Multicopter-assisted system and method for launching and retrieving a fixed-wing aircraft
The present disclosure provides various embodiments of a multicopter-assisted launch and retrieval system generally including: (1) a multi-rotor modular multicopter attachable to (and detachable from) a fixed-wing aircraft to facilitate launch of the fixed-wing aircraft into wing-borne flight; (2) a storage and launch system usable to store the modular multicopter and to facilitate launch of the fixed-wing aircraft into wing-borne flight; and (3) an anchor system usable (along with the multicopter and a flexible capture member) to retrieve the fixed-wing aircraft from wing-borne flight.
1. A multicopter comprising:
a hub; and
an attach/detach component attached to the hub and movable relative to the hub between an attached position and a detached position,
wherein when the attach/detach component is in the attached position, a fixed-wing aircraft can be attached to the attach/detach component via a hook extending from the fixed-wing aircraft partially around an axis of rotation of the attach/detach component, and
wherein movement of the attach/detach component from the attached position to the detached position detaches the fixed-wing aircraft from the attach/detach component by pushing the hook off the attach/detach component.
2. The multicopter of claim 1 , which includes an attach/detach actuator operably connected to the attach/detach component to move the attach/detach component between the attached position and the detached position.
3. The multicopter of claim 2 , wherein the attach/detach actuator includes a motor.
4. The multicopter of claim 2 , which includes a linkage, wherein the attach/detach actuator is operably connected to the attach/detach component via the linkage.
5. The multicopter of claim 1 , which includes a locking device movable relative to the hub between a lock position and an unlock position.
6. The multicopter of claim 5 , wherein when the attach/detach component is in the attached position and the locking device is in the lock position, the locking device prevents the attach/detach component from moving to the detached position.
7. The multicopter of claim 6 , wherein when the attach/detach component is in the attached position and the locking device is in the unlock position, the locking device does not prevent the attach/detach component from moving to the detached position.
8. The multicopter of claim 5 , which includes a locking device actuator operably connected to the locking device to move the locking device between the lock position and the unlock position.
9. The multicopter of claim 1 , which includes an attach/detach actuator operably connected to the attach/detach component to move the attach/detach component between the attached position and the detached position, a locking device movable relative to the hub between a lock position and an unlock position, and a locking device actuator operably connected to the locking device to move the locking device between the lock position and the unlock position, wherein when the attach/detach component is in the attached position and the locking device is in the lock position, the locking device prevents the attach/detach component from moving to the detached position.
10. A multicopter comprising:
a hub;
a cam rotatably attached to the hub; and
a cam actuator operably connected to the cam to rotate the cam relative to the hub between an attached position and a detached position,
wherein the cam is shaped such that, when in the attached position, a hook extending from a fixed-wing aircraft can be attached to the cam by extending partially around an axis of rotation of the cam, and movement from the attached position to the detached position detaches the fixed-wing aircraft from the cam by pushing the hook off the cam.
11. The multicopter of claim 10 , which includes a linkage, wherein the cam actuator is operably connected to the cam via the linkage.
12. The multicopter of claim 11 , wherein the cam includes an actuator connection element extending transversely from a longitudinal axis of the cam, the linkage connected to the actuator connection element and to the cam actuator.
13. The multicopter of claim 10 , which includes a locking arm rotatable relative to the hub between a lock position and an unlock position.
14. The multicopter of claim 13 , wherein when the cam is in the attached position and the locking arm is in the lock position, the locking arm prevents the cam from rotating to the detached position.
15. The multicopter of claim 14 , wherein when the cam is in the attached position and the locking arm is in the unlock position, the locking arm does not prevent the cam from rotating to the detached position.
16. The multicopter of claim 13 , which includes a locking arm actuator operably connected to the locking arm to rotate the locking arm between the lock position and the unlock position.
17. The multicopter of claim 16 , which includes a cam actuator operably connected to the cam to move the cam between the attached position and the detached position.
18. The multicopter of claim 17 , wherein the cam actuator includes a cam motor having a cam motor shaft, wherein a cam motor arm is fixedly connected to the cam motor shaft to rotate with the cam motor shaft, wherein the locking arm actuator includes a locking arm motor having a locking arm motor shaft, and wherein the locking arm is fixedly connected to the locking arm motor shaft to rotate with the locking arm motor shaft.
19. The multicopter of claim 18 , which includes a linkage connecting the cam motor arm to the cam so rotation of the cam motor arm causes the cam to rotate.
20. The multicopter of claim 10 , which includes:
a locking arm rotatable relative to the hub between a lock position and an unlock position;
a locking arm actuator operably connected to the locking arm to rotate the locking arm between the lock position and the unlock position, wherein the locking arm actuator includes a locking arm motor having a locking arm motor shaft, and wherein the locking arm is fixedly connected to the locking arm motor shaft to rotate with the locking arm motor shaft;
a cam actuator operably connected to the cam to move the cam between the attached position and the detached position, wherein the cam actuator includes a cam motor having a cam motor shaft, wherein a cam motor arm is fixedly connected to the cam motor shaft to rotate with the cam motor shaft;
a linkage connecting the cam motor arm to the cam so rotation of the cam motor arm causes the cam to rotate; and
a lock element attached to the cam motor arm, the lock element positioned such that, when the cam is in the attached position and the locking arm is in the lock position, the locking arm is adjacent to the lock element.
21. The multicopter of claim 10 , wherein the cam includes a foot that extends transversely from a longitudinal axis of the cam, the foot limiting rotation of the cam in at least one rotational direction.