Indoors Demo for Building L in Esri Redlands Campus.
Indoor Space Planner is an ArcGIS Indoors application template for space management and assignment inside buildings. It provides an indoor mapping experience to perform occupant assignment updates to account for reorganization efforts, changes to office space, or growth in the organization. You can use Space Planner to plan office moves as well as define areas and staff assignments for office hoteling.Key Features offered by the Indoor Space Planner appConsolidate space through occupant office assignments and make more space available for other usesUpdate occupant assignments with newly built or acquired office spacesDefine seating arrangements to support a safer work environmentIncrease collaboration between staff and teams with space assignment for improved productivity and communicationAssign staff and teams to areas that optimize access to building assets such as collaboration spaces, meeting rooms, equipment, or amenitiesSpace Planner application requires Indoors Spaces license.
Indoor Viewer is an ArcGIS Indoors application template for viewing indoor maps and various other indoor data. This app provides an indoor mapping experience for searching and exploring locations of people, places, and events happening within your workplace. You can use Indoor Viewer to confidently navigate your workplace or campus, increase productivity and collaboration with your colleagues, and feel more connected to your workplace or campus.Key Features offered by the Indoor Viewer app:Explore indoor maps and navigate to people and places within your organization.Search for specific people, activities, events, offices, classrooms, and other points of interest.Integrate with your calendar to see locations of scheduled meetings and eventsBook office hotels or meeting rooms for collaboration.Review estimated travel times to offices, meeting rooms and event locations.@@indoors_features6@@Share indoor location to update others with your current location or help others find a location.Link to other apps and pass indoor location information such as when submitting work requests to maintenance systems.Indoor Viewer application requires Indoors Maps license.
Floor Plan Editor is an ArcGIS Indoors application template for managing and editing floor plans. This app provides an indoor mapping experience for understanding your floor plan layout, updating existing floor plan data, and adding new sites, buildings, floors, rooms, walls, doors, windows, and even furniture. You can use Floor Plan Editor to keep your floor plans up to date with the physical changes to your workplace.Key Features offered by the Floor Plan Editor app:Update floor plans and attributes.Add sites, facilities, and levels.Draw rooms and walls by specifying dimensions or tracing over an image.Split or merge existing units.Place windows, doors, and furniture.Floor Plan Editor application requires Indoors Spaces license.
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The global digital indoor map market is experiencing robust growth, driven by the increasing adoption of indoor navigation systems in various sectors. The market size is projected to reach $XXX million by 2033, expanding at a CAGR of XX% over the forecast period of 2025-2033. Key drivers include the rising demand for indoor mapping solutions in public sector agencies and retail establishments, the integration of advanced technologies such as augmented reality and artificial intelligence, and the growing emphasis on indoor safety and security measures. Segmentation of the digital indoor map market reveals distinct application areas including automotive navigation, mobile and the internet, public sector agencies and enterprises, and others. Types of digital indoor maps available in the market include retail indoor maps, airport indoor maps, and others. Geographic regions considered in the analysis include North America, South America, Europe, Middle East & Africa, and Asia Pacific. Leading companies operating in the digital indoor map market include WoNoBo, Bing Maps, GeoMapserver, MapQuest, ArcGIS Online, and Yahoo! Maps, among others.
Indoors Demo for Building L in Esri Redlands Campus.
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As GIS and computing technologies advanced rapidly, many indoor space studies began to adopt GIS technology, data models, and analysis methods. However, even with a considerable amount of research on indoor GIS and various indoor systems developed for different applications, there has not been much attention devoted to adopting indoor GIS for the evaluation space usage. Applying indoor GIS for space usage assessment can not only provide a map-based interface for data collection, but also brings spatial analysis and reporting capabilities for this purpose. This study aims to explore best practice of using an indoor GIS platform to assess space usage and design a complete indoor GIS solution to facilitate and streamline the data collection, a management and reporting workflow. The design has a user-friendly interface for data collectors and an automated mechanism to aggregate and visualize the space usage statistics. A case study was carried out at the Purdue University Libraries to assess study space usage. The system is efficient and effective in collecting student counts and activities and generating reports to interested parties in a timely manner. The analysis results of the collected data provide insights into the user preferences in terms of space usage. This study demonstrates the advantages of applying an indoor GIS solution to evaluate space usage as well as providing a framework to design and implement such a system. The system can be easily extended and applied to other buildings for space usage assessment purposes with minimal development efforts.
With the White House release of guidelines for states to reopen and employees to gradually return to work, facilities are tasked with complex challenges. Managers must make decisions to ensure a safe work environment and adhere to social distancing requirements. Office layouts must be restructured for adequate spacing between workspaces and to allow for routing that minimizes close-proximity encounters. Clear communication with staff will also be a key factor: Which areas should be avoided? When has an area last be cleaned?The ArcGIS Indoors system from Esri can help answer these geospatially focused questions for reopening the workplace. With indoor maps and an indoor positioning system, managers can create a floor-plan level awareness of the workplace, one that will allow for safe reopening._Communities around the world are taking strides in mitigating the threat that COVID-19 (coronavirus) poses. Geography and location analysis have a crucial role in better understanding this evolving pandemic.When you need help quickly, Esri can provide data, software, configurable applications, and technical support for your emergency GIS operations. Use GIS to rapidly access and visualize mission-critical information. Get the information you need quickly, in a way that’s easy to understand, to make better decisions during a crisis.Esri’s Disaster Response Program (DRP) assists with disasters worldwide as part of our corporate citizenship. We support response and relief efforts with GIS technology and expertise.More information...
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The Indoor GIS Software market is experiencing robust growth, driven by the increasing need for precise location-based services within enclosed spaces. The market, valued at approximately $1.5 billion in 2025, is projected to exhibit a Compound Annual Growth Rate (CAGR) of 15% from 2025 to 2033, reaching an estimated $5 billion by 2033. This expansion is fueled by several key factors. Firstly, the rising adoption of smart buildings and IoT devices provides a wealth of data that Indoor GIS software can effectively leverage for enhanced operational efficiency and improved user experiences. Secondly, the burgeoning e-commerce sector and the consequent demand for optimized warehouse logistics and efficient supply chain management are significantly boosting market demand. Thirdly, the expansion of applications into sectors like healthcare, retail, and security is further diversifying market opportunities. Cloud-based solutions are witnessing higher adoption due to their scalability, cost-effectiveness, and ease of deployment compared to on-premise solutions. However, concerns regarding data security and privacy, as well as the relatively high initial investment costs for implementing Indoor GIS systems, pose challenges to market growth. Segmentation reveals strong demand across various applications. Warehouse logistics and asset management currently dominate the market share due to the clear ROI benefits of improved inventory management and asset tracking. The military and security sectors also present lucrative growth opportunities, driven by the need for sophisticated indoor navigation and situational awareness. Geographically, North America and Europe currently hold the largest market shares, attributed to the high concentration of technologically advanced businesses and early adoption of Indoor GIS technologies. However, Asia-Pacific is expected to show significant growth in the coming years, propelled by rapid urbanization and expanding industrial sectors in countries like China and India. Companies like Mapedin, Esri, and others are key players driving innovation and shaping the competitive landscape. The ongoing development of advanced features such as real-time location tracking, augmented reality integration, and improved data analytics capabilities will further fuel market growth in the coming years.
BY USING THIS WEBSITE OR THE CONTENT THEREIN, YOU AGREE TO THE TERMS OF USE. This feature class represents the location of indoor recreational facilities (such as theaters, indoor putt putt, and museums) in Oakland County using a point feature. The data was created by geocoding to parcels from a list compiled in 2002. Key attributes include name and address for each facility.This is a subset of the OC Recreational layer.
UTC Sim Center Indoor Map for ArcGIS Indoors online
This digital layer contains polygons (vector format) of portions of California designated as having high, moderate, low, or unknown potential for homes to exceed the U.S. EPA recommended radon action level of 4.0 picocuries per liter in indoor air. Only a portion of California is covered by the studies included in this dataset.
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The global digital indoor map market is estimated to be valued at USD XXX million in 2023 and is projected to grow at a CAGR of XX% from 2023 to 2033, reaching USD XXX million by 2033. The growth of the digital indoor map market is driven by the increasing adoption of smartphones and tablets, the growing demand for location-based services, and the rising use of indoor navigation apps. The major players in the digital indoor map market include WoNoBo, Bing Maps, GeoMapserver, MapQuest, and ArcGIS Online. These companies offer a variety of digital indoor map solutions, including retail indoor maps, airport indoor maps, and mobile indoor navigation apps. The market also includes a number of regional players, such as Mapion, MappyMapSherpa, and NearMap.
This layer shows the location of the Indoor Air Quality Information Centre in Hong Kong. It is a subset of the geo-referenced public facility data made available by the Lands Department under the Government of Hong Kong Special Administrative Region (the “Government”) at https://DATA.GOV.HK/ (“DATA.GOV.HK”). The source data is in XLS format and processed and converted to Esri File Geodatabase format and then uploaded to Esri’s ArcGIS Online platform for sharing and reference purpose. The objectives are to facilitate our Hong Kong ArcGIS Online users to use the data in a spatial ready format and save their data conversion effort. For details about the data, source format and terms of conditions of usage, please refer to the website of DATA.GOV.HK (https://data.gov.hk).
Study area boundaries for indoor radon potential conducted by the California Geological Survey.
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The global indoor GIS substations market size was valued at approximately $5.8 billion in 2023 and is projected to reach $10.9 billion by 2032, growing at a CAGR of 7.2% during the forecast period. This growth is primarily driven by the increasing demand for reliable and efficient power distribution systems in urban areas, along with the need for upgrading aging electrical infrastructure worldwide.
One of the most significant growth factors for the indoor GIS substations market is urbanization. As cities continue to grow and expand, the demand for compact and efficient power distribution solutions has surged. Indoor GIS substations are particularly suitable for densely populated urban areas due to their compact size and reduced maintenance requirements. These substations can be installed in confined spaces such as basements or underground, making them ideal for modern urban development projects.
Another key growth driver is the rising focus on energy efficiency and sustainability. Governments and utilities are increasingly investing in modern power infrastructure that reduces energy losses and improves overall grid reliability. Indoor GIS substations offer superior performance and reliability compared to traditional air-insulated substations, which makes them an attractive option for new installations and retrofitting projects aimed at enhancing energy efficiency.
Technological advancements in the field of gas-insulated switchgear (GIS) have also played a crucial role in driving market growth. Innovations such as digital monitoring systems, improved insulation materials, and enhanced arc-quenching techniques have made indoor GIS substations more reliable and efficient. These advancements not only extend the operational life of the substations but also reduce the risk of failures and associated downtime, thereby contributing to market expansion.
From a regional perspective, Asia Pacific is expected to dominate the indoor GIS substations market during the forecast period. Rapid industrialization, urbanization, and significant infrastructure development projects in countries such as China and India are major contributors to market growth in this region. Furthermore, government initiatives to upgrade the aging power infrastructure and integrate renewable energy sources into the grid are expected to bolster demand for indoor GIS substations in the Asia Pacific region.
The indoor GIS substations market is segmented based on voltage levels into medium voltage, high voltage, and extra high voltage categories. The medium voltage segment is anticipated to witness substantial growth owing to its widespread application in urban infrastructure and commercial buildings. Medium voltage GIS substations are favored for their compact design, which suits the limited space available in urban settings, and their ability to provide reliable power distribution to residential and commercial areas.
High voltage GIS substations cater to the needs of large-scale industrial facilities and urban substations where high power transmission is critical. The demand for high voltage substations is driven by the expansion of industrial zones and the need for efficient and reliable power supply to support manufacturing processes. Additionally, high voltage GIS substations are increasingly being adopted in smart grid projects, which aim to enhance grid stability and integrate renewable energy sources.
Extra high voltage GIS substations are crucial for large-scale power transmission and distribution networks. These substations are typically used in national and regional grid interconnections, where reliability and efficiency are paramount. The growth of this segment is fueled by the increasing investments in upgrading and expanding national grid infrastructures, particularly in emerging economies where the demand for electricity is rising rapidly.
Technological advancements in insulation and arc-quenching technologies have significantly improved the performance and reliability of GIS substations across all voltage levels. This has made them an attractive option for utilities and industrial users aiming to reduce maintenance costs and enhance operational efficiency. Furthermore, the growing focus on integrating digital monitoring and control systems in GIS substations is expected to drive further advancements and adoption across different voltage levels.
Seattle Parks & Recreation Reservable Indoor Event SpacesRefresh Cycle: WeeklyFeature Class: DPR.IndoorEventSpace_PT
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The Indoor Location-based Services Market size was valued at USD 17.99 billion in 2023 and is projected to reach USD 45.29 billion by 2032, exhibiting a CAGR of 14.1 % during the forecasts period. The Indoor Location-based Service (ILBS) market comprises range technologies that are used for location detection and for navigation of indoor infrastructure through services like Wi-Fi, Bluetooth, RFID and GPS. They are employed in various industries including retail, healthcare, third-party logistics and transportation with the view of improving on customer experience, operations and safety respectively. Uses include location-based service and optimization; embracing use of indoor navigation, identification of assets, location of analytics, and proximity marketing to enable timely offering of services as well as efficiency in service delivery. Some of the trends in the ILBS market currently are enhanced by the use of augmented reality, especially for way-finding, the growth in the use of IoT devices, and the improvement of machine learning algorithms for precise positioning. With the growth of urbanisation, demand for Indoor Navigation System solutions will be very high. Recent developments include: In December 2022, Oriient New Media Ltd, a software-based IndoorGPS provider that utilizes Earth's magnetic field, launched its solution on the Google Cloud Marketplace. It enables customers with existing commitments on the platform to procure and receive consolidated billing through a single channel conveniently. The availability of Oriient's solution on the marketplace aims to assist retailers in enhancing the in-store shopping experience by incorporating additional digital touchpoints and leveraging customer journey analytics for operational improvements and increased profitability. , In September 2022, Inpixon, an indoor intelligence company, joined forces with Schauenburg Systems, an OEM specializing in mine safety systems and equipment. The collaboration aims to promote Inpixon's real-time location technologies to mining companies operating in South Africa. The agreement focuses on selling numerous nanoLOC chips and other core technologies from Inpixon that provide collision avoidance, offering real-time tracking and proximity applications for the mining industry. , In July 2022, Esri, a geographic information system company, launched ArcGIS IPS, an indoor positioning system designed for facility wayfinding. This innovative solution empowers organizations to incorporate indoor location services throughout their facilities and campuses. By utilizing ArcGIS IPS, maintenance workers can efficiently review service requests and promptly identify and navigate to specific locations inside buildings where repairs are required. , In January 2022, HERE, a location data and technology platform, launched Indoor Map as a service. This comprehensive solution for indoor mapping is made possible through a partnership with Navenio, a software company. By leveraging this technology, businesses can create high-definition, 3D indoor maps of their buildings, accurately representing real-world data. .
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Learn state-of-the-art skills to build compelling, useful, and fun Web GIS apps easily, with no programming experience required.Building on the foundation of the previous three editions, Getting to Know Web GIS, fourth edition,features the latest advances in Esri’s entire Web GIS platform, from the cloud server side to the client side.Discover and apply what’s new in ArcGIS Online, ArcGIS Enterprise, Map Viewer, Esri StoryMaps, Web AppBuilder, ArcGIS Survey123, and more.Learn about recent Web GIS products such as ArcGIS Experience Builder, ArcGIS Indoors, and ArcGIS QuickCapture. Understand updates in mobile GIS such as ArcGIS Collector and AuGeo, and then build your own web apps.Further your knowledge and skills with detailed sections and chapters on ArcGIS Dashboards, ArcGIS Analytics for the Internet of Things, online spatial analysis, image services, 3D web scenes, ArcGIS API for JavaScript, and best practices in Web GIS.Each chapter is written for immediate productivity with a good balance of principles and hands-on exercises and includes:A conceptual discussion section to give you the big picture and principles,A detailed tutorial section with step-by-step instructions,A Q/A section to answer common questions,An assignment section to reinforce your comprehension, andA list of resources with more information.Ideal for classroom lab work and on-the-job training for GIS students, instructors, GIS analysts, managers, web developers, and other professionals, Getting to Know Web GIS, fourth edition, uses a holistic approach to systematically teach the breadth of the Esri Geospatial Cloud.AUDIENCEProfessional and scholarly. College/higher education. General/trade.AUTHOR BIOPinde Fu leads the ArcGIS Platform Engineering team at Esri Professional Services and teaches at universities including Harvard University Extension School. His specialties include web and mobile GIS technologies and applications in various industries. Several of his projects have won specialachievement awards. Fu is the lead author of Web GIS: Principles and Applications (Esri Press, 2010).Pub Date: Print: 7/21/2020 Digital: 6/16/2020 Format: Trade paperISBN: Print: 9781589485921 Digital: 9781589485938 Trim: 7.5 x 9 in.Price: Print: $94.99 USD Digital: $94.99 USD Pages: 490TABLE OF CONTENTSPrefaceForeword1 Get started with Web GIS2 Hosted feature layers and storytelling with GIS3 Web AppBuilder for ArcGIS and ArcGIS Experience Builder4 Mobile GIS5 Tile layers and on-premises Web GIS6 Spatial temporal data and real-time GIS7 3D web scenes8 Spatial analysis and geoprocessing9 Image service and online raster analysis10 Web GIS programming with ArcGIS API for JavaScriptPinde Fu | Interview with Esri Press | 2020-07-10 | 15:56 | Link.
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Indoor maps of three testing buildings
Indoors Demo for Building L in Esri Redlands Campus.