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nFrames GmbH SURE Pro

Full automatic 3D reconstruction and color-balanced true orthos from close range and UAV imagery with unsurpassed performance and flexibility - as simple as you want and as advanced as you need

SURE Pro turns massive amounts of drone or terrestrial imagery into highly detailed 2.5D/3D models, point clouds, textured meshes and seamless true orthophotos in a streamlined process. 

SURE Pro is the right tool when high quality outpu…

  • nFrames GmbH SURE Pro
nFrames GmbH
Kornbergstr. 36
70176 Stuttgart
Germany
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Description

SURE Pro turns massive amounts of drone or terrestrial imagery into highly detailed 2.5D/3D models, point clouds, textured meshes and seamless true orthophotos in a streamlined process. 

SURE Pro is the right tool when high quality outputs providing maximum detail must  be produced with maximum performance.

Mesh formats (e.g. OBJ/Cesium/Collada) guarantee compatibility. Flexible workflows, stop&continue and external LiDAR feed-in make users be prepared for the future.

SURE technology is also available for integrators. 

SURE Pro is built for close to medium range applications including UAVs and professional cameras up to 60MP images. Users create beautiful quality 3D models automatically and purely from images.

3D Mesh with Photorealistic Texturing

Use DSLRs and mobile phone cameras to reconstruct surfaces from close range imagery. Texturing gives a new quality to 3D surface models making them more adequate for human perception and understanding. Flexible use from industrial metrology applications over cultural heritage documentation up to body scanning. Accurate textures create realism and make the model more expressive. 

As simple as you want, as advanced as you need!

No extra training or expert knowledge required to get started. Simple user interface and modularity empowers you to focus your energy on creating great products for your customers. 

Automatic level of detail adjustment

Dynamic triangle and detail adjustment allow for effective representation of your meshes within the viewer. This reduces hardware overload and allows for smoother viewing experience.

True Orthos & DSMs for UAV applications

Specifications

  • Year of introduction
    2013
  • Year of last update
    2018
  • Modular
    SURE Aerial - SURE Aerial Mesh Add-on - SURE Pro - SURE Editor
  • Regional settings available
    English language, support of all units
  • License configuration
    14 day trial version after free download, perpetual or rental options, 1 instance per computer
  • System includes hardware
    N
  • Operating system(s)
    Windows, Linux
  • CPU (min.)
    64 Bit processor
  • CPU (preferred)
    Intel i7 or Xeon
  • Min. RAM memory [Mb]
    16000
  • Preferred RAM memory [Mb]
    64000
  • 64-bit version of software available
    Y
  • Distributed processing capacity
    Y
  • GPU based calculations
    Y
  • Min. data storage capacity [Gb]
    1
  • Preferred data storage capacity [Gb]
    4000
  • Min. graphic card
    Any
  • Preferred graphic card
    Nvidia with CUDA support and 11GB memory
  • Supported special hardware
    Nvidia graphics cards. Runs on almost every common hardware and operating system.
  • User definable operations and extensions
    24 Threads per license (1 graphics card) scalable through distributed processing cluster
  • Min. display memory [Mb]
    512
  • Pref. display memory [Mb]
    6000
  • Resolution
    Any
  • Method of stereo image separation
    Stereo image matching is performed using a hierarchical variation of the Semi Global Matching (SGM) approach called tSGM. Stereo visualization is only avaliable for inspection of generated meshes.
  • Supported image sources
    Airborne large and medium frame, close range, UAS, mobile mapping. Support of Nadir and Oblique imagery. Orientation information can be imported from Trimble Inpho-Match-AT, Trimble UASMaster or Trimble Business Center Photogrammetry, Pix4D Mapper, Agisoft Photoscan, Visual SFM, Bundler and more.
  • Input image formats
    TIF (8 & 16 Bit, up to four channels, also tiled and pyramids), PNG (8 & 16 Bit), JPG (8 Bit)
  • Export data formats
    True-Orthos: TIF, GeoTIF (multichannel, 8-16bit) - Pointclouds/DSM: LAS, LAZ, PLY, TXT - Meshes: OBJ, Cesium, Collada
  • Scanned analogue Aerial Photos
    Y
  • Digital Aerial Nadir Frames
    Y
  • Oblique Images
    Y
  • Linear array sensors
    N
  • Optical Satellite Images
    N
  • UAS Images
    Y
  • Radar Images
    N
  • Automatic contrast manipulations
    Y
  • Spatial convolution
    N
  • Resampling
    Y
  • Radiometric corrections
    Y
  • Radiometric adjustment for mosaicing
    Y
  • Automatic interior
    N
  • Relative
    N
  • Automatic aerotriangulation
    N
  • Automated blunder detection
    N
  • Self calibration
    N
  • images simultaneously processed
    Y
  • Automatic Relative
    import of 3rd party exterior orientation formats and camera definitions including various distortion models
  • Automatic matching
    Semi-Global-Matching variation (tSGM). By efficiently matching on automatically selected stereo models and subsequently merging and refining the result in the point cloud generation, low noise point clouds with quality information can be retrieved. Hierarchical approaches speed up the process and enable the support of depth large variations in the scene.
  • Automatic breakline extraction
    N
  • Checking facilities (DEM editing)
    Y
  • Automatic contour generation
    N
  • Mosaicing of orthoimages
    Y
  • True orthoimage generation
    Y
  • Dense DSM creating capability
    Y
  • DSM to DTM filtering
    N
  • Automatic seam line creation
    Y
  • Dense Image Matching
    Y
  • Mapping facilities
    N
  • Semi-automatic corner point extraction
    N
  • Semi-automatic line feature extraction
    N
  • Semi-automatic building extraction
    N
  • 3D superimposition
    Y
  • Integration with scanned maps
    N
  • Integration with 2D vector maps
    N
  • Integration with 3D vector maps
    N
  • Integration with point clouds
    Y
  • Automatic texturing
    Y
  • Length
    Y
  • Area
    Y
  • Volume
    N
  • Main applications
    City Modeling, Smart Cities, Area Mapping, Landcover Mapping, Cadastre, Environmental Research, Agriculture, Forestry, Construction, Mining, Infrastructure and Inventory, Energy, Powerline Mapping, Pipeline Mapping, Inspection, Risk Assessment, Forensics, Navigation, Classificaton, Change Detection, Volume computations
  • Distinguishable features
    Support for LiDAR/Nadir imagery/Oblique imagery, generate true orthos with highest quality and sharpest edges, generate fotorealistic color-balanced 3D-meshes and 2.5D-meshes, preserve details but expect low noise in pointclouds / dsm / meshes (suited for e.g. pole detection), be compatible through flexible input-/output formats, export into streaming (level-of-detail aware) formats (e.g. Cesium tiles, Collada...), perfectly scale production capacity to any project sizes and available hardware and budget, use a dynamic number of computers and licenses even during on-going processing for distributed processing with autonomous cluster management / automatic tiling, pre-deliver finished sub-areas before complete project finishes (homogeneous borders are guaranteed), rely on predefined parameters through application scenarios and automatic best model selection, effectively stream data from disc for visualization and mesh editing, leverage high redundancy / reliability, customize processing with onestop / multiste

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