fixed-wing UAV (Unmanned Aerial Vehicle) is an autonomous aircraft that has fixed wings, like a traditional airplane, as opposed to rotors or propellers used in multirotor drones. fixed wing UAVs are designed for sustained and efficient forward flight, as they generate lift through their wing design, similar to conventional airplanes.
Fixed-wing UAVs have wings that do not move, in contrast to the rotary-wing design of quadcopters or helicopters. The wings generate lift, allowing the UAV to maintain sustained flight. fixed wing drones are highly efficient in terms of energy consumption. They can cover larger distances with longer endurance compared to multirotor drones, making them suitable for mapping, surveying, and long-range applications.
due to their design, fixed wing UAVs can carry a variety of payloads, including advanced sensors, cameras, and communication equipment. This makes them valuable for applications such as aerial mapping, surveillance, and environmental monitoring. fixed wing drones are known for their extended flight times, which can range from several hours to even more than a day in some cases. This makes them ideal for tasks requiring prolonged aerial coverage.
Fixed-wing UAVs require a runway or catapult system for takeoff and a designated landing area for landing. However, some models incorporate vertical takeoff and landing capabilities, combining aspects of fixed-wing and rotary wing drones.fixed wing drones are often operated remotely and autonomously. operators use ground control stations to plan missions, monitor flight data, and make adjustments as needed.
fixed wing drones UAVs are used in various applications, including aerial mapping, surveying, agriculture, environmental monitoring, search and rescue, border surveillance, and military reconnaissance. fixed wing drones UAVs are particularly valuable in applications requiring wide-area coverage, such as monitoring pipelines, tracking wildlife, and disaster response. fixed wing drones UAVs can achieve higher altitudes and faster speeds compared to many multirotor drones. This allows them to cover more ground in a shorter amount of time.
while fixed wing drones UAVs excel in forward flight, they may require additional systems like gyroscopes and autopilots to maintain stability. They can be sensitive to wind conditions and require skillful control during takeoff and landing. fixed-wing UAVs are favored for applications that demand long-endurance flight, large-area coverage, and the ability to carry diverse payloads. Their efficiency in energy use and extended flight times make them suitable for tasks like mapping, surveillance, and remote sensing, where covering expansive areas is essential.
types | HY-GDY-200 | ||||||||
wingspan | 560cm | ||||||||
aircraft length | 415cm | ||||||||
high | 128cm | ||||||||
control radius | 400km | ||||||||
flight altitude | 6000M | ||||||||
cruising speed | 80-120km/h | ||||||||
battery life | 6-8h | ||||||||
maximum take-off weight | 100kg | ||||||||
payload | 50kg | ||||||||
takeoff method | gliding track | ||||||||
landing method | gliding landing | ||||||||
resolution: | visible light 1920*1080, thermal imaging 720*576 | ||||||||
zoom: | visible light 50x optical zoom | ||||||||
video resolution: | 1080P@50hz | ||||||||
link distance: | 30~50km | ||||||||
control system: | UCS-402 integrated system, GCS-302 portable system, TC-200 handheld system | ||||||||
video storage: | H.264TS package | ||||||||
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