Future track · Simulation
Autonomous feed distribution across four ponds
A dedicated mission simulation: the drone launches from the dock station, flies to Pond 1, dispenses a calibrated feed pass, returns to the dock for a refill, then repeats for Pond 2, 3 and 4. This is a future concept — shown here as a mission model, not an implemented product.
15 · Autonomous Drone Feed DistributionFUTURE
Dock → pond → dock refill mission loop
Each pond is fed on its own sortie so hopper capacity, battery reserve and return-to-home margins stay bounded.
Loading field twin…
Mission state
Docked — mission not started
Drone is parked on the dock station with a loaded hopper. Start the mission to fly the four-pond feeding route.
Feed Drone · Mission Console
FUTUREBattery
100%
Hopper
100%
Dispensed
0.0 / 15.0 kg
Altitude
0.5 m
Pond feed log
- Pond 1queued
- Pond 2queued
- Pond 3queued
- Pond 4queued
Route timeline
- Dock — arm & take off
- Transit → Pond 1
- Dispense over Pond 1
- Return → Dock
- Dock — refill hopper
- Transit → Pond 2
- Dispense over Pond 2
- Return → Dock
- Dock — refill hopper
- Transit → Pond 3
- Dispense over Pond 3
- Return → Dock
- Dock — refill hopper
- Transit → Pond 4
- Dispense over Pond 4
- Return → Dock
- Mission complete — landed
Mission loop
- Arm and take off from the dock pad after pre-flight checks
- Cruise leg to the target pond along the planned route
- Calibrated broadcast pass with dispensing feedback
- Return to dock, refill hopper, advance to the next pond
Safety envelope
- GPS lock and geofence acknowledged before arming
- Battery and hopper reserve checked at every dock stop
- Obstacle handling and return-to-home fail-safe
- Aborting a mission always ends at the dock station
Platform boundary
- Separate safety-critical product track
- Not coupled to motor-control logic
- No unrestricted AI actions over flight
- Feed logs sync to the platform after each mission