A data centre is a promise: 99.999% availability. RADI is being engineered as the airspace layer of that promise — because every SLA that ends at the fence is a fiction.
A data centre in a Gulf summer runs its diesel gensets or fails within minutes. A drone onto a fuel-day-tank is a mains-out event that lasts until you find another tank.
Chiller plant on the roof is an underprotected soft target. Design intent: rooftop sensor coverage plus soft-kill for approach denial.
Fibre entry vaults are usually mapped on public planning drawings. Drone-delivered attack on a vault takes a facility offline for the duration of a splice.
Drones parked overhead, listening for stray wireless — Wi-Fi, BLE, OOB management. The exfiltration channel that never touches a network.
Rooftop and perimeter masts around every campus. Redundant coverage over genset yards and chiller plant.
Fusion into the data-centre BMS / DCIM as an availability event source, not a separate console.
Directional soft-kill sited to avoid RF emission into the customer wireless envelope.
Multi-region federation for hyperscalers — one air picture across every campus, every geography.
HARAS being designed as dual-redundant, hitless-firmware, dual-uplink. The counter-drone system does not become the single point of failure between the drone and the SLA.
SAMT emissions being engineered to stay inside the operator perimeter — customer wireless, tenant infrastructure, and neighbouring facilities are never affected.
Design intent: HARAS emits ArcSight, Splunk, and Sentinel-compatible events. The counter-drone system becomes a security feed in the SOC that’s already there.