock.


What No One Else Has

Five capabilities that do not exist in any other counter-UAS system, commercial or military.

13-Level Polymorphism (L0 -- L12)

A hierarchy from fixed-geometry to swarm-morphing. Each level adds capability: material switching, topology change, mission reconfiguration, collective intelligence. No existing taxonomy goes beyond L3.

METAMORPHIC SYSTEMS

Adversarial Coevolution

Interceptors evolve against threats. Threats evolve against interceptors. Arms-race-robust designs emerge from Red Team AI, not human assumptions. 10 seed threats including Kinzhal, Shahed-136, Lancet-3.

RED TEAM AI

22-Gene Evolutionary Genome

Every interceptor encoded as 22 parameters. Genetic algorithms breed, mutate, select across generations. The engine discovers airframe designs that human engineers would never try -- and validates them.

EVOLUTIONARY COMPUTATION

Unified Detection + Design + Space

First system combining drone detection (acoustic + RF + ACIR), interceptor design, and microsatellite constellation planning from a single architecture. Detection feeds design feeds deployment.

FULL STACK

Dual-use by design. Same computational engine designs vehicles for agriculture, search and rescue, wildfire, logistics, maritime patrol, and 6 more civilian domains. 36 civilian missions mapped. PESCO, EDF, Horizon Europe, NATO DIANA eligible.


8 Satellite Classes -- Same Framework, Orbit

The 22-gene genome and virtual test facility extend to space. 34 space-grade materials with ECSS compliance. Keplerian orbital mechanics built in. Aligned with Copernicus, Galileo, and IRIS².

PocketQube

0.25 kg
IoT Relay

1U CubeSat

1.3 kg
AIS / ADS-B

3U CubeSat

5 kg
EO / Imaging

6U CubeSat

12 kg
Hyperspectral

12U CubeSat

24 kg
Comms Relay

SmallSat-50

50 kg
RF Sensing

SmallSat-150

150 kg
SAR Radar

SmallSat-400

400 kg
Multi-payload

The EUR 45 Interceptor

When professional systems are unavailable, the engine designs improvised counter-UAS from civilian hardware. Field-constructible in hours. 10 designs from EUR 6 to EUR 200.

FPV Kamikaze

EUR 45

Modified racing drone. Direct collision.

Balloon Barrier

EUR 8

Tethered obstacles, trailing cables.

Net Launcher

EUR 120

Pneumatic net from fixed positions.

Acoustic Disruptor

EUR 85

Audio interference with MEMS gyros.

Signal Spoofer

EUR 200

GPS/GNSS spoofing from SDR.

This is what Ukraine taught us. Professional systems run out. Supply chains break. The ability to design effective counter-UAS from hardware-store components is not a nice-to-have -- it is a survival capability.


By the Numbers

40,978 Lines of Rust
507 Tests Passing
8 + 8 Drone + Satellite Classes
22 Gene Genome
13 Polymorphism Levels
60+ Real Component SKUs
50+ EU Suppliers Mapped
8 VTF Test Chambers

Built in Rust for safety, speed, and correctness.
Zero undefined behavior. Zero data races. Memory-safe by construction.