Tecnologies

We are experts and we use the following technologies to develop our products, projects and services. We also offer training and support for all the technologies we work with.
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Sensors

Infraplan Geospatial always uses the most suitable sensor in each case. Here is a selection of the sensors and devices we use the most:

Satellite

We use satellite imagery for large projects, both to generate cartography and to monitor or analyze territorial phenomena and dynamics. Currently we prefer the Pleiader 1A and 1B, with a resolution of 50cm, operated by Airbus Defense and Space.

Airplane

We use the aircraft for photogrammetry projects in cities and infraestructures, both to generate 2D/3D cartography, orthoimages and DSM by correlation. Currently the camera we use the most for flights with a pixel of 4 to 40cm is the UltraCam X from Vexcel Imaging GmbH.
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Drone (Fixed wing)

We use fixed-wings drones for photogrammetry and inspection projects and we consider them suitable for surveying extensions of up to 500 hectares and traces of length 10,000 meters. Currently the system we operate for flights with a pixel of 1.6 to 6cm is the Mavinci Sirius Pro from Topcon Positioning Systems, Inc.
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Drone (propeller)

We use propeller drones for photogrammetry and inspection projects and we consider them suitable for surveying extensions of up to 50 hectares and traces of lenght 1,000 meters. Currently the propeller drone we use for flights with a pixel of 1 to 4cm is the Aibot X6 from Leica Geosystems.

Mobile Mapping

We use Mobile Mapping systems for surveying, modeling and inventory projects, as well as corporate Street View projects in urban plots, road traces and roads. We employ Leica Geosystems surveying Pegasus 2 integration and IP-S2 inventory integration from Topcon Positioning Systems, Inc.

Positioning (GPS, Galileo, Beiudou, Glonass)

We use GNSS receivers with all the constellations (GPS, Galileo, Beidou, Glonass) to dress utility networks, support aerial or satellite imagery, and raise and stake out discrete points with precision of 2cm in RTK mode and 1cm in static mode.
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Total stations

We use 2mm and 1 second precision angular motorized and robotic total stations for the implementation of geodetic networks, auscultation of structures and precision surveys and restatements.

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Lasers

We use lasers in a multitude of cases. The LIDAR airborne, for the creation of DSM for urban or forest purposes; static LASERSCANNERS for obtaining industrial, architectural or urban interior or exterior models, and hand-held LASERS for automatic mapping maintenance.

Cameras

We use high-end cameras calibrated for near-object photogrammetry. The use of software with self-calibration algorithms allows us to eliminate the distortions introduced by the lenses and obtain metric images. The most common applications are in infrastructure inspection, architectural heritage and, through the use of thermal cameras, in energy efficiency studies.

Geolocation

We use data from sensors and fixed or mobile devices to geolocate, georeference and model urban phenomena. With the data obtained directly (social networks) or supplied by third parties (roaming, ATMs, POS, etc.) we synthesize, for example, business, tourism or mobility models.

Mobile devices

We use mobile devices (tablets, PC tablets, smartphones) for census and inventory projects, review and update of official cartography, corporate datasets, GIS and CMMS systems. We take advantage of the sensors that currently incorporate most mobile devices to assist tasks and incorporate new functionalities, such as augmented reality for locating assets and services.

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