Method of flight control in a fixed-wing drone
The disclosure provides a method of controlling the yaw of a fixed-wing UAV, with two traction propellers arranged parallel to each other and providing thrust for the UAV; A plurality of motors configured to drive the two traction propellers, wherein the thrust ratio provided by the two traction propellers is changed to generate asymmetric thrust which controls the active yaw of the UAV. The fixed-wing UAV provided by the disclosure improves the reliability of the thrust system and active yaw.
1. A method of flight control for a fixed-wing unmanned aerial vehicle (UAV) comprising:
having the fixed-wing UAV to have
a) a left main wing and a right main wing;
b) a left forewing and a right forewing respectively shorter than the left main wing and the right main wing;
c) a main body coupled to the left main wing and the right main wing;
d) a left linear support connecting the left main wing to the left forewing;
e) a right linear support connecting the right main wing to the right forewing;
providing a first, a second, a third lifting propellers to be disposed on the left linear support;
providing a left vertical stabilizer coupled to the left linear support;
providing a fourth, a fifth, a sixth lifting propellers disposed on the right linear support;
providing a right vertical stabilizer coupled to the right linear support;
providing a left traction propeller disposed at a front end of the left linear support;
providing a right traction propeller disposed at a front end of the right linear support;
wherein the left linear support is parallel to the right linear support, and there are no other linear supports;
changing a thrust ratio of the left and right traction propellers to generate asymmetric thrust to control an active yaw of the UAV.
2. The method according to claim 1 , further comprising providing a rudder to control an active yaw of the UAV.
3. The method as recited in claim 1 , wherein the UAV does not have any control surfaces.
4. The method as recited in claim 3 , wherein the left traction propeller or the right traction propeller is disposed on a same horizontal plane as a longitudinal axis of the left linear support.
5. The method according to claim 1 , wherein the UAV comprises of a detachable cargo hold or passenger cabin attached to a bottom side of the UAV.
6. The method as recited in claim 1 , wherein the UAV comprises of a microprocessor to change the thrust ratio.