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Huace Measurement Instrument Business Department, Beilin District, Xi'an City
Home>Products>Kolida Phantom AK2200 vertical takeoff and landing composite wing unmanned aerial vehicle
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    No. 268 Youyi East Road, Xi'an City, Shaanxi Province
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Kolida Phantom AK2200 vertical takeoff and landing composite wing unmanned aerial vehicle
Introduction - Fully automatic vertical takeoff and landing, reducing the requirements for the work site; 2. Equipped with differential modules, signi
Product details
1Fully automatic vertical takeoff and landing, reducing the requirements for the work site;
2Equipped with differential modules, significantly reducing the deployment of field image control points;
3Fully automatic air three calculation software, reducing the workload of office workers;
4Complete coverage of the homework process, from raw data collection to final result delivery, seamless integration of the process;
5We have a comprehensive service network and technical support that can be provided by all provinces to respond to user needs in a timely manner;

Appearance characteristics

streamline fuselageStreamlined design, optimized aerodynamic layout of the aircraft, low resistance during flight, and improved endurance.

Durable and lightweightThe body is made of composite materials, which ensures the strength and toughness of the body while reducing its weight.

Easy to assemble and disassembleThe various components of the fuselage adopt modular quick release design, which can be quickly installed and taken off in the field.


sciencestable

emergency responseThe flight control system can provide comprehensive system monitoring warnings and emergency response logic.

algorithm optimizationAdvanced and stable reconfigurable navigation control algorithm with stable performance and strong reliability.

Vertical takeoff and landingThe vertical takeoff and landing method allows drones to adapt to various ground environments and reduce body damage during landing.

strong driving forceAdopting a dual generator power configuration, providing sufficient power to enable normal flight under mission loads.


System Features

Equipped with a 42 megapixel camera to collect the required data

The aerial camera with a resolution of up to 42 million pixels and a ground resolution of up to 2cm greatly improves operational efficiency and accuracy.


The takeoff and landing system adopts real-time differential mode

The real-time differential configuration provides more accurate positioning for drone flight control during takeoff and landing, with a takeoff and landing accuracy of up to 30cm.


Post differential mode, with a mapping accuracy of 5cm

Equipped with differential PPK, it ensures accuracy while significantly reducing field image control point measurements; Change the traditional aerial surveying mode and significantly reduce the labor and material costs of aerial surveying work; In complex environmental areas, measurement can be easily achieved.


CORS Station

In the coverage area of CORS stations, users do not need to build reference stations, enabling single machine operations and reducing costs; Having a comprehensive data monitoring system can quickly eliminate system errors and cycle jumps, enhancing the reliability of differential operations.


Professional image processing system

The Kolida vertical takeoff and landing drone is equipped with aerial photogrammetry office processing software, which includes multiple different data processing modules and can produce digital elevation models(DEM)Digital Surface Model(DSM)Digital orthophoto image(DOM)Tilt photography 3D model, the results of its aerial triangulation can be importediDataAerial survey version, aerospace prospectMapmatrixPerform 3D mapping.

The system features a data quality inspection module

according toPOSCheck the quality of flight data using data and image data. The inspection items include heading, lateral overlap rate histogram, and impact spatial distribution map. One click automatic flight belt generation checks all items and outputs a report.

Tilt 3D module

Using cloud computing cluster technology, quickly complete image matching, adjustment, and rely on aerial photography data. Through the tilted 3D module, generate the tilted 3D model required by the user to achieve 3D realistic reproduction.

Empty three module

One click automatic completion of the overall process of same name point cloud detection, spatial matching, regional network adjustment, and dense matching. Algorithm science, not limited by attitude angle and scene. Comes with a built-in adjustment system, no need to rely on third-party software. By using spatial matching and encryption techniques, point clouds and orthophoto images can be obtained, and the mean square error of adjustment checkpoints can reach1:500Requirements for aerial surveying and mapping.

Output to Stereoscopic Mapping System

The results of Kongsan can be imported into commonly used 3D mapping systems for digital line drawing collection. The aerial triangulation results can adjust the aspect ratio of the stereo image pairs, improving the accuracy of elevation acquisition.


wingspan 2.2m
battery life 90min
Fuselage Length 1.25m
Endurance speed 75km/h
Takeoff weight can reach 12kg
Power mode motor
task payload Sony R×1 R2
Landing and takeoff methods Vertical takeoff and landing
material Carbon ammonium composite material
wind resistance rating 6level
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Successful operation!

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