A single 25-kg quadcopter can shut a distillation column for a week. RADI is being engineered as the deterrence layer around the assets your economy depends on — from wellhead to jetty.
Repeated slow flyovers logging tank layout, guard rotations, pipeline valve gear — the preparation phase we intend to detect.
Small quadcopters carrying incendiary or shaped-charge payloads onto storage-tank roofs. One tank breach, one refinery down.
Hostile drones masquerading as inspection UAVs, exploiting the fact that pipelines are routinely overflown by legitimate operators.
FPVs launched from small boats offshore, tethered to fibre optics — jam-proof, GNSS-proof, and closing on a marine terminal in under two minutes.
Fence-line masts at every perimeter section, plus rooftop masts over tank farms and terminal jetties.
Sensor fusion + a single air picture across the whole facility, feeding the plant SOC.
Directional soft-kill at every gate and tank berm — cut the link, land the drone, keep evidence.
Kinetic response for the fibre-optic and encrypted-swarm threats that soft-kill cannot solve.
RADI hardware being designed to accommodate ATEX-zoned deployment paths (Zone 2 / Div 2) around loading arms, tank-top installations, and safe-zone perimeters — with in-zone versions to follow.
Every RADI installation is being engineered as an air-gapped OT enclave — no cloud dependency, no vendor egress, no ADNOC-perimeter compromise via the drone-defence system.
HARAS is being designed with hot-standby pair failover and hitless firmware rollout, so a refinery never sees a counter-drone system reboot.