
RealityScan
Scan and build precise 3D models at scale.

Transforming images into accurate and georeferenced spatial data.

Pix4D is a leading photogrammetry software suite that converts images from drones or ground-based cameras into precise and georeferenced 2D maps and 3D models. The architecture revolves around advanced computer vision algorithms, structure from motion (SfM), and multi-view stereo (MVS) techniques. The value proposition lies in its ability to automate the creation of orthomosaics, point clouds, digital surface models (DSMs), and textured 3D meshes from overlapping imagery. Use cases span surveying, agriculture, construction, mining, and inspection. It enables accurate measurements, volume calculations, change detection, and asset monitoring. Integrations via API facilitate streamlined workflows with GIS, CAD, and BIM systems. On-premise and cloud processing options are available to cater to varying security and computational resource requirements. The software employs rigorous quality control and calibration to ensure high accuracy and reliability of the generated spatial data.
Pix4D is a leading photogrammetry software suite that converts images from drones or ground-based cameras into precise and georeferenced 2D maps and 3D models.
Explore all tools that specialize in reconstruct 3d models. This domain focus ensures Pix4D delivers optimized results for this specific requirement.
Explore all tools that specialize in 3d model reconstruction. This domain focus ensures Pix4D delivers optimized results for this specific requirement.
Utilizes ground control points (GCPs) to improve the georeferencing accuracy of the generated models. GCPs are surveyed points with known coordinates that are used to constrain the photogrammetric solution.
Combines LiDAR data with photogrammetric imagery to improve the completeness and accuracy of 3D models, particularly in vegetated areas or areas with complex geometry. Hybrid processing leverages the strengths of both data sources.
Processes thermal imagery to create temperature maps and identify anomalies. Used in agriculture, inspection, and search and rescue operations.
Processes multispectral imagery to assess vegetation health, identify plant diseases, and optimize agricultural practices. Uses vegetation indices (NDVI, NDRE) derived from specific spectral bands.
Compares datasets from different time periods to identify changes in the environment. Used for monitoring construction progress, detecting landslides, and assessing environmental impacts.
Install Pix4D software or access cloud platform.
Import image dataset from drone or ground-based capture.
Define processing area and coordinate system.
Run initial processing to align images and generate a sparse point cloud.
Optimize the project by refining camera calibration and adjusting parameters.
Generate dense point cloud, mesh, and orthomosaic.
Perform quality control and accuracy assessment.
Export results in various formats for use in GIS, CAD, or other applications.
All Set
Ready to go
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"Users praise Pix4D for its accuracy and comprehensive feature set but note the complexity and steep learning curve."
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Scan and build precise 3D models at scale.

High-fidelity 3D mesh generation from single images in under 45 seconds

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