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Pix4DMapper

Pix4Dmapper turns your images into highly precise, georeferenced 2D maps and 3D models. They’re customizable, timely, and complement a wide range of applications and software.

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    Features

    Top Features

    • Survey-grade results
    • Complete control over your project
    • Your workflow, your choice
    • Transform your ground or aerial images in digital maps and 3D models.

    Capture

    Capture RGB, thermal, or multispectral images with any camera or drone and import them to PIX4Dmapper.

    Digitize

    PIX4Dmapper’s photogrammetry algorithms transform your ground or aerial images in digital maps and 3D models.

    Seamlessly process your projects on your desktop using our photogrammetry software, or bundle with PIX4Dcloud for online processing.

    Control

    Use the power of photogrammetry in the rayCloud environment to assess, control and improve the quality of your projects.

    Use the quality report to examine a preview of the generated results, calibration details, and many more project quality indicators.

    Measure & inspect

    Accurately measure distances, areas, and volumes.

    Collaborate & share

    Streamline project communication and teamwork.
    Selectively and securely share project data and insights, with your team, clients, and suppliers, using standard file formats.

    Survey-grade results

    Obtain results with sub-centimetre accuracy thanks to photogrammetric analysis. 1-2 pixel GSD in X, Y directions 1-3 pixels GSD in the Z direction.

    Complete control over your project

    Define an area of interest, select processing options, add ground control points or edit point clouds, DSMs, meshes, and orthomosaics.

    Your workflow, your choice

    Use default templates for automatic processing of your projects, or create your own with custom settings for full control over the data and quality.

    Photos first

    Any camera. Any drone. Any imagery. As long as it’s a .jpg or a .tif.

    Specification

    Required Computer System

    System includes hardware N
    Operating system(s) Windows 7, 8, 10 64 bits
    CPU (min.) Any CPU (Intel i5/ i7/ Xeon recommended)
    CPU (preferred) Intel i7/Xeon CPU quad-core or hexacore
    Min. RAM memory [Mb] 4000
    Preferred RAM memory [Mb] 16000
    Min. data storage capacity [Gb] 10
    Preferred data storage capacity [Gb] 100
    Min. graphic card Any GPU that is compatible with OpenGL 3.2
    Supported special hardware All cameras supported
    User definable operations and extensions Command line
    64-bit version of software available Y
    Distributed processing capacity N
    GPU based calculations Y
    Hardware handling of big data sets GeForce GPU with at least 2 GB RAM

    Images and data

    Source data Any camera – Metric cameras, Multispectral cameras, Fisheye cameras, Camera rigs, DSLR cameras, Thermal cameras, 360° cameras, Smartphone cameras…
    Input image formats JPG / TIFF, RGB / NIR / Thermal / single or multi band / MP4 video
    Export data formats
    • Nadir Orthomosaic in GeoTIFF and kml google tiles
    • Nadir Digital Surface Models in GeoTIFF, XYZ, LAS and LAZ
    • Nadir Digital Terrain Models in GeoTIFF
    • Contour lines in SHP, PDF, and DXF
    • Orthomosaic from any facade in GeoTIFF
    • Digital Surface Model from any facade in GeoTIFF
    • Index (NDVI, NDRE, etc) maps in GeoTIFF
    • Classification maps in shapefile
    • 3D textured mesh in OBJ, PLY, DXF, FBX and PDF
    • 3D Point cloud in LAS, LAZ, XYZ and PLY
    • User-defined vector objects in DXF, SHP, DGN and KML
    • Fly-through animation videos in MP4 and AVI
    • Fly-through waypoints in CSV
    • Compatible formats of Aerial Triangulation results for traditional photogrammetry software solutions (e.g. INPHO, Leica LPS, DAT/EM Summit Evolution, and many more)
    Scanned analogue Aerial Photos Y
    Digital Aerial Nadir Frames Y
    Oblique Images Y
    Linear array sensors N
    Optical Satellite Images Y
    UAS Images Y
    Radar Images N

    DEMs & Orthoimages

    Automatic matching Dense matching, 3D points computed up to every pixel of each original image.
    Automatic breakline extraction N
    Checking facilities (DEM editing) Y
    Automatic contour generation Y
    Mosaicing of orthoimages Y
    True orthoimage generation Y
    Dense DSM creating capability Y
    DSM to DTM filtering Y
    Automatic seam line creation N
    Dense Image Matching Y

    Viewing System

    Min. display memory [Mb] 16
    Pref. display memory [Mb] 2000
    Resolution Any
    Method of stereo image separation rayCloud(tm) combining 3D point cloud with original input images for multi-ray matching.

    General

    Year of introduction 2014
    Year of last update 2019
    Modular The software package includes both desktop and cloud processing, with different commercial options: Buy (one-time-charge license) or rent (monthly or yearly subscription plans). 2 devices.
    License configuration Yes
    Regional settings available Yes

    Orientation and triangulation

    Automatic interior Y
    Relative Y
    Automatic aerotriangulation Y
    Automated blunder detection Y
    Self calibration Y
    Automatic Relative Y
    images simultaneously processed Y

    Measurement tools

    Length Y
    Area Y
    Volume Y

    Image manipulation & processing

    Automatic contrast manipulations N
    Spatial convolution Y
    Radiometric corrections Y
    Radiometric adjustment for mosaicing Y

    More information

    Main applications Surveying, Mining, Inspection, Forensics, Public Safety, Emergency Response, Environmental Monitoring, Earthworks…
    Distinguishable features Automatic self-calibration || Machine-learning point cloud classification || Any camera || All imagery and video support (aerial, oblique and terrestrial || rayCloud™ combining 3D points with original input images || Mosaic Editor, Cloud-based processing and support || Rental options

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