Autonomous Agriculture: Difference between revisions

From Open Source Ecology
Jump to navigation Jump to search
(Created page with "*Follow-me aerial drone slave to terrestrial drone doing the work. *Landing pad on the above terrestial drone. *Multiple deck landing pad for 100% fly time with 1 hour charg...")
 
No edit summary
 
(3 intermediate revisions by the same user not shown)
Line 1: Line 1:
*Follow-me repeater infrastructure - one aircraft carrier stops and another continues
**Autocharging dock repeater: continuous uptime as 4 batteries of 15 minutes flight time charge 3 at a time
*Follow-me aerial drone slave to terrestrial drone doing the work.  
*Follow-me aerial drone slave to terrestrial drone doing the work.  
*Landing pad on the above terrestial drone.  
*Landing pad on the above terrestial drone.  
Line 9: Line 11:
*Automated harvest delivery
*Automated harvest delivery
*Storage vessels have bulk, metering, single seed deposit/extraction.
*Storage vessels have bulk, metering, single seed deposit/extraction.
*
*Automated tool changer: implement pickup and dropoff is automatic
*Iterative prototyping with non-automated infrastructure up to the point that architecture is worked out, then we go into the automation aspect
*Follow-me capacity for unlimited swarms
*Follow-me smart controls for side switching and other parameters for follow. Follow the master or follow the slave.
*Stackable power units
*Amphibious 5 medium vehicles for under water, above water, land, hovercraft, air, and tunnel
*Space frames for any size.
*Steel production for stock metal.

Latest revision as of 01:22, 6 May 2024

  • Follow-me repeater infrastructure - one aircraft carrier stops and another continues
    • Autocharging dock repeater: continuous uptime as 4 batteries of 15 minutes flight time charge 3 at a time
  • Follow-me aerial drone slave to terrestrial drone doing the work.
  • Landing pad on the above terrestial drone.
  • Multiple deck landing pad for 100% fly time with 1 hour charge time (one or unlimited batteries)
  • Auto charging - feet or other connection is made to landing pad for charging.
  • Aerial drones are equipped with rtk gps for precision agriculture - data collection, testing, fertilizing, IPM pod delivery, seeding, etc.
  • Control joystick with smartphone controls the route.
  • Advanced programming on desktop for mission control
  • Automatic seed dispensing for drones and terrestrial seed loading
  • Automated harvest delivery
  • Storage vessels have bulk, metering, single seed deposit/extraction.
  • Automated tool changer: implement pickup and dropoff is automatic
  • Iterative prototyping with non-automated infrastructure up to the point that architecture is worked out, then we go into the automation aspect
  • Follow-me capacity for unlimited swarms
  • Follow-me smart controls for side switching and other parameters for follow. Follow the master or follow the slave.
  • Stackable power units
  • Amphibious 5 medium vehicles for under water, above water, land, hovercraft, air, and tunnel
  • Space frames for any size.
  • Steel production for stock metal.