Seed Eco-Home Drones: Difference between revisions
Jump to navigation
Jump to search
(→Aerial) |
|||
Line 1: | Line 1: | ||
These are the types of drones that OSE is interested in developing and using. | These are the types of drones that OSE is interested in developing and using. | ||
=General Features= | |||
*Switching between mission planned and human controlled operation | |||
*Various sensors of all kinds | |||
*Open source hardware base throughout, culminating with microprocessor fabrication | |||
*Open source motors | |||
*Open source low cost controllers | |||
*Plastic 3D printed circuit boards, potted for mil spec | |||
*Generally mil spec for lifetime design aspects | |||
*Parts interchangeable between all media (aerial, terrestrial, aquatic, space etc) - ie, a product ecosystem | |||
*Construction set approach with [[WAAM]] for heavy machine parts | |||
*Induction furnace for WAAM-purposed wire drawing and aluminum motor winding wire drawing | |||
*Complete stackability in all media, with [[Freeloader Range Extension]] and aerial rechargin | |||
*Aerial recharging | |||
*[[Charcoal Combine]] for infinite range extension for high power | |||
*Both fueled and solar power options | |||
=Aerial= | =Aerial= |
Revision as of 00:53, 24 September 2023
These are the types of drones that OSE is interested in developing and using.
General Features
- Switching between mission planned and human controlled operation
- Various sensors of all kinds
- Open source hardware base throughout, culminating with microprocessor fabrication
- Open source motors
- Open source low cost controllers
- Plastic 3D printed circuit boards, potted for mil spec
- Generally mil spec for lifetime design aspects
- Parts interchangeable between all media (aerial, terrestrial, aquatic, space etc) - ie, a product ecosystem
- Construction set approach with WAAM for heavy machine parts
- Induction furnace for WAAM-purposed wire drawing and aluminum motor winding wire drawing
- Complete stackability in all media, with Freeloader Range Extension and aerial rechargin
- Aerial recharging
- Charcoal Combine for infinite range extension for high power
- Both fueled and solar power options
Aerial
- Surveying - aerial photographs of the property
- Photogrammetry - actual elevation surveying for land elevation
- Tree cover and plant growth - NVDI imaging
- Augmented vision for construction -
- Internet range extension in the form of flying repeaters. Long distance LAN networking with self-landing, self-charging operation
- Fixed wing, tailsitter, VTOL fixed wing, copter versions
- Terrestrial drone aerial drone carrier - for range extension, charging on Slow Solar Operation
Features
- Solar powered charging
- Solar in-flight charging - rollout flexible PV panel
- Automated landing pad with automated charging
- Swarming - around a master drone, each drone repeats same action as master drone, programmable for specific distance between drones
Terrestrial
- Automated grading bulldozers
- Remote control and mission planned tractors for earthworks
- Automated pond digger
- Mission planned posthole digger
- Geofenced mowing robots
- Remote control forestry vehicles
- Automated brick delivery robots for CEB construction - carrying bricks for wall laying
- RTK GPS precision backhoe for digging square holes, trenches, and precision earthworks
- SSO delivery drones
Features
- Geofencing
- Swarming - communicating between units to divide up a task or to multiplex the same task
- Accurate RTK GPS positioning for elevation for keyline plowing and swaling
Marine
- Solar powered autonomous-capable container ships
Space
- Satellites and satellite constellations for surveying, imaging, and internet delivery
Hybrid
- Superamphibian - amphibious submarine drones which can move on land, under water, swim under water, or ride on top of the water
- Water-landing aerial drones
- Water-based drone carrier for aerial drones - seek and rescue missions
Features
- RFID-locating or tag-locating swarming of aerial drones on a drone carrier