ThreeJS Map viewer
Budget: ₹750 – ₹1,250 INR
1. The map viewer must be a 3D GIS interface with pan, zoom and tilt navigation controls.
Handles imagery and elevation from WMS/WMTS
Different globes, 3D models and flat mode
3D Tiles pointclouds, 3D models
Splitted rendering for showing the imagery and normal map
2. The viewer must be in a position to visualise various GIS based data layers in tile or image form.
The propsed viewer will have support for visualising standard Web mapping and tile services from
various map service providers including Nearmap.
3. Support for the LIDAR and point cloud data. This will help us to implement LIDAR assisted modelling
of the study area by preparing better 3D models for design and shading analysis.
4. The building polygons in vector format has to be visualised on the 3D mapping interface. The roof
and building polygons in standard vector formats will be supported.
Future Upgrades
Dynamic roof detection based on DSM and orthophoto imagery. Dynamic classification of edges, azimuth calculation
and application of firecode setbacks dynamically, wherever necessary.
Accurate 3D model generation based on LIDAR data for design and shading analysis
Interactive shade simulator based on the weather data, sun path diagrams for any any day of the year
5. It must be suitable for further upgradation in the creation of dynamic rooftop surface based on the
DSM/LIDAR and orthophoto imager available for the area by implementing edge detection, classification of the
edges, calculation of slope and azimuth.
Handles imagery and elevation from WMS/WMTS
Different globes, 3D models and flat mode
3D Tiles pointclouds, 3D models
Splitted rendering for showing the imagery and normal map
2. The viewer must be in a position to visualise various GIS based data layers in tile or image form.
The propsed viewer will have support for visualising standard Web mapping and tile services from
various map service providers including Nearmap.
3. Support for the LIDAR and point cloud data. This will help us to implement LIDAR assisted modelling
of the study area by preparing better 3D models for design and shading analysis.
4. The building polygons in vector format has to be visualised on the 3D mapping interface. The roof
and building polygons in standard vector formats will be supported.
Future Upgrades
Dynamic roof detection based on DSM and orthophoto imagery. Dynamic classification of edges, azimuth calculation
and application of firecode setbacks dynamically, wherever necessary.
Accurate 3D model generation based on LIDAR data for design and shading analysis
Interactive shade simulator based on the weather data, sun path diagrams for any any day of the year
5. It must be suitable for further upgradation in the creation of dynamic rooftop surface based on the
DSM/LIDAR and orthophoto imager available for the area by implementing edge detection, classification of the
edges, calculation of slope and azimuth.