|
Professional photogrammetry and mapping software processes aerial and terrestrial imagery captured via RGB, multispectral, or thermal cameras to generate high-precision spatial assets. Key output formats include dense 3D point clouds, digital surface models, digital terrain models, georeferenced orthomosaics, 3D textured meshes, and multispectral index maps. These outputs provide sub-centimeter to survey-grade accuracy for workflows across land surveying, site construction, precision agriculture, asset inspection, and real estate development.
The underlying software ecosystem consists of specialized tools tailored to specific operational needs, including desktop processing engines, targeted agricultural analytics suites, building information and construction monitoring systems, 3D modeling tools, mobile field capture applications, and cloud-based automation pipelines.
System specifications vary by dataset size. Standard project processing requires a 64-bit operating system, a quad-core processor, an OpenGL 3.2-compatible graphics processor, 16 GB of system memory, and a solid-state drive. Processing large-scale aerial datasets or high-resolution imagery requires an 8-core or higher processor, a dedicated graphics card with at least 6 GB of VRAM, 32 GB to 64 GB of RAM, and NVMe storage. Supported input imagery formats include standard image types and raw files, while completed outputs export seamlessly to standard spatial formats such as GeoTIFF, LAS, LAZ, DXF, OBJ, and SHP for direct integration into CAD and GIS platforms.
|