2021 International Bhurban Conference on Applied Sciences and Technologies (IBCAST) 2021
DOI: 10.1109/ibcast51254.2021.9393264
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A critical analysis of small but heavy-lift multirotor and their flight controllers

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Cited by 3 publications
(2 citation statements)
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“…At the same time, the tail rotor is responsible for providing stability and directionality by counteracting the torque generated by the main rotor. Drones with a single rotor rely on the interaction between their primary and tail rotors to develop lift, keep their stability, and adjust the directionality of their flying ( Khan et al, 2021b ). The flight controller is the “brain” of the drone.…”
Section: What Are the Applications And Types Of Uavs?mentioning
confidence: 99%
“…At the same time, the tail rotor is responsible for providing stability and directionality by counteracting the torque generated by the main rotor. Drones with a single rotor rely on the interaction between their primary and tail rotors to develop lift, keep their stability, and adjust the directionality of their flying ( Khan et al, 2021b ). The flight controller is the “brain” of the drone.…”
Section: What Are the Applications And Types Of Uavs?mentioning
confidence: 99%
“…The payload capacity of fixed-wing UAVs is generally increased by increasing the size of the wings. On the other hand, the payload capacity of the multi-rotor UAV can be increased by increasing the size and number of propellers [ 18 ]. The maximum speed of a multi-rotor UAV can reach 73 m/s [ 19 ], whereas the maximum speed of a fixed-wing UAV can be close to 278 m/s [ 20 ].…”
Section: Current and Future Uavsmentioning
confidence: 99%