Considering the socio-ecological transition of Europe 2030, and towards a more resilient and informed community, focusing on the forests that are near wildfire risk, TREEADS project aims to build upon state-of-the-art high TRL (Technology Readiness Level) products and unite them in a Holistic Fire Management Platform that optimize and reuse per phase the available socio-technological resources in all three main phases of wildfires. For the prevention and preparedness, TREEADS project proposes the use of a real-time risk evaluation tool that can receive multiple classification inputs and work with a new proposed neural network-powered Risk Factor Indicator. TREEADS uses a variety of technological solutions such as the Copernicus infrastructure, and a swarm of small drones customized for accurate forest supervision. In the area of detection, TREEADS proposes a variety of toolsets that will accommodate most needs, stemming from virtual reality for the training, wearables for the protective equipment of the emergency responders to UAV (drones), UAG and airships for improving capacity in temporal and spatial analysis as well as to increase the inspected area coverage. The TREEADS technologies and services will be validated in 8 complex pilot implementations (6 EU countries, 1 Associate Country and Taiwan). EFB will provide pilots with the OpenStreetMap (OSM)-based Mapping Tool, which is a cross-platform compatible app that visualizes static and dynamic information fetched from relevant REST APIs. It is designed to display points of interest (POIs), events, and directions or suggestions based on simulated scenarios in natural environments such as forests and gorges. The tool combines the OSM database with the OpenLayers and/or Leaflet libraries and the OpenRouteService and/or OSRM and/or Mapbox map services. By combining these powerful tools, OSM-based Mapping Tool offers a comprehensive solution for visualizing geographic data in an intuitive and user-friendly way. All the processed data stored by OSM-based Mapping Tool will be available to be used by the other components, involved in the TREEADS project.

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OpenStreetMap-Based Mapping Tool to Support TREEADS Holistic Fire Management Ecosystem for Prevention, Detection and Restoration of Environmental Disasters

  • Konstantinos Zapounidis,
  • Christos Koidis,
  • Nikolaos Sakkos,
  • Athanasios Bantsos,
  • Irodotos Aptalidis,
  • Dimitrios Aidonis,
  • Charisios Achillas

摘要

Considering the socio-ecological transition of Europe 2030, and towards a more resilient and informed community, focusing on the forests that are near wildfire risk, TREEADS project aims to build upon state-of-the-art high TRL (Technology Readiness Level) products and unite them in a Holistic Fire Management Platform that optimize and reuse per phase the available socio-technological resources in all three main phases of wildfires. For the prevention and preparedness, TREEADS project proposes the use of a real-time risk evaluation tool that can receive multiple classification inputs and work with a new proposed neural network-powered Risk Factor Indicator. TREEADS uses a variety of technological solutions such as the Copernicus infrastructure, and a swarm of small drones customized for accurate forest supervision. In the area of detection, TREEADS proposes a variety of toolsets that will accommodate most needs, stemming from virtual reality for the training, wearables for the protective equipment of the emergency responders to UAV (drones), UAG and airships for improving capacity in temporal and spatial analysis as well as to increase the inspected area coverage. The TREEADS technologies and services will be validated in 8 complex pilot implementations (6 EU countries, 1 Associate Country and Taiwan). EFB will provide pilots with the OpenStreetMap (OSM)-based Mapping Tool, which is a cross-platform compatible app that visualizes static and dynamic information fetched from relevant REST APIs. It is designed to display points of interest (POIs), events, and directions or suggestions based on simulated scenarios in natural environments such as forests and gorges. The tool combines the OSM database with the OpenLayers and/or Leaflet libraries and the OpenRouteService and/or OSRM and/or Mapbox map services. By combining these powerful tools, OSM-based Mapping Tool offers a comprehensive solution for visualizing geographic data in an intuitive and user-friendly way. All the processed data stored by OSM-based Mapping Tool will be available to be used by the other components, involved in the TREEADS project.