Survey control networks
Project coordinate frameworks, transformations and stable control.
Survey control, precise field measurement and engineering geodesy that connect acquisition, design and construction to a reliable spatial reference.
MapSoft combines GNSS, total-station, precise levelling and field-control methods to establish reliable spatial reference and detailed measurement for geospatial and engineering projects. The same capability supports control networks, orientation and check points, construction geometry, local detail and validation of airborne, UAV, mobile and hydrographic surveys.
Method selection depends on required accuracy, visibility, site access and project stage. Field observations are integrated with network adjustment, coordinate transformation and downstream CAD/GIS production rather than treated as isolated measurements.
Project coordinate frameworks, transformations and stable control.
Detailed survey, setting-out support and as-built checks.
Ground control and independent checks for airborne, UAV and mobile data.
Boundary, parcel, topographic and legal-survey support.
MapSoft selects the measurement method and equipment configuration according to the project, required accuracy and field conditions.
Reference system, accuracy, network geometry and final engineering use.
Existing control review, stabilization and observation strategy.
GNSS, total station, levelling and project-specific direct measurements.
Redundancy, transformations, least-squares adjustment and independent control.
Acquisition support, design data, setting-out, monitoring and as-built records.
Coordinates, elevations and adjustment results
GCP / check points for remote acquisition
Detailed field-measured geometry
Structures, alignments and construction control
Consistent project reference frames
Field-survey quality is established by observation design and adjustment, not by a single instrument specification.
geospatialA multi-year geodetic engineering engagement spanning corridor-scale reality capture, engineering-ready terrain/topography, geodetic networks, setting-out, monitoring design, construction-phase network realization and expropriation support.
47.896 kmCombined documented corridor scope
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geospatialSpecialist geodetic and geospatial work supporting railway modernization through a unified reference framework, an engineering survey network, airborne LiDAR and aerial imaging, field and tunnel survey, 1:1,000 engineering products and confirmed land-expropriation design packages.
235 kmRailway corridor length
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geospatialWhole-cadastral-municipality transformation combining cadastral renewal, historical-plan digitization, high-resolution photogrammetry, digital cadastral/topographic databases and technically governed land consolidation.
13463 parcelsAgricultural parcels before consolidation
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geospatialA high-resolution urban 3D survey combining UAV and mobile LiDAR, GNSS control, point-cloud processing and CityGML LoD2 modelling to create a validated spatial foundation for circular-construction and building-stock research.
38 missionsUAV flight missions
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geospatialA major road–rail infrastructure mapping project combining airborne LiDAR, aerial photogrammetry, field control, direct georeferencing, point-cloud processing, terrain modelling, orthophoto and detailed 1:1,000 CAD-ready topographic production.
~3,400 haDocumented final realization area
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