[Anti-Drone Training System]
ANTI-DRONE TRAINER M.I.L.E.S.
Realistic anti-drone training powered by the M.I.L.E.S. laser system.
Purpose of the trainer

For practicing skills to engage FPV drones using small arms and pump-action shotguns.
It simulates two-sided fire contact — shooter versus drone — in realistic scenarios without risk to life or equipment.
Suitable for tactical training, aiming practice, coordination, and decision-making.

System components
Shotgun
Small arms
FPV Payload
Combat gear
Additional equipment
Pump-action shotgun replica
Mass-dimensional replica designed for practising weapon-handling and shooting techniques.
TACTICAL AND TECHNICAL SPECIFICATIONS:
Electronics integrated into the replica.
Effective range up to 70 metres.
Beam simulates pellet spread.
2 W speaker.
Reload mode.
Autonomous operating time: 16 hours.
Supports leading moving targets (ability to fire on the lead).
Class 1 laser safety per DSTU EN 60825-1:2019.
Operating temperature: -20 °C to +40 °C.
Protection rating: IP65.
Weapon‑mounted equipment
Laser unit that mounts to a replica or to most combat small arms
TACTICAL AND TECHNICAL SPECIFICATIONS:
Electronics installed without any modification to the weapon.
Effective shot range: 1000 m (±100 m).
Class 1 laser safety per DSTU EN 60825‑1:2019.
Autonomous operating time: 16 hours.
Protection rating: IP65.
No ricochets.
Beam transmission through vegetation
Magazine reload mode.
2 W speaker.
Operating temperature: −20 °C to +40 °C.
Can operate with blank cartridges.
Product is codified.
FPV-mounted equipment
This trainer has proven itself not only as a tool for training FPV pilots in engaging personnel, but also as a system for anti‑drone exercises — including anti‑drone firing with anti‑drone shotguns and small arms — using the M.I.L.E.S. system.
TACTICAL AND TECHNICAL SPECIFICATIONS:
Payload mounting unit for drones (e.g., Mark 4 and other types).
Attachment platform for drone installation.
Display with statistics (number of targets hit and hits recorded on the payload).
Selectable difficulty modes (3 levels).
Autonomous operating time: 6–9 hours.
LED indicator visible to the pilot’s camera to signal a simulated hit.
Hit sensor for conducting anti‑drone infantry training with anti‑drone shotguns or small arms using M.I.L.E.S.
Vest and helmet cover
with hit‑registration sensors
TACTICAL AND TECHNICAL SPECIFICATIONS:
Total of 13 hit‑registration sensors.
Visual hit indicator visible up to 100 metres.
Haptic feedback on hit.
Autonomous operating time: 16 hours.
Protection rating: IP65.
Vest module with GPS positioning on an electronic map.
Provides 360° hit registration for the torso and head, plus GPS tracking.
Product is codified.

Sensors are mounted on the soldier’s personal helmet cover and vest. Each soldier carries 13 hit sensors in total.

Wireless shock bracelet (electrostimulation)
For practising reflex responses to being hit.
TACTICAL AND TECHNICAL SPECIFICATIONS:
Induces muscle contraction as hit feedback.
Adjustable feedback intensity.
Autonomous operating time: 6 hours.
Protection rating: IP65.
Stimulator safety level in accordance with medical standard DSTU EN 60601‑2‑10:2019.
Product is codified.
10‑INCH ANDROID TABLET
The system is intended to control training equipment and display combat statistics online.
TACTICAL AND TECHNICAL SPECIFICATIONS:
Fast charging: 33 W.
Display: 10.1" FHD+.
Battery: 20,000 mAh.
Certified to military standard: MIL‑STD‑810H.
Protection rating: IP68 and IP69K.
RANGE RADIO COVERAGE SYSTEM (SITE RADIO COVERAGE)
Wi‑Fi access points on a mounting bracket/mast. Purpose: wireless real‑time data transmission from the combat kits to the instructor’s tablet and remote control of the kits.
TACTICAL AND TECHNICAL SPECIFICATIONS:
Single Wi‑Fi access point provides coverage within a radius of up to 300 m.
Relay/mesh mode to extend coverage by adding additional access points.
Autonomous operating time for each access point: up to 9 hours.
Operating principle

A shooter using a pump‑action shotgun replica with integrated electronics, or a small arm fitted with a weapon‑mounted laser unit, engages a maneuvering FPV drone with aimed fire.

Hit sensors on the drone’s payload unit and on the soldier’s gear register impacts and display them via indicators (on the drone: red — shot down; blue — drone hit the shooter; on the soldier’s gear: red — hit by the drone). All statistics are recorded for later analysis.

Intended for practicing:

  • detection, aiming, and drone neutralization;

  • reaction speed and decision‑making;

  • tactical coordination between multiple shooters.

Additional components: wireless shock bracelet, instructor’s tablet, Wi‑Fi coverage.

Training variations
One‑sided — the shooter practices engaging the drone.
Two‑sided — the drone attacks the shooter; the shooter returns fire (training under live‑fire pressure).

When the drone is hit, the drone module lights up red;
when the shooter is “hit”, the soldier’s gear displays red indicators and the drone’s module shows blue.
All hit statistics are shown on the drone’s payload unit and in the instructor’s tablet software.

Additional tablet features
Track movement of the soldier and the drone.
Timestamp hits (record time of each hit).
Set the number of lives for the soldier.
Set ammo count.
Set partial‑hit radius.
Adjust wind direction and intensity.
View training statistics.
How It Works
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