Cadastral Survey
Boost the efficiency of land administration and cadastral processes by using high-accuracy UAS solutions to quickly generate digital models.
Painpoints
Advantages
Cadastral surveys usually require collecting large data sets, including data gathered by ground teams in hazardous or inaccessible areas.
UAS Solutions can cover larger areas than terrestrial surveying tools, improving field data collection efficiency and reducing collection time.
Traditional cadastral survey methods lack visual data, limiting adequate land-use analysis.
Keep digital records that can be easily used for regular land cover comparisons, so teams can monitor changes dynamically.
Solution
Portable Drone Surveying & Mapping Solution
Full-Frame High-Performance Surveying and Mapping Solution
LiDAR Mapping Solution
Portable Drone Surveying & Mapping Solution
The DJI Mavic 3E is a portable surveying and mapping drone suitable for single-pilot operations. Paired with DJI Terra, it can generate accurate 2D and 3D models with significant reduction on the ground control points.
Portable solution, easy to carry and deploy.
Centimiter level data thanks to its mechanical shutter and RTK capability.
Ensure operational safety with omnidirectional obstacle avoidance sensors.
Field-work efficiency, covers 2 km² per flight delivering a 5cm GSD.
Real-Time Terrain Follow feature to ensure high-quality data capture in challenging and variable terrains.
Drone Platform
DJI Mavic 3E
Weight: 915 g.
Max Flight Time (no wind): 45 mins.
Sensing type: Omnidirectional binocular vision system, supplemented with an infrared sensor at the bottom of the aircraft.
Environment Adaptability: Max Take-off Altitude Above Sea Level 6,000 m; Max Wind Speed Resistance 12 m/s.
Wide Camera: 4/3 CMOS, Effective pixels: 20 MP.
Mechanical Shutter: 8-1/2000 s,supports rapid 0.7-second interval shooting.
Compatible with RTK module and DJI Cellular module.
Payload And Software
DJI Pilot 2
Ground control
DJI Terra
Modeling and flight mission plan
Workflow
  1. Data Collection: Plan a 2D, Linear Flight or Smart Oblique Missions based on the actual landscape situation for regular orthomosaic images, or oblique images data collection. Enable Real-Time Terrain Follow feature.
  2. Data Processing: Import to DJI Terra to process for DOM, DSM, Point Cloud and 3D models.
  3. Data Analysis: Import DJI Terra outputs to preferred 3rd Party Software for further analysis.
Full-Frame High-Performance Surveying and Mapping Solution
Matrice 350 RTK paired with the Zenmuse P1 full-frame sensor and it's Smart Oblique Capture feature takes aerial surveying efficiency and accuracy to a whole new level. Combine with DJI Terra for an efficient and integrated UAS surveying and mapping solution.
Generate accurate centimeter-level deliverables even without ground control points.
Field-work efficiency, covers 3 km² per flight delivering a 5cm GSD.
Reliable and robust multi-purposed drone platform designed to endure harsh environments and conditions.
Zenmuse P1 has a 45MP, full-frame sensor to ensure high quality data collection.
Drone Platform
Matrice 350 RTK
Weight: Approx. 6.47 kg(with single downward gimbal and two TB65 batteries).
Max Flight Time: 55 minutes.
Sensing system: Six-directional sensing and positioning.
Environment Adaptability: IP55, Max Service Ceiling Above Sea Level 7,000 m (with 1676 propellers,without other payload); Max Wind Resistance 12 m/s.
Payload And Software
Zenmuse P1
45 MP Full-frame camera.
Global Mechanical Shutter Shutter Speed 1/2000 Seconds.
3-axis Stabilized Gimbal Smart Oblique Capture.
DJI Pilot 2
Ground control
DJI Terra
Modeling and flight mission plan
Workflow
  1. Data Collection: Plan a 2D, Linear Flight or Smart Oblique Missions based on the actual landscape situation for regular orthomosaic images, or oblique images data collection. Import DSM files for Terrain Follow if necessary.
  2. Data Processing: Import to DJI Terra to process for DOM, DSM, Point Cloud and 3D models.
  3. Data Analysis: Import DJI Terra outputs to preferred 3rd Party Software for further analysis.
LiDAR Mapping Solution
Matrice 350 RTK equipped with Zenmuse L2 Frame-based LiDAR, can penetrate densely vegetated areas and obtain bare ground data. Increase aerial survey efficiency thanks to its integrated 4/3 CMOS RBG Mapping camera for simultaneous Point Clouds and photogrammetry data collection.
Field-work efficiency, covers 3 km² per flight collecting both LiDAR and photogrammetry data.
Highly integrated solution, reducing on-site time and ensuring data capture quality.
Reliable and robust multi-purposed drone platform designed to endure harsh environments and conditions.
Drone Platform
Matrice 350 RTK
Weight: Approx. 6.47 kg(with single downward gimbal and two TB65 batteries).
Max Flight Time: 55 minutes.
Sensing system: Six-directional sensing and positioning.
Environment Adaptability: IP55, Max Service Ceiling Above Sea Level 7,000 m (with 1676 propellers,without other payload); Max Wind Resistance 12 m/s.
Payload And Software
Zenmuse L2
Integrates frame LiDAR, a self-developed high-accuracy IMU system, and a 4/3 CMOS RGB mapping camera.
2.5 km2 covered in a single flight.
Detection Range 250m @10% reflectivity, 100klx.
Effective Point Cloud Rate: 240,000 pts/s.
Supports 5 Returns.
Turnkey Solution.
DJI Pilot 2
Ground control
DJI Terra
Modeling and flight mission plan
Workflow
  1. Data Collection: Plan a 2D, Linear Flight or Smart Oblique Missions based on the actual landscape situation for Point Clouds and image collection. Import DSM files for Terrain Follow if necessary.
  2. Data Processing: Import to DJI Terra to process for DOM, DSM, Point Cloud and 3D models.
  3. Data Analysis: Import Terra outputs to preferred 3rd Party Software for further analysis.

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