GeoPoint has the human resources and know-how to present services and solutions in the area of solving territorial management problems.

Geographic Information Systems for Territorial Management – Public Administration

  • Topographic mapping and detail topography for project development;
  • Dynamic wind models;
  • Hydrological models;
  • Relief models (3D, slopes, sun exposure, shade);
  • Models of potential solar radiation;
  • Architectural surveys for 3D model generation;
  • Land Registry;
  • Evaluations;
  • Expropriation projects;
  • Geographic information systems for heritage management and infrastructure
  • Topographic mapping and detailed topography for project development;
  • Object Oriented Image Analysis (OBIA) based on multi-spec images;
  • Automatic mapping of building details and communication routes;
  • Automatic mapping of vegetation cover;
  • Automatic mapping of water bodies;
  • Land Registry;
  • Spatial analysis and modeling using GIS tools;
  • Geographic information systems to support management.


Management and Protection of Ecological Areas and Fauna

Elaboration of habitat mapping (eg for Kisama National Park)

Tracking and monitoring of species (agros systems and related)

  • Production of topographic cartography for the detection of surface phenomena;
  • Spatial analysis and modelling using GIS tools;
  • Thematic cartography;
  • Habitat delimitation;
  • Flood maps;
  • Mapping for coastal management;
  • Cartography for water resources management;
  • Noise maps;
  • Development of cartography for environmental monitoring purposes;
  • Geographic information systems for managing environmental descriptors.


Geographic management system for Utilities

Waste Management

Objective: Provide garbage collection and treatment services with a system that allows a more efficient and efficient management of garbage collection, ensuring a better service to the population, environmental improvement and reduction of operational costs.


  • Making garbage collection more efficient by reducing the associated cost
  • Better control of human and material resources
  • Safeguarding the duration of the vehicles
  • Improve public health
  • Intelligent system, capable of adapting to real-time reality, and can be used for network redefinition projects, expansion or taking into account unexpected service interruption days.


Sanitation – Cadastre of the water supply network and expansion plans

Objective: Study the strategy of the supply and sewage network; To have a tool to support the decision and the operationalization of the tasks of maintenance, exploration and expansion of the network.


  • Knowing the infrastructure
  • Identify maintenance needs, manage interventions (what, where, when, next steps)
  • Designing network development based on real data


Energy and Communications

Objectives: Provide the energy services of a system that allows the management of the power grid, study its structure and expansion, or improve the operational control of repairs and maintenance, in order to better service to the population, have an environmental improvement and reduction of operational costs.


  • Knowing the infrastructure (equipment and network registration)
  • Identify maintenance needs, manage interventions (what, where, when, next steps)
  • Designing network development based on real data
  • Creating relief templates;
  • Spatial analysis and modeling using GIS tools;
  • Visibility studies;
  • Radio link profiles;
  • Choice of locations for the deployment of telecommunications antennas;
  • Geographic information systems for network planning and management.
  • Production of topographic cartography and detailed topography for the development of energy production, transportation and distribution projects;
  • Implementation, support and inspection of works;
  • Land Registry;
  • Evaluations of rustic and urban buildings;
  • Administrative easements;
  • Expropriation projects under the Expropriations Code;
  • Geographic information systems for the management of energy transmission networks; < li>


Addressing and territorial management

Many developing areas experienced very large urban growth, characterized by the emergence of many sub-equipped neighbourhoods. The previous systems of identification of the routes usually applied in the old quarters of the center of the city, rarely were extended to the new quarters. This is a worrying situation for the functioning of urban services. With no identification system, how can you locate yourself in a city that is still growing? How to quickly guide ambulances, firefighters, and security services? How to send correspondence or messages and orders to the home? How to identify the urban equipment? How to locate faults in water, electricity and telephone networks? How to make tax collection services work?


Emergency Vehicle Management, Monitoring and Control System

Vehicle Tracking and Dispatch Optimization:

  • Police
  • Firefighters
  • Medical emergency
  • Control Room


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