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TwitterThe ArcGIS 360 VR web app allows you to view 360 VR Experiences in virtual reality headsets. You can also open these experiences on your desktop PCs and mobile devices. In this lesosn we will look at how to convert a web scene to an immersive virtual reality.Visit the ArcGIS 360 VR to explore different examples now.For the product documentation click the button below:
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Twitter3D Outputs from Reality MappingData courtesy of IPR PrahaCollected with a Leica CityMapper-2S
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Workflow for Line-of-Sight (LOS) analysis in GIS (ArcGIS Desktop/PRO software release): the video shows the setup of hypothetical observing points, evenly distributed through the space of the virtually reconstructed house of Caecilius Iucundus (height on the ground floor 1.65 m, space interval 0.2 m). LOS algorithm enabled us to generate a vertical map featuring the percentage of visual exposure of the fresco’s surface and a horizontal map of cumulative visibility of the fresco from each observing location
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TwitterDie Augmented Reality Sandkiste kombiniert Methoden analogen Modellierens mit Methoden der 3-D Visualisierung. Die Teilnehmer können eigene topographische Oberflächenformen analog im Sandkasten kreieren. Mit der Augmented-Reality Technik werden die erzeugten Oberflächenformen mit Höhenlinien, einer nach Höhe abgestuften Farbskala sowie einem virtuellen Niederschlagsabfluss versehen. Hierbei erfasst eine Tiefenkamera des Typs Kinect das geformte Oberflächenrelief der Sandberge und Täler. Ein Beamer projiziert mittels Visualisierungssoftware (UC Davis) eine passende Textur auf die Oberfläche. Die Teilnehmer können somit spielerisch verschiedene topographische und hydrologische Zusammenhänge erkunden. Bei der Augmented Reality Sandkiste handelt es sich um ein Open Souce Produkt, das unter folgendem Link einsehbar ist.
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TwitterPrior to 2020, South Carolina State Government, along with a majority of our Local Governments saw a need for high quality aerial imagery. State law requires that counties must map using orthophotography every 10 years for assessment purposes. This created a unique dataset which had a multitude of varying spatial, temporal and radiometric resolutions. With this "patchwork" of imagery no one entity could really benefit from a standard dataset. Because of this need for a baseline imagery dataset, South Carolina Revenue and Fiscal Affairs Office's (SC RFA) statewide aerial initiative became a reality. With onetime General Assembly appropriations, we were able to successfully collect a full statewide aerial dataset. This data was collected between January 7 and March 7, 2020, during leaf-off and cloud free conditions by Kucera International Inc. Using both frame (Vexcel Eagle M1) and push-broom (Leica ADS100) based digital mapping cameras, all of the imagery was collected at 6-inch resolution with 4-radiometric bands producing True and False Color datasets. This data will be used by local, state and federal agencies to help manage land, land tax assessment, change detection and emergency operations along with other business applications.
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TwitterOur Co-design team is from the University of Texas, working on a Department of Energy-funded project focused on the Beaumont-Port Arthur area. As part of this project, we will be developing climate-resilient design solutions for areas of the region. More on www.caee.utexas.edu. We captured aerial photos in the Port Arthur Coastal Neighborhood Community and the Golf Course on Pleasure Island, Texas, in June 2024. Aerial photos taken were through DroneDeploy autonomous flight, and models were processed through the DroneDeploy engine as well. All aerial photos are in .JPG format and contained in zipped files for each area. The processed data package includes 3D models, geospatial data, mappings, and point clouds. Please be aware that DTM, Elevation toolbox, Point cloud, and Orthomosaic use EPSG: 6588. And 3D Model uses EPSG: 3857. For using these data: - The Adobe Suite gives you great software to open .Tif files. - You can use LASUtility (Windows), ESRI ArcGIS Pro (Windows), or Blaze3D (Windows, Linux) to open a LAS file and view the data it contains. - Open an .OBJ file with a large number of free and commercial applications. Some examples include Microsoft 3D Builder, Apple Preview, Blender, and Autodesk. - You may use ArcGIS, Merkaartor, Blender (with the Google Earth Importer plug-in), Global Mapper, and Marble to open .KML files. - The .tfw world file is a text file used to georeference the GeoTIFF raster images, like the orthomosaic and the DSM. You need suitable software like ArcView to open a .TFW file. This dataset provides researchers with sufficient geometric data and the status quo of the land surface at the locations mentioned above. This dataset could streamline researchers' decision-making processes and enhance the design as well.
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Explore the booming 3D Mapping and Modeling market trends, drivers, and forecasts. Discover key insights for municipal, commercial, and innovative applications, featuring major industry players and regional growth.
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TwitterOur Co-design team is from the University of Texas, working on a Department of Energy-funded project focused on the Beaumont-Port Arthur area. As part of this project, we will be developing climate-resilient design solutions for areas of the region. More on www.caee.utexas.edu. We used a DJI Mavic 2 Pro to capture aerial photos in Beaumont-Port Arthur, TX, in February 2023, including: I. Beaumont Soccer Club II. Corps’ Port Arthur Resident Office III. Halbouty Pump Station comprises its vicinity IV. Lamar University (Including Exxon Power Plants close to Lamar Univ.) V. MLK Boulevard for aerial images of the industry and the ship channel VI. Salt Water Barrier (include some aerial images about the Big Thicket) Aerial photos taken were through DroneDeploy autonomous flight, and models were processed through the DroneDeploy engine as well. All aerial photos are in .JPG format and contained in zipped files for each location. The processed data package including 3D models, geospatial data, mappings, point clouds, and the animation video of Halbouty Pump Station has various file types: - The Adobe Suite gives you great software to open .Tif files. - You can use LASUtility (Windows), ESRI ArcGIS Pro (Windows), or Blaze3D (Windows, Linux) to open a LAS file and view the data it contains. - Open an .OBJ file with a large number of free and commercial applications. Some examples include Microsoft 3D Builder, Apple Preview, Blender, and Autodesk. - You may use ArcGIS, Merkaartor, Blender (with the Google Earth Importer plug-in), Global Mapper, and Marble to open .KML files. - The .tfw world file is a text file used to georeference the GeoTIFF raster images, like the orthomosaic and the DSM. You need suitable software like ArcView to open a .TFW file. This dataset provides researchers with sufficient geometric data and the status quo of the land surface at the locations mentioned above. This dataset could streamline researchers' decision-making processes and enhance the design as well. In October 2023, we had our follow-up data collection, including: I. Beaumont Soccer Club II. Shipping and Receiving Center at Lamar University After the aerial collection, we obtained aerial photos of those two locations mentioned above, as well as processed data (such as point clouds and models).
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TwitterThese boundaries are simplified from the U.S. Fish and Wildlife Service Real Estate Interest data layer containing polygons representing tracts of land (parcels) in which the Service has a real estate interest. Interior boundaries between parcels were dissolved to produce a single set of simplified external boundaries for each feature. These are resource grade mapping representations of the U.S. Fish and Wildlife Service boundaries. For legal descriptions of the land represented here, contact the USFWS Realty Office. This map layer was compiled by the U.S. Fish and Wildlife Service. Although these boundaries represent lands administered by the U.S. Fish and Wildlife Service, not all areas are open to the public. Some fragile habitats need to be protected from human traffic and some management areas are closed. The public is urged to contact specific Refuges or other conservation areas before visiting.Data can also be downloaded from ServCat, the FWS Catalog. Go to this link for downloadable cadastral data: https://iris.fws.gov/APPS/ServCat/Reference/Profile/179880Sync is enabled, but editing is disabled. POC for these data are: cdwg@fws.gov
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TwitterDO NOT DELETE OR MODIFY THIS ITEM. This item is managed by the ArcGIS Hub application. To make changes to this site, please visit your Hub's overview via https://hub.arcgis.com
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The global 3D Mapping and Modelling Software market is experiencing robust growth, projected to reach a significant market size of approximately $18.5 billion by 2025, with a compound annual growth rate (CAGR) of around 12%. This expansion is largely fueled by the increasing adoption of 3D mapping and modeling technologies across a diverse range of industries. Key drivers include the burgeoning demand for enhanced visualization and spatial data analysis in sectors like retail and consumer goods for product placement and store layout optimization, engineering and construction for intricate design, project planning, and site monitoring, and healthcare and life sciences for anatomical modeling and surgical simulation. Furthermore, the transportation and logistics sector leverages these tools for efficient route planning and infrastructure development, while government and defense applications utilize them for urban planning, surveillance, and simulation. The media and entertainment industry's growing reliance on realistic virtual environments and special effects also contributes significantly to market momentum. Emerging trends such as the integration of Artificial Intelligence (AI) and Machine Learning (ML) for automated data processing and enhanced accuracy, coupled with the proliferation of drone technology and advancements in sensor capabilities, are revolutionizing the creation and utilization of 3D models. The increasing availability of cloud-based solutions is democratizing access to these powerful tools, lowering entry barriers for smaller businesses and individual professionals. However, certain restraints, including the high initial investment costs for sophisticated hardware and software, the need for skilled professionals to operate these complex systems, and data privacy concerns associated with vast amounts of spatial data, could temper the growth rate in specific segments. Despite these challenges, the continuous innovation in software features, improved interoperability, and the expanding application landscape are expected to sustain a dynamic and thriving market for 3D Mapping and Modelling Software in the coming years. This report offers an in-depth analysis of the global 3D Mapping and Modelling Software market, projecting a robust expansion from a valuation of $850.5 million in 2024 to an estimated $2,500.8 million by 2033, exhibiting a Compound Annual Growth Rate (CAGR) of approximately 12.8% during the forecast period of 2025-2033. The study encompasses the historical period of 2019-2024, with the base year for estimations set at 2025. It delves into critical aspects including market concentration, emerging trends, regional dominance, product insights, driving forces, challenges, and the key players shaping this dynamic industry.
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| BASE YEAR | 2024 |
| HISTORICAL DATA | 2019 - 2023 |
| REGIONS COVERED | North America, Europe, APAC, South America, MEA |
| REPORT COVERAGE | Revenue Forecast, Competitive Landscape, Growth Factors, and Trends |
| MARKET SIZE 2024 | 9.04(USD Billion) |
| MARKET SIZE 2025 | 9.84(USD Billion) |
| MARKET SIZE 2035 | 23.0(USD Billion) |
| SEGMENTS COVERED | Application, Technology, End Use, Deployment Type, Regional |
| COUNTRIES COVERED | US, Canada, Germany, UK, France, Russia, Italy, Spain, Rest of Europe, China, India, Japan, South Korea, Malaysia, Thailand, Indonesia, Rest of APAC, Brazil, Mexico, Argentina, Rest of South America, GCC, South Africa, Rest of MEA |
| KEY MARKET DYNAMICS | increasing smartphone penetration, demand for real-time navigation, growth of ride-hailing services, expansion of IoT applications, surge in location-based advertising |
| MARKET FORECAST UNITS | USD Billion |
| KEY COMPANIES PROFILED | Quanergy, Geotab, Apple, Navinfo, Amap, Cyclomedia, HERE Technologies, Microsoft, TomTom, ESRI, Mapbox, Mobileye, Google, OpenStreetMap, Sygic |
| MARKET FORECAST PERIOD | 2025 - 2035 |
| KEY MARKET OPPORTUNITIES | Increased demand for location-based services, Growth in autonomous vehicle technology, Expansion of smart city initiatives, Rising popularity of mobile mapping applications, Integration of AI and machine learning. |
| COMPOUND ANNUAL GROWTH RATE (CAGR) | 8.9% (2025 - 2035) |
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TwitterThis feature class shows the Alaska boroughs and census areas, current to 2021. It was downloaded from https://www.census.gov/geographies/mapping-files/time-series/geo/tiger-geodatabase-file.html on April 20, 2022.
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The Land Status view of National Forest System land parcels that have legal descriptions such as National Wilderness Area, Primitive Area, or Wilderness Study Area. Areas designated by Congress as a part of the National Wilderness Preservation System, with related details including the date of the designation, status of the final boundary description, authority, and land status case and document. MetadataThis record was taken from the USDA Enterprise Data Inventory that feeds into the https://data.gov catalog. Data for this record includes the following resources: ISO-19139 metadata ArcGIS Hub Dataset ArcGIS GeoService OGC WMS CSV Shapefile GeoJSON KML For complete information, please visit https://data.gov.
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TwitterThis feature layer depicts the various types of land status within the National Wildlife Refuges in Alaska. The information was compiled by the U.S. Fish & Wildlife Service, Region 7, Division of Realty, using Bureau of Land Management Master Title Plats as the primary data source.Status depicted includes:- Managed by USFWS- Managed by other Federal agencies- Selected land (private, native corporation, State of Alaska)- Patented land (private, native corporation, State of Alaska)This feature layer is updated monthly, on or near the last day of the month.
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| BASE YEAR | 2024 |
| HISTORICAL DATA | 2019 - 2023 |
| REGIONS COVERED | North America, Europe, APAC, South America, MEA |
| REPORT COVERAGE | Revenue Forecast, Competitive Landscape, Growth Factors, and Trends |
| MARKET SIZE 2024 | 3.13(USD Billion) |
| MARKET SIZE 2025 | 3.5(USD Billion) |
| MARKET SIZE 2035 | 10.5(USD Billion) |
| SEGMENTS COVERED | Application, Deployment Type, End Use, Technology, Regional |
| COUNTRIES COVERED | US, Canada, Germany, UK, France, Russia, Italy, Spain, Rest of Europe, China, India, Japan, South Korea, Malaysia, Thailand, Indonesia, Rest of APAC, Brazil, Mexico, Argentina, Rest of South America, GCC, South Africa, Rest of MEA |
| KEY MARKET DYNAMICS | Increasing demand for 3D modeling, Advancements in imaging technology, Integration with GIS solutions, Surge in construction activities, Growing adoption of AR/VR applications |
| MARKET FORECAST UNITS | USD Billion |
| KEY COMPANIES PROFILED | Riegl, Topcon, Agisoft, Autodesk, PointCab, Pix4D, Hexagon, GeoSLAM, Trimble, Esri, Capturing Reality, FARO Technologies, RealityCapture, Bentley Systems, 3D Systems |
| MARKET FORECAST PERIOD | 2025 - 2035 |
| KEY MARKET OPPORTUNITIES | Increased demand for urban planning, Integration with BIM technologies, Advancements in drone technology, Growth in construction and architecture sectors, Rising use in heritage preservation |
| COMPOUND ANNUAL GROWTH RATE (CAGR) | 11.7% (2025 - 2035) |
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Discover the booming Reality & Spatial Modeling Software market! This in-depth analysis reveals a $15 billion market in 2025, projected to reach $50 billion by 2033 at a 15% CAGR. Explore key drivers, trends, and regional insights shaping this dynamic industry. Learn about applications in AEC, gaming, and more.
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| BASE YEAR | 2024 |
| HISTORICAL DATA | 2019 - 2023 |
| REGIONS COVERED | North America, Europe, APAC, South America, MEA |
| REPORT COVERAGE | Revenue Forecast, Competitive Landscape, Growth Factors, and Trends |
| MARKET SIZE 2024 | 12.27(USD Billion) |
| MARKET SIZE 2025 | 13.3(USD Billion) |
| MARKET SIZE 2035 | 30.0(USD Billion) |
| SEGMENTS COVERED | Application, Technology, End Use, Data Type, Regional |
| COUNTRIES COVERED | US, Canada, Germany, UK, France, Russia, Italy, Spain, Rest of Europe, China, India, Japan, South Korea, Malaysia, Thailand, Indonesia, Rest of APAC, Brazil, Mexico, Argentina, Rest of South America, GCC, South Africa, Rest of MEA |
| KEY MARKET DYNAMICS | Technological advancements, Increasing mobile applications, Demand for location-based services, Growth in autonomous vehicles, Expansion of GIS technology |
| MARKET FORECAST UNITS | USD Billion |
| KEY COMPANIES PROFILED | DigitalGlobe, Cyclomedia Technology, Apple, Navinfo, MapQuest, HERE Technologies, Microsoft, TomTom, Esri, Mapbox, Trimble, Pitney Bowes, Zenrin, Google, OpenStreetMap |
| MARKET FORECAST PERIOD | 2025 - 2035 |
| KEY MARKET OPPORTUNITIES | Increased demand for navigation apps, Growth in autonomous vehicle technologies, Expansion of location-based services, Rise in augmented reality applications, Integration with smart city initiatives |
| COMPOUND ANNUAL GROWTH RATE (CAGR) | 8.4% (2025 - 2035) |
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TwitterThis data layer depicts centroid points of NWRS lands. that have been placed upon the lands and waters administered by the U.S. Fish and Wildlife Service (USFWS) in North America, U.S. Trust Territories and Possessions. Office locations should be mapped using data stored in the Corporate Master Table.Data can also be downloaded on Servcat or here: https://iris.fws.gov/APPS/ServCat/Reference/Profile/179870Sync is enabled, but editing is disabled. POC for these data are: cdwg@fws.gov
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The Forest Service's Natural Resource Manager (NRM) Forest Activity Tracking System (FACTS) is the agency standard for managing information aboutactivities related to fire/fuels, silviculture, and invasive species. FACTS is an activity tracking application for all levels of the Forest Service. The application allows tracking and monitoring of NEPA decisions as well as the ability to create and manage KV trust fund plans at the timber sale level. This application complements its companion NRM applications, which cover the spectrum of living and non-living natural resource information. This layer represents Collaborative Forest Landscape Restoration (CFLR) Program project activities. Also included are other High Priority Restoration projects that are funded outside of CFLR. It is important to note that this layer does not contain all of the approved project activities. Instead, these are the accomplishments that project groups uploaded to the Forest Service corporate data holdings in FACTS. As spatial data is a new requirement for the program, improvements to the quality and comprehensiveness of this data is expected in coming years. MetadataThis record was taken from the USDA Enterprise Data Inventory that feeds into the https://data.gov catalog. Data for this record includes the following resources: ISO-19139 metadata ArcGIS Hub Dataset ArcGIS GeoService CSV Shapefile GeoJSON KML For complete information, please visit https://data.gov.
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TwitterThe ArcGIS 360 VR web app allows you to view 360 VR Experiences in virtual reality headsets. You can also open these experiences on your desktop PCs and mobile devices. In this lesosn we will look at how to convert a web scene to an immersive virtual reality.Visit the ArcGIS 360 VR to explore different examples now.For the product documentation click the button below: