100+ datasets found
  1. G

    Utility GIS Data Quality Services Market Research Report 2033

    • growthmarketreports.com
    csv, pdf, pptx
    Updated Sep 1, 2025
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    Growth Market Reports (2025). Utility GIS Data Quality Services Market Research Report 2033 [Dataset]. https://growthmarketreports.com/report/utility-gis-data-quality-services-market
    Explore at:
    csv, pptx, pdfAvailable download formats
    Dataset updated
    Sep 1, 2025
    Dataset authored and provided by
    Growth Market Reports
    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Utility GIS Data Quality Services Market Outlook



    According to our latest research, the global Utility GIS Data Quality Services market size reached USD 1.29 billion in 2024, with a robust growth trajectory marked by a CAGR of 10.7% from 2025 to 2033. By the end of the forecast period, the market is projected to attain a value of USD 3.13 billion by 2033. This growth is primarily driven by the increasing need for accurate spatial data, the expansion of smart grid initiatives, and the rising complexity of utility network infrastructures worldwide.




    The primary growth factor propelling the Utility GIS Data Quality Services market is the surging adoption of Geographic Information Systems (GIS) for utility asset management and network optimization. Utilities are increasingly relying on GIS platforms to ensure seamless operations, improved decision-making, and regulatory compliance. However, the effectiveness of these platforms is directly linked to the quality and integrity of the underlying data. With the proliferation of IoT devices and the integration of real-time data sources, the risk of data inconsistencies and inaccuracies has risen, making robust data quality services indispensable. Utilities are investing heavily in data cleansing, validation, and enrichment to mitigate operational risks, reduce outages, and enhance customer satisfaction. This trend is expected to continue, as utilities recognize the strategic importance of data-driven operations in an increasingly digital landscape.




    Another significant driver is the global movement towards smart grids and digital transformation across the utility sector. As utilities modernize their infrastructure, they are deploying advanced metering infrastructure (AMI) and integrating distributed energy resources (DERs), which generate vast volumes of spatial and non-spatial data. Ensuring the accuracy, consistency, and completeness of this data is crucial for optimizing grid performance, minimizing losses, and enabling predictive maintenance. The need for real-time analytics and advanced network management further amplifies the demand for high-quality GIS data. Additionally, regulatory mandates for accurate reporting and asset traceability are compelling utilities to prioritize data quality initiatives. These factors collectively create a fertile environment for the growth of Utility GIS Data Quality Services, as utilities strive to achieve operational excellence and regulatory compliance.




    Technological advancements and the rise of cloud-based GIS solutions are also fueling market expansion. Cloud deployment offers utilities the flexibility to scale data quality services, access advanced analytics, and collaborate across geographies. This has democratized access to sophisticated GIS data quality tools, particularly for mid-sized and smaller utilities that previously faced budgetary constraints. Moreover, the integration of artificial intelligence (AI) and machine learning (ML) in data quality solutions is enabling automated data cleansing, anomaly detection, and predictive analytics. These innovations are not only reducing manual intervention but also enhancing the accuracy and reliability of utility GIS data. As utilities continue to embrace digital transformation, the demand for cutting-edge data quality services is expected to surge, driving sustained market growth throughout the forecast period.



    Utility GIS plays a pivotal role in supporting the digital transformation of the utility sector. By leveraging Geographic Information Systems, utilities can achieve a comprehensive understanding of their network infrastructures, enabling more efficient asset management and network optimization. The integration of Utility GIS with advanced data quality services ensures that utilities can maintain high standards of data accuracy and integrity, which are essential for effective decision-making and regulatory compliance. As utilities continue to modernize their operations and embrace digital technologies, the role of Utility GIS in facilitating seamless data integration and real-time analytics becomes increasingly critical. This not only enhances operational efficiency but also supports the strategic goals of sustainability and resilience in utility management.




    Regionally, North America leads the Utility GIS Data Quality Services market, accounting for the largest share in 2024, followed closely by

  2. D

    Utility GIS Data Quality Services Market Research Report 2033

    • dataintelo.com
    csv, pdf, pptx
    Updated Sep 30, 2025
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    Dataintelo (2025). Utility GIS Data Quality Services Market Research Report 2033 [Dataset]. https://dataintelo.com/report/utility-gis-data-quality-services-market
    Explore at:
    pptx, csv, pdfAvailable download formats
    Dataset updated
    Sep 30, 2025
    Dataset authored and provided by
    Dataintelo
    License

    https://dataintelo.com/privacy-and-policyhttps://dataintelo.com/privacy-and-policy

    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Utility GIS Data Quality Services Market Outlook



    According to our latest research, the global Utility GIS Data Quality Services market size reached USD 1.37 billion in 2024 and is projected to grow at a robust CAGR of 12.8% from 2025 to 2033, reaching an estimated USD 4.08 billion by 2033. The primary growth factor driving this market is the increasing demand for accurate, real-time geospatial data to optimize utility operations and comply with stringent regulatory requirements. The surge in smart grid deployments and digital transformation initiatives across the utility sector is significantly boosting the adoption of specialized GIS data quality services.




    One of the core growth drivers for the Utility GIS Data Quality Services market is the accelerating shift toward digital infrastructure in the utilities sector. Utilities, including electric, water, and gas providers, are increasingly relying on Geographic Information Systems (GIS) for asset management, network optimization, and outage management. However, the effectiveness of these systems is heavily dependent on the accuracy and integrity of the underlying data. As utilities modernize their grids and expand their service offerings, the need for comprehensive data cleansing, validation, and enrichment becomes paramount. This trend is further amplified by the proliferation of IoT devices and smart meters, which generate vast volumes of spatial and operational data, necessitating advanced GIS data quality services to ensure consistency and reliability across platforms.




    Another significant factor propelling market growth is the evolving regulatory landscape. Governments and regulatory bodies worldwide are imposing stricter requirements on utilities to maintain high-quality, up-to-date geospatial records for compliance, safety, and disaster response. Inaccurate or outdated GIS data can lead to costly penalties, service interruptions, and reputational damage. As a result, utility companies are investing heavily in data quality services to achieve regulatory compliance and mitigate operational risks. The integration of artificial intelligence and machine learning technologies into GIS data quality processes is also enhancing the efficiency and accuracy of data validation, migration, and integration, further supporting market expansion.




    Moreover, the increasing complexity of utility networks and the growing emphasis on sustainability and resilience are driving utilities to adopt advanced GIS data quality services. Utilities are under pressure to optimize resource allocation, minimize losses, and enhance customer service, all of which require high-quality geospatial data. The rise of distributed energy resources, such as solar and wind, and the need to manage bi-directional power flows are adding new layers of complexity to utility networks. GIS data quality services enable utilities to maintain a comprehensive, accurate digital twin of their infrastructure, supporting better planning, predictive maintenance, and rapid response to outages or emergencies. These factors collectively contribute to the sustained growth of the Utility GIS Data Quality Services market.




    From a regional perspective, North America currently dominates the Utility GIS Data Quality Services market, driven by large-scale investments in smart grid projects and the presence of major utility companies adopting advanced GIS solutions. However, Asia Pacific is expected to witness the fastest growth over the forecast period, fueled by rapid urbanization, infrastructure development, and government initiatives to modernize utility networks. Europe also presents significant opportunities, with increasing focus on sustainability, regulatory compliance, and cross-border energy integration. The Middle East & Africa and Latin America are gradually catching up, with investments in utility infrastructure and digital transformation initiatives gaining momentum. Overall, the global market is poised for substantial growth, underpinned by technological advancements, regulatory mandates, and the evolving needs of the utility sector.



    Service Type Analysis



    The Utility GIS Data Quality Services market is segmented by service type into data cleansing, data validation, data integration, data migration, data enrichment, and others. Data cleansing services form the backbone of this segment, as they address the critical need to remove inaccuracies, inconsistencies, and redundancies from utility GIS databases. Wit

  3. SPU GIS Datasets

    • data.seattle.gov
    • cos-data.seattle.gov
    • +2more
    csv, xlsx, xml
    Updated Dec 3, 2018
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    Seattle Public Utilities & Seattle IT (2018). SPU GIS Datasets [Dataset]. https://data.seattle.gov/Land-Base/SPU-GIS-Datasets/vchg-fmt4
    Explore at:
    xml, csv, xlsxAvailable download formats
    Dataset updated
    Dec 3, 2018
    Dataset provided by
    Seattle Public Utilitieshttps://www.seattle.gov/utilities
    Authors
    Seattle Public Utilities & Seattle IT
    Description

    | https://data-seattlecitygis.opendata.arcgis.com/datasets?q=spu | Lifecycle status: Production | Purpose: to enable open access to SPU GIS data. This website includes many utility datasets from categories such as DSO, Drainage and Wastewater infrastructure, and Storm Infrastructure. Many of this datasets are linked from this website.

  4. D

    Utility Network GIS Migration Market Research Report 2033

    • dataintelo.com
    csv, pdf, pptx
    Updated Sep 30, 2025
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    Dataintelo (2025). Utility Network GIS Migration Market Research Report 2033 [Dataset]. https://dataintelo.com/report/utility-network-gis-migration-market
    Explore at:
    csv, pptx, pdfAvailable download formats
    Dataset updated
    Sep 30, 2025
    Dataset authored and provided by
    Dataintelo
    License

    https://dataintelo.com/privacy-and-policyhttps://dataintelo.com/privacy-and-policy

    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Utility Network GIS Migration Market Outlook



    According to our latest research, the global Utility Network GIS Migration market size reached USD 2.04 billion in 2024, with a robust compound annual growth rate (CAGR) of 13.2% projected for the period from 2025 to 2033. By 2033, the market is anticipated to attain a value of USD 5.67 billion. The primary growth factor driving this surge is the increasing need for utilities to modernize legacy Geographic Information Systems (GIS) and integrate advanced digital mapping, asset management, and real-time data analytics to enhance operational efficiency and regulatory compliance.




    One of the key growth drivers for the Utility Network GIS Migration market is the accelerating pace of digital transformation across utility sectors such as electricity, water, gas, and telecommunications. Utilities are under immense pressure to improve service reliability, reduce operational costs, and comply with evolving regulatory frameworks. The migration from traditional GIS platforms to next-generation utility network GIS solutions enables organizations to leverage spatial analytics, automate workflows, and support the integration of smart grid technologies. The proliferation of distributed energy resources, IoT devices, and the need for advanced outage management systems have further intensified the demand for robust and scalable GIS migration strategies. Utilities are increasingly prioritizing the modernization of their spatial data infrastructure to ensure seamless data flow, improve asset tracking, and enhance customer engagement, thereby fueling market expansion.




    Another significant growth factor is the rising adoption of cloud-based GIS solutions, which offer utilities unparalleled flexibility, scalability, and cost-effectiveness. Cloud deployment models enable utilities to efficiently manage and analyze vast volumes of spatial and non-spatial data without the burden of maintaining on-premises infrastructure. This shift not only reduces capital expenditure but also accelerates the deployment of new functionalities and ensures rapid disaster recovery. Moreover, cloud-based GIS platforms facilitate real-time collaboration among field and office teams, enabling faster decision-making and improving response times during emergencies. The growing emphasis on sustainability, grid modernization, and the integration of renewable energy sources is prompting utilities to invest in cloud-enabled GIS migration projects to future-proof their operations and achieve long-term operational excellence.




    The increasing regulatory focus on data accuracy, cybersecurity, and interoperability is also propelling the Utility Network GIS Migration market. Regulatory bodies worldwide are mandating utilities to maintain precise and up-to-date spatial data for effective asset management, outage response, and infrastructure planning. As a result, utilities are compelled to migrate from outdated GIS systems to advanced platforms that offer robust data governance, security, and integration capabilities. The need to comply with standards such as the Common Information Model (CIM) and industry-specific regulations is driving utilities to adopt sophisticated GIS migration strategies. Furthermore, the emergence of advanced technologies such as artificial intelligence, machine learning, and big data analytics is enabling utilities to extract deeper insights from spatial data, optimize maintenance schedules, and proactively address infrastructure vulnerabilities, thereby fostering market growth.




    From a regional perspective, North America continues to dominate the Utility Network GIS Migration market, accounting for the largest share in 2024, followed closely by Europe and Asia Pacific. The rapid modernization of utility infrastructure, extensive deployment of smart grids, and the presence of leading GIS solution providers have positioned North America at the forefront of market growth. In Europe, stringent regulatory mandates and the push for sustainable energy transition are driving significant investments in GIS migration projects. Meanwhile, the Asia Pacific region is witnessing the fastest growth, fueled by large-scale infrastructure development, urbanization, and increasing government initiatives to improve utility services. The Middle East & Africa and Latin America are also emerging as promising markets, supported by ongoing digitalization efforts and investments in utility infrastructure upgrades.



    Component Analysis


  5. G

    Geospatial Information Systems for Energy and Utilities Report

    • datainsightsmarket.com
    doc, pdf, ppt
    Updated Apr 21, 2025
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    Data Insights Market (2025). Geospatial Information Systems for Energy and Utilities Report [Dataset]. https://www.datainsightsmarket.com/reports/geospatial-information-systems-for-energy-and-utilities-1459495
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    doc, pdf, pptAvailable download formats
    Dataset updated
    Apr 21, 2025
    Dataset authored and provided by
    Data Insights Market
    License

    https://www.datainsightsmarket.com/privacy-policyhttps://www.datainsightsmarket.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    Global
    Variables measured
    Market Size
    Description

    The Geospatial Information Systems (GIS) market for energy and utilities is booming, projected to reach $28 billion by 2033 with an 8% CAGR. Driven by smart grids, renewable energy, and improved asset management, this report analyzes market trends, key players (Esri, Autodesk, Precisely), and regional growth opportunities. Learn more about GIS for energy & utilities!

  6. D

    Utility GIS Field Data Collection Market Research Report 2033

    • dataintelo.com
    csv, pdf, pptx
    Updated Oct 1, 2025
    + more versions
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    Dataintelo (2025). Utility GIS Field Data Collection Market Research Report 2033 [Dataset]. https://dataintelo.com/report/utility-gis-field-data-collection-market
    Explore at:
    pptx, pdf, csvAvailable download formats
    Dataset updated
    Oct 1, 2025
    Dataset authored and provided by
    Dataintelo
    License

    https://dataintelo.com/privacy-and-policyhttps://dataintelo.com/privacy-and-policy

    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Utility GIS Field Data Collection Market Outlook



    According to our latest research, the Utility GIS Field Data Collection market size reached USD 1.72 billion in 2024 globally, driven by rapid digital transformation across utility sectors and increasing demand for real-time data insights. The market is expected to expand at a robust CAGR of 13.1% from 2025 to 2033, reaching a forecasted value of USD 5.06 billion by 2033. This impressive growth trajectory is underpinned by the rising need for efficient asset management, regulatory compliance, and the integration of advanced geospatial technologies into utility operations, as per our comprehensive analysis.




    The primary growth factor for the Utility GIS Field Data Collection market is the accelerating adoption of smart grid technologies and digital infrastructure upgrades by utility providers worldwide. Utilities are increasingly leveraging Geographic Information Systems (GIS) to streamline field operations, improve asset visibility, and enhance decision-making processes. The proliferation of IoT devices and mobile data collection platforms has further amplified the demand for GIS-based field data solutions, enabling utilities to capture, process, and analyze spatial data with unprecedented accuracy and speed. This shift is particularly pronounced in regions with aging infrastructure, where the need for modernization and operational efficiency is paramount. Additionally, regulatory mandates for accurate asset documentation and environmental compliance are compelling utilities to invest in advanced GIS field data collection tools.




    Another significant growth catalyst is the surge in investments toward renewable energy integration and the modernization of water, gas, and electric utility networks. As utilities transition towards sustainable energy sources and smart distribution systems, the complexity of managing diverse assets and networks has increased substantially. GIS field data collection solutions provide utilities with the ability to map, monitor, and maintain these assets in real-time, reducing downtime and operational costs. The growing emphasis on predictive maintenance, driven by AI and machine learning algorithms, is also fueling the adoption of GIS-enabled field data collection for proactive infrastructure management. Furthermore, the ongoing urbanization and expansion of utility networks in emerging economies are creating new opportunities for market players.




    The evolution of cloud computing and mobile technologies is reshaping how utilities approach field data collection. Cloud-based GIS platforms offer scalability, flexibility, and cost-effectiveness, making them attractive for both large and small utility providers. The integration of advanced analytics, real-time data synchronization, and remote collaboration features is enhancing the value proposition of GIS field data solutions. Moreover, the increasing focus on customer-centric services, such as outage management and service restoration, is driving utilities to adopt GIS-based field data collection for improved responsiveness and service quality. As digital transformation accelerates across the sector, the market is witnessing a surge in partnerships and collaborations between technology vendors and utility companies, further propelling growth.




    Regionally, North America leads the Utility GIS Field Data Collection market owing to substantial investments in smart grid projects, stringent regulatory frameworks, and the presence of major technology providers. Europe follows closely, driven by ambitious sustainability targets and modernization initiatives in the utility sector. The Asia Pacific region is emerging as a high-growth market, supported by rapid urbanization, infrastructure expansion, and increasing adoption of digital technologies by utilities in countries such as China, India, and Japan. Latin America and the Middle East & Africa are also witnessing steady growth, albeit from a smaller base, as utilities in these regions embark on digital transformation journeys to enhance operational efficiency and service delivery.



    Component Analysis



    The component segment of the Utility GIS Field Data Collection market is broadly categorized into software, hardware, and services, each playing a pivotal role in supporting the digital transformation of utility operations. Software solutions form the backbone of GIS field data collection, offering advanced functionalities such a

  7. D

    Utility GIS Market Research Report 2033

    • dataintelo.com
    csv, pdf, pptx
    Updated Oct 1, 2025
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    Dataintelo (2025). Utility GIS Market Research Report 2033 [Dataset]. https://dataintelo.com/report/utility-gis-market
    Explore at:
    pptx, pdf, csvAvailable download formats
    Dataset updated
    Oct 1, 2025
    Dataset authored and provided by
    Dataintelo
    License

    https://dataintelo.com/privacy-and-policyhttps://dataintelo.com/privacy-and-policy

    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Utility GIS Market Outlook



    According to our latest research, the global Utility GIS market size reached USD 3.1 billion in 2024 and is expected to grow at a robust CAGR of 10.2% during the forecast period, reaching approximately USD 7.5 billion by 2033. The market’s expansion is primarily driven by the increasing adoption of geographic information systems (GIS) for efficient utility asset management, network optimization, and regulatory compliance across electric, water, gas, and telecommunication utilities. This growth trajectory is underpinned by the digital transformation of utility infrastructure and the rising need for real-time spatial data analytics.




    The growth of the Utility GIS market is fueled by the accelerating integration of digital technologies within utility operations worldwide. Utilities are increasingly leveraging GIS solutions to enhance grid reliability, optimize asset performance, and support decision-making processes. With aging infrastructure and the growing complexity of utility networks, GIS platforms provide a comprehensive spatial view that enables predictive maintenance, efficient outage management, and streamlined regulatory reporting. Furthermore, the proliferation of smart grid initiatives and the integration of IoT sensors are generating massive geospatial datasets, which utility companies are harnessing through GIS for actionable insights and enhanced service delivery. The demand for advanced mapping, real-time monitoring, and data-driven planning is expected to intensify, further propelling market growth.




    Another significant growth factor for the Utility GIS market is the increasing focus on sustainability and renewable energy integration. Utilities are under pressure to modernize their infrastructure to accommodate distributed energy resources, such as solar and wind, while maintaining grid stability and regulatory compliance. GIS solutions play a pivotal role in planning and managing these transitions by providing spatial intelligence for site selection, network expansion, and environmental impact assessment. Additionally, governments and regulatory bodies worldwide are mandating stricter asset management and reporting standards, compelling utilities to adopt robust GIS platforms. These factors, combined with rising investments in smart city projects and digital twins, are creating substantial opportunities for the Utility GIS market.




    The ongoing shift towards cloud-based GIS solutions is another key driver shaping the Utility GIS market landscape. Cloud deployment offers utilities enhanced scalability, cost-efficiency, and remote accessibility, enabling seamless collaboration across geographically dispersed teams. This is particularly beneficial for utilities operating in multiple regions or those undertaking large-scale infrastructure upgrades. The adoption of cloud GIS also supports integration with other enterprise systems, such as ERP and asset management platforms, further enhancing operational efficiency. As utilities continue to embrace digital transformation and smart infrastructure, the demand for flexible, cloud-enabled GIS solutions is expected to surge, contributing to sustained market growth over the forecast period.




    From a regional perspective, North America currently leads the Utility GIS market, driven by significant investments in grid modernization, advanced metering infrastructure, and stringent regulatory requirements. The presence of major technology providers and a strong focus on innovation further bolster market growth in this region. Europe follows closely, with robust adoption of GIS for renewable integration and smart city initiatives. Meanwhile, the Asia Pacific region is witnessing the fastest growth, attributed to rapid urbanization, expanding utility networks, and government-led digital infrastructure projects. Latin America and the Middle East & Africa are also emerging as promising markets, supported by increased investments in utility digitization and infrastructure development.



    Component Analysis



    The Utility GIS market is segmented by component into software, services, and hardware, each playing a vital role in the overall ecosystem. The software segment currently accounts for the largest share, driven by the growing demand for advanced GIS platforms that offer robust analytics, real-time data visualization, and seamless integration with other enterprise systems. Modern GIS software solutions are designed to handle large volumes

  8. G

    Utility GIS Market Research Report 2033

    • growthmarketreports.com
    csv, pdf, pptx
    Updated Aug 23, 2025
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    Growth Market Reports (2025). Utility GIS Market Research Report 2033 [Dataset]. https://growthmarketreports.com/report/utility-gis-market
    Explore at:
    pptx, pdf, csvAvailable download formats
    Dataset updated
    Aug 23, 2025
    Dataset authored and provided by
    Growth Market Reports
    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Utility GIS Market Outlook



    According to our latest research, the global Utility GIS market size reached USD 2.65 billion in 2024, and is projected to grow at a robust CAGR of 10.2% during the forecast period, reaching an estimated USD 6.23 billion by 2033. The market’s expansion is primarily fueled by the increasing need for efficient infrastructure management, the proliferation of smart grid initiatives, and the growing adoption of digital mapping technologies across electric, water, gas, and telecommunication utilities. As per our latest research, the surge in infrastructure modernization projects globally and the integration of advanced geospatial analytics into utility operations are key factors propelling this market forward.




    One of the principal growth drivers of the Utility GIS market is the escalating demand for real-time asset and network management within utility sectors. As utilities face mounting pressure to optimize resource allocation and reduce operational costs, Geographic Information Systems (GIS) have become indispensable tools for visualizing, analyzing, and managing spatial data. Utilities are leveraging GIS platforms to monitor asset health, track outages, and streamline maintenance activities, which enhances service reliability and minimizes downtime. The ability of GIS to integrate with other enterprise systems, such as SCADA and ERP, further amplifies its value proposition, driving widespread adoption across both developed and emerging markets.




    Another significant factor contributing to market growth is the global trend towards smart grid and infrastructure modernization. Governments and private sector entities are investing heavily in digital solutions that support sustainable urban development and resilient utility networks. GIS technologies play a crucial role in planning, monitoring, and optimizing smart grids by providing real-time geospatial intelligence. This enables utilities to improve disaster response, forecast demand, and manage distributed energy resources more effectively. Furthermore, the integration of GIS with IoT devices and cloud computing is enabling more scalable and flexible solutions, which is particularly attractive for utilities looking to future-proof their operations.




    The rising focus on regulatory compliance and environmental sustainability is also catalyzing the adoption of Utility GIS solutions. Regulatory bodies worldwide are mandating stricter reporting and transparency standards for utility operations, especially in areas related to environmental impact and resource usage. GIS platforms enable utilities to track compliance metrics, monitor environmental risks, and generate detailed reports with spatial context. This not only helps utilities meet regulatory requirements but also supports their sustainability goals by identifying areas for efficiency improvements and resource conservation. The growing emphasis on reducing carbon footprints and enhancing water and energy conservation further underscores the strategic importance of GIS in the utility sector.




    Regionally, North America continues to dominate the Utility GIS market, owing to its advanced utility infrastructure, high adoption of smart technologies, and supportive regulatory frameworks. However, Asia Pacific is emerging as the fastest-growing region, driven by rapid urbanization, significant investments in utility modernization, and increasing government initiatives to improve infrastructure resilience. Europe is also witnessing steady growth due to stringent environmental regulations and the ongoing transition towards renewable energy sources. Latin America and the Middle East & Africa are gradually catching up, supported by infrastructure development projects and the need for efficient utility management in resource-constrained environments.





    Component Analysis



    The Component segment of the Utility GIS market is broadly categorized into Software, Services, and Hardware. Software remains the largest contributor to market reve

  9. a

    Service Locations

    • arc-gis-hub-home-arcgishub.hub.arcgis.com
    • hub.arcgis.com
    • +1more
    Updated Jan 5, 2025
    + more versions
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    Town of Apex, North Carolina (2025). Service Locations [Dataset]. https://arc-gis-hub-home-arcgishub.hub.arcgis.com/maps/apexnc::service-locations
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    Dataset updated
    Jan 5, 2025
    Dataset authored and provided by
    Town of Apex, North Carolina
    Area covered
    Description

    The construction of this data model was adapted from the Telvent Miner & Miner ArcFM MultiSpeak data model to provide interface functionality with Milsoft Utility Solutions WindMil engineering analysis program. Database adaptations, GPS data collection, and all subsequent GIS processes were performed by Southern Geospatial Services for the Town of Apex Electric Utilities Division in accordance to the agreement set forth in the document "Town of Apex Electric Utilities GIS/GPS Project Proposal" dated March 10, 2008. Southern Geospatial Services disclaims all warranties with respect to data contained herein. Questions regarding data quality and accuracy should be directed to persons knowledgeable with the forementioned agreement.The data in this GIS with creation dates between March of 2008 and April of 2024 were generated by Southern Geospatial Services, PLLC (SGS). The original inventory was performed under the above detailed agreement with the Town of Apex (TOA). Following the original inventory, SGS performed maintenance projects to incorporate infrastructure expansion and modification into the GIS via annual service agreements with TOA. These maintenances continued through April of 2024.At the request of TOA, TOA initiated in house maintenance of the GIS following delivery of the final SGS maintenance project in April of 2024. GIS data created or modified after April of 2024 are not the product of SGS.With respect to SGS generated GIS data that are point features:GPS data collected after January 1, 2013 were surveyed using mapping grade or survey grade GPS equipment with real time differential correction undertaken via the NC Geodetic Surveys Real Time Network (VRS). GPS data collected prior to January 1, 2013 were surveyed using mapping grade GPS equipment without the use of VRS, with differential correction performed via post processing.With respect to SGS generated GIS data that are line features:Line data in the GIS for overhead conductors were digitized as straight lines between surveyed poles. Line data in the GIS for underground conductors were digitized between surveyed at grade electric utility equipment. The configurations and positions of the underground conductors are based on TOA provided plans. The underground conductors are diagrammatic and cannot be relied upon for the determination of the actual physical locations of underground conductors in the field.The Service Locations feature class was created by Southern Geospatial Services (SGS) from a shapefile of customer service locations generated by dataVoice International (DV) as part of their agreement with the Town of Apex (TOA) regarding the development and implemention of an Outage Management System (OMS).Point features in this feature class represent service locations (consumers of TOA electric services) by uniquely identifying the features with the same unique identifier as generated for a given service location in the TOA Customer Information System (CIS). This is also the mechanism by which the features are tied to the OMS. Features are physically located in the GIS based on CIS address in comparison to address information found in Wake County GIS property data (parcel data). Features are tied to the GIS electric connectivity model by identifying the parent feature (Upline Element) as the transformer that feeds a given service location.SGS was provided a shapefile of 17992 features from DV. Error potentially exists in this DV generated data for the service location features in terms of their assigned physical location, phase, and parent element.Regarding the physical location of the features, SGS had no part in physically locating the 17992 features as provided by DV and cannot ascertain the accuracy of the locations of the features without undertaking an analysis designed to verify or correct for error if it exists. SGS constructed the feature class and loaded the shapefile objects into the feature class and thus the features exist in the DV derived location. SGS understands that DV situated the features based on the address as found in the CIS. No features were verified as to the accuracy of their physical location when the data were originally loaded. It is the assumption of SGS that the locations of the vast majority of the service location features as provided by DV are in fact correct.SGS understands that as a general rule that DV situated residential features (individually or grouped) in the center of a parcel. SGS understands that for areas where multiple features may exist in a given parcel (such as commercial properties and mobile home parks) that DV situated features as either grouped in the center of the parcel or situated over buildings, structures, or other features identifiable in air photos. It appears that some features are also grouped in roads or other non addressed locations, likely near areas where they should physically be located, but that these features were not located in a final manner and are either grouped or strung out in a row in the general area of where DV may have expected they should exist.Regarding the parent and phase of the features, the potential for error is due to the "first order approximation" protocol employed by DV for assigning the attributes. With the features located as detailed above, SGS understands that DV identified the transformer closest to the service location (straight line distance) as its parent. Phase was assigned to the service location feature based on the phase of the parent transformer. SGS expects that this protocol correctly assigned parent (and phase) to a significant portion of the features, however this protocol will also obviously incorretly assign parent in many instances.To accurately identify parent for all 17992 service locations would require a significant GIS and field based project. SGS is willing to undertake a project of this magnitude at the discretion of TOA. In the meantime, SGS is maintaining (editing and adding to) this feature class as part of the ongoing GIS maintenance agreement that is in place between TOA and SGS. In lieu of a project designed to quality assess and correct for the data provided by DV, SGS will verify the locations of the features at the request of TOA via comparison of the unique identifier for a service location to the CIS address and Wake County parcel data address as issues arise with the OMS if SGS is directed to focus on select areas for verification by TOA. Additionally, as SGS adds features to this feature class, if error related to the phase and parent of an adjacent feature is uncovered during a maintenance, it will be corrected for as part of that maintenance.With respect to the additon of features moving forward, TOA will provide SGS with an export of CIS records for each SGS maintenance, SGS will tie new accounts to a physical location based on address, SGS will create a feature for the CIS account record in this feature class at the center of a parcel for a residential address or at the center of a parcel or over the correct (or approximately correct) location as determined via air photos or via TOA plans for commercial or other relevant areas, SGS will identify the parent of the service location as the actual transformer that feeds the service location, and SGS will identify the phase of the service address as the phase of it's parent.Service locations with an ObjectID of 1 through 17992 were originally physically located and attributed by DV.Service locations with an ObjectID of 17993 or higher were originally physically located and attributed by SGS.DV originated data are provided the Creation User attribute of DV, however if SGS has edited or verified any aspect of the feature, this attribute will be changed to SGS and a comment related to the edits will be provided in the SGS Edits Comments data field. SGS originated features will be provided the Creation User attribute of SGS. Reference the SGS Edits Comments attribute field Metadata for further information.

  10. US GIS In Utility Industry Market Size, Growth Analysis and Forecast Report...

    • technavio.com
    pdf
    Updated Oct 9, 2025
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    Technavio (2025). US GIS In Utility Industry Market Size, Growth Analysis and Forecast Report 2025-2029 [Dataset]. https://www.technavio.com/report/gis-in-utility-industry-market-industry-analysis
    Explore at:
    pdfAvailable download formats
    Dataset updated
    Oct 9, 2025
    Dataset provided by
    TechNavio
    Authors
    Technavio
    License

    https://www.technavio.com/content/privacy-noticehttps://www.technavio.com/content/privacy-notice

    Time period covered
    2025 - 2029
    Area covered
    United States
    Description

    Snapshot img { margin: 10px !important; } US GIS In Utility Industry Market Size 2025-2029

    The US gis in utility industry market size is forecast to increase by USD 593.0 million at a CAGR of 18.2% between 2024 and 2029.

    A critical driver for the gis in utility industry is the urgent need to modernize aging infrastructure. A substantial portion of energy and water networks has surpassed its operational lifespan, creating significant risks to reliability and increasing costs. Geographic information system technology provides an indispensable platform for addressing these issues, serving as a core component of strategic asset management and operational intelligence. Utilities are creating comprehensive, geospatially accurate digital inventories of all assets, from utility poles to subterranean pipes, which is fundamental for implementing sophisticated predictive maintenance programs. The integration of AI and machine learning with foundational GISs is a primary trend, shifting the technology from a passive system of record to an active, intelligent platform for proactive operational management. This fusion unlocks deeper insights from vast spatial and temporal datasets, addressing pressures to enhance grid reliability and optimize expenditures.The core value of this technological evolution lies in transforming reactive maintenance cycles into predictive ones through advanced geographic information system analytics market applications. By analyzing historical outage data, weather patterns, and asset conditions, AI algorithms can forecast potential failure points, allowing for the strategic allocation of resources to address vulnerabilities before they escalate. However, a formidable challenge confronting the market is the immense complexity associated with data integration and system interoperability. Utilities have historically operated in functional silos, leading to a proliferation of disparate IT and OT systems, many of which are legacy platforms not designed for seamless communication. Consolidating varied datasets from these sources into a single, cohesive, and authoritative GIS platform to create a single source of truth is fraught with technical and organizational hurdles, including issues with data formats, accuracy standards, and the absence of enterprise-wide data governance.

    What will be the size of the US GIS In Utility Industry Market during the forecast period?

    Explore in-depth regional segment analysis with market size data - historical 2019 - 2023 and forecasts 2025-2029 - in the full report.
    Request Free Sample

    Market activities are shaped by an ongoing push toward digital transformation, where gis in utility industry serves as a foundational technology. The development of advanced analytical capabilities is a constant focus, with organizations seeking to leverage geospatial data analysis for more effective strategic planning and operational control. The evolution of smart grid technologies and the need for more sophisticated management of distributed energy resources are continually influencing platform requirements. This includes the need for better network asset management and integration with systems like enterprise asset management and supervisory control data acquisition. The utility monitoring system landscape is also in flux, with new sensor technologies providing richer data streams.The applications of geographic information system analytics market tools are expanding beyond traditional mapping, touching on everything from pipeline integrity management to broadband deployment mapping. There is a persistent effort to refine methods for field data collection and remote asset inspection, using technologies like high-resolution aerial imagery. These patterns reflect a dynamic interplay between technological capability and operational necessity, as utilities adapt to new regulatory demands and customer expectations. The focus is shifting toward creating a unified, real-time view of the entire network, supported by robust data governance and interoperability protocols.

    How is this market segmented?

    The market research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in "USD million" for the period 2025-2029, as well as historical data from 2019 - 2023 for the following segments. ProductServicesSoftwareDataDeploymentOn-premisesCloudProduct typeElectric power utilitiesWater and wastewater utilitiesGas utilitiesTelecommunication utilitiesTypeInvestor-ownedPublic-ownedCooperativesGeographyNorth AmericaUS

    By Product Insights

    The services segment is estimated to witness significant growth during the forecast period.

    The services segment is essential for the successful deployment and operation of GIS technology within a utility's complex environment. It encompasses the specialized human expertise needed for consulting, implementation, data services, and managed services. These prof

  11. a

    Water Utilities

    • hub.arcgis.com
    • data-jc-gis.opendata.arcgis.com
    Updated Mar 29, 2018
    + more versions
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    Johnson County Indiana GIS (2018). Water Utilities [Dataset]. https://hub.arcgis.com/maps/88c2ffd5fe534390acf69c4b0a2c3549
    Explore at:
    Dataset updated
    Mar 29, 2018
    Dataset authored and provided by
    Johnson County Indiana GIS
    Area covered
    Description

    Water utility areas in Johnson County

  12. Electric Utility Service Areas

    • gis.data.ca.gov
    • data.cnra.ca.gov
    • +4more
    Updated May 21, 2020
    + more versions
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    California Energy Commission (2020). Electric Utility Service Areas [Dataset]. https://gis.data.ca.gov/documents/c69c363cafd64ad2a761afd6f1211442
    Explore at:
    Dataset updated
    May 21, 2020
    Dataset authored and provided by
    California Energy Commissionhttp://www.energy.ca.gov/
    License

    https://www.energy.ca.gov/conditions-of-usehttps://www.energy.ca.gov/conditions-of-use

    Description

    Map of the electric utility service areas in California.

  13. a

    RCA Natural Gas Utility Service Areas

    • gis.data.alaska.gov
    • dcra-program-summaries-dcced.hub.arcgis.com
    • +7more
    Updated Jul 15, 2025
    + more versions
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    Dept. of Commerce, Community, & Economic Development (2025). RCA Natural Gas Utility Service Areas [Dataset]. https://gis.data.alaska.gov/datasets/DCCED::rca-natural-gas-utility-service-areas
    Explore at:
    Dataset updated
    Jul 15, 2025
    Dataset authored and provided by
    Dept. of Commerce, Community, & Economic Development
    Area covered
    Description

    Active non-wholesale non-transmission Natural Gas Utility Service Areas as listed in the Regulatory Commission of Alaska (RCA) Certificate details for regulated utilities. Likely the most comprehensive collection of State of Alaska utility service areas - but not necessarily definitive for every utility. For complicated large city service areas such as water and sewer the GIS department that represents those cities might have the best representation of the service area. There are also utilities that may not be regulated by RCA which will not be in the data. Footprints in general were lifted from existing KML files created by a contractor in the years 2008-2017. Service area changes that have happened since 2008 may not yet be reflected in the footprints. In a few cases legal descriptions had typos which resulted in service areas miles from the community they intended to cover. In the case of the AsOfDate attribute in this dataset only reflects the date of the last syncing of master certificate metadata with RCA Library database - not the current polygon representation.Source: Regulatory Commission of AlaskaThis data has been visualized in a Geographic Information Systems (GIS) format and is provided as a service in the DCRA Information Portal by the Alaska Department of Commerce, Community, and Economic Development Division of Community and Regional Affairs (SOA DCCED DCRA), Research and Analysis section. SOA DCCED DCRA Research and Analysis is not the authoritative source for this data. For more information and for questions about this data, see: Regulatory Commission of Alaska Library

  14. b

    Utility Coverage Area

    • gisdata.brla.gov
    • data.brla.gov
    • +2more
    Updated Aug 24, 2023
    + more versions
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    East Baton Rouge GIS Map Portal (2023). Utility Coverage Area [Dataset]. https://gisdata.brla.gov/maps/ebrgis::utility-coverage-area
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    Dataset updated
    Aug 24, 2023
    Dataset authored and provided by
    East Baton Rouge GIS Map Portal
    Area covered
    Description

    Polygon geometry with attributes displaying all electricity utility service areas in East Baton Rouge Parish, Louisiana. Information was gathered from the Louisiana Public Service Commission website at https://www.lpsc.louisiana.gov/Maps_Electric_Distribution_Areas.aspx and from the City-Parish Department of Transportation and Drainage.Metadata

  15. R

    Utility GIS-ADMS Integration Services Market Research Report 2033

    • researchintelo.com
    csv, pdf, pptx
    Updated Oct 1, 2025
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    Research Intelo (2025). Utility GIS-ADMS Integration Services Market Research Report 2033 [Dataset]. https://researchintelo.com/report/utility-gis-adms-integration-services-market
    Explore at:
    csv, pdf, pptxAvailable download formats
    Dataset updated
    Oct 1, 2025
    Dataset authored and provided by
    Research Intelo
    License

    https://researchintelo.com/privacy-and-policyhttps://researchintelo.com/privacy-and-policy

    Time period covered
    2024 - 2033
    Area covered
    Global
    Description

    Utility GIS-ADMS Integration Services Market Outlook



    According to our latest research, the Global Utility GIS-ADMS Integration Services market size was valued at $1.8 billion in 2024 and is projected to reach $4.7 billion by 2033, expanding at a robust CAGR of 11.2% during 2024–2033. This impressive growth trajectory is primarily driven by the increasing need for utilities to modernize their grid operations, enhance real-time situational awareness, and improve decision-making capabilities. The integration of Geographic Information Systems (GIS) with Advanced Distribution Management Systems (ADMS) is enabling utilities to optimize asset management, outage response, and network planning, thereby driving efficiency and reliability in utility operations worldwide.



    Regional Outlook



    North America holds the largest share of the Utility GIS-ADMS Integration Services market, accounting for approximately 38% of global revenue in 2024. The region’s dominance is attributed to mature utility infrastructures, early adoption of smart grid technologies, and strong regulatory mandates for grid modernization. The United States, in particular, has witnessed substantial investments in grid automation, supported by federal and state incentives aimed at improving grid reliability and resilience. Leading technology vendors and service providers are headquartered in this region, further catalyzing innovation and deployment. The presence of established utility companies and a favorable policy environment have made North America a benchmark for best practices in GIS-ADMS integration.



    Asia Pacific is emerging as the fastest-growing region in the Utility GIS-ADMS Integration Services market, with a projected CAGR of 14.6% between 2024 and 2033. Rapid urbanization, expanding energy demand, and ambitious government initiatives for smart city and smart grid development are fueling market expansion. Countries like China, India, and Japan are investing heavily in digitalizing their utility networks, driven by the need to reduce losses, integrate renewable energy, and improve service delivery. The influx of foreign direct investment and the proliferation of local technology providers are further accelerating the adoption of GIS-ADMS solutions in this region. The Asia Pacific market is expected to witness significant transformation as utilities prioritize operational efficiency and customer satisfaction.



    In contrast, emerging economies in Latin America, the Middle East, and Africa are gradually embracing Utility GIS-ADMS Integration Services, albeit at a slower pace due to challenges such as limited digital infrastructure, budget constraints, and regulatory hurdles. However, localized demand for improved utility management and increased government focus on infrastructure modernization are creating pockets of opportunity. The adoption curve in these regions is shaped by the need to address technical losses, enhance outage management, and comply with evolving regulatory standards. While initial investments may be constrained, partnerships with international technology providers and multilateral funding agencies are helping to bridge the gap and drive incremental growth.



    Report Scope






    Attributes Details
    Report Title Utility GIS-ADMS Integration Services Market Research Report 2033
    By Component Software, Services
    By Deployment Mode On-Premises, Cloud-Based
    By Utility Type Electric, Water, Gas
    By Application Asset Management, Outage Management, Network Analysis, Distribution Planning, Others
    By End-User Public Utilities, Private Utilities, Municipal Utilities
    Regions Covered </b

  16. D

    Utility GIS-ADMS Integration Services Market Research Report 2033

    • dataintelo.com
    csv, pdf, pptx
    Updated Sep 30, 2025
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    Dataintelo (2025). Utility GIS-ADMS Integration Services Market Research Report 2033 [Dataset]. https://dataintelo.com/report/utility-gis-adms-integration-services-market
    Explore at:
    pptx, csv, pdfAvailable download formats
    Dataset updated
    Sep 30, 2025
    Dataset authored and provided by
    Dataintelo
    License

    https://dataintelo.com/privacy-and-policyhttps://dataintelo.com/privacy-and-policy

    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Utility GIS-ADMS Integration Services Market Outlook



    According to our latest research, the global Utility GIS-ADMS Integration Services market size reached USD 2.18 billion in 2024, reflecting a robust demand for integrated solutions across utility sectors. The market is expected to grow at a CAGR of 13.2% during the forecast period, reaching an estimated USD 6.01 billion by 2033. The primary growth factor driving this expansion is the increasing digital transformation initiatives adopted by utilities worldwide, aiming to modernize grid infrastructure and enhance operational efficiency through the seamless integration of Geographic Information Systems (GIS) and Advanced Distribution Management Systems (ADMS).




    A significant growth driver for the Utility GIS-ADMS Integration Services market is the accelerating adoption of smart grid technologies by utility providers. As utilities strive to optimize resource allocation, reduce outages, and manage distributed energy resources, the integration of GIS and ADMS has become indispensable. GIS provides spatial intelligence, allowing utilities to map and monitor infrastructure in real-time, while ADMS offers advanced analytics and automation for distribution networks. The combination of these technologies enables utilities to make data-driven decisions, enhance outage management, and improve customer service. Moreover, regulatory pressure for grid modernization and the shift towards renewable energy sources are pushing utilities to invest in integrated digital solutions, further fueling market growth.




    Another key factor propelling the Utility GIS-ADMS Integration Services market is the rising complexity of utility networks, particularly with the proliferation of distributed energy resources such as solar panels, wind turbines, and electric vehicles. Traditional grid management systems are increasingly inadequate to handle this complexity. Integration services bridge the gap by enabling seamless data exchange and workflow automation between GIS and ADMS platforms. This integration supports advanced functionalities such as predictive maintenance, real-time network visualization, and proactive outage response. The growing emphasis on grid resilience and reliability, especially in regions prone to natural disasters, is also driving utilities to adopt integrated solutions that can help mitigate risks and ensure continuous service delivery.




    The surge in urbanization and the expansion of utility infrastructure in emerging economies present substantial opportunities for the Utility GIS-ADMS Integration Services market. Countries in Asia Pacific, Latin America, and parts of Africa are investing heavily in utility infrastructure to meet the demands of rapidly growing populations and industries. These regions often face challenges such as aging infrastructure, high technical losses, and limited visibility into network operations. Integration services enable utilities to overcome these challenges by providing comprehensive tools for asset management, network planning, and outage response. Additionally, government initiatives aimed at promoting smart cities and sustainable energy practices are contributing to increased adoption of GIS-ADMS integration in these markets.




    From a regional perspective, North America currently leads the Utility GIS-ADMS Integration Services market, driven by early adoption of advanced utility management technologies and strong regulatory support for grid modernization. Europe follows closely, with significant investments in renewable energy integration and grid resilience initiatives. Asia Pacific is emerging as a high-growth region, propelled by large-scale utility infrastructure projects and the rapid digitization of utility operations. The Middle East & Africa and Latin America are also witnessing increased adoption, albeit at a slower pace, due to ongoing infrastructure development and government-led modernization programs. Each region presents unique growth dynamics, influenced by regulatory frameworks, technology adoption rates, and investment priorities.



    Service Type Analysis



    The Utility GIS-ADMS Integration Services market is segmented by service type into System Integration, Consulting, Support & Maintenance, and Others. System Integration services dominate this segment, accounting for the largest share of market revenues in 2024. The demand for system integration is fueled by the need for seamless interoperability between GIS and ADMS

  17. a

    Electric Utilities Territory Map of New Jersey

    • share-open-data-njtpa.hub.arcgis.com
    • visionzero.geohub.lacity.org
    • +4more
    Updated Jan 1, 2003
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    NJDEP Bureau of GIS (2003). Electric Utilities Territory Map of New Jersey [Dataset]. https://share-open-data-njtpa.hub.arcgis.com/items/d23845cc51454ee59affd226cff3fcd5
    Explore at:
    Dataset updated
    Jan 1, 2003
    Dataset authored and provided by
    NJDEP Bureau of GIS
    Area covered
    Description

    This data provides graphic representation of electric company territories of New Jersey. Data was compiled using Electric Utility paper maps, all greater than 1:500,000. It is anticipated that electric company territorial boundaries will remain stable.

  18. M

    Electric Utility Service Areas, Minnesota, July 2025

    • gisdata.mn.gov
    fgdb, gpkg, html +4
    Updated Jul 23, 2025
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    Geospatial Information Office (2025). Electric Utility Service Areas, Minnesota, July 2025 [Dataset]. https://gisdata.mn.gov/dataset/util-eusa
    Explore at:
    webapp, jpeg, shp, html, fgdb, gpkg, kmzAvailable download formats
    Dataset updated
    Jul 23, 2025
    Dataset provided by
    Geospatial Information Office
    Area covered
    Minnesota
    Description

    This dataset shows electric utility service area boundaries for the State of Minnesota. The original source data were lines hand-drawn on county highway maps. The maps were scanned and georeferenced to serve as a background for on-screen digitizing. The utilities were then given an opportunity to review and correct the service areas. Changes filed with the Public Utilities Commission (eDockets) were also reviewed to update the areas.

  19. G

    Geographic Information System (GIS) Services Report

    • datainsightsmarket.com
    doc, pdf, ppt
    Updated Apr 24, 2025
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    Data Insights Market (2025). Geographic Information System (GIS) Services Report [Dataset]. https://www.datainsightsmarket.com/reports/geographic-information-system-gis-services-1978478
    Explore at:
    doc, ppt, pdfAvailable download formats
    Dataset updated
    Apr 24, 2025
    Dataset authored and provided by
    Data Insights Market
    License

    https://www.datainsightsmarket.com/privacy-policyhttps://www.datainsightsmarket.com/privacy-policy

    Time period covered
    2025 - 2033
    Area covered
    Global
    Variables measured
    Market Size
    Description

    The booming GIS Services market, projected to reach $27.8 billion by 2033 with an 8% CAGR, is transforming industries. Learn about key trends, applications (environmental, utilities, infrastructure), and leading companies shaping this dynamic sector. Explore regional market shares and growth forecasts for North America, Europe, and Asia Pacific.

  20. G

    GIS for Utilities Market Research Report 2033

    • growthmarketreports.com
    csv, pdf, pptx
    Updated Sep 1, 2025
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    Growth Market Reports (2025). GIS for Utilities Market Research Report 2033 [Dataset]. https://growthmarketreports.com/report/gis-for-utilities-market
    Explore at:
    csv, pptx, pdfAvailable download formats
    Dataset updated
    Sep 1, 2025
    Dataset authored and provided by
    Growth Market Reports
    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    GIS for Utilities Market Outlook



    According to our latest research, the global GIS for Utilities market size in 2024 stands at USD 4.1 billion, and it is expected to reach USD 10.2 billion by 2033, growing at a robust CAGR of 10.7% during the forecast period. This remarkable growth is primarily driven by the increasing adoption of smart grid technologies, rising investments in infrastructure modernization, and the urgent need for efficient asset and network management across utility sectors. The integration of Geographic Information Systems (GIS) with utility operations is transforming the way utilities manage assets, optimize networks, and deliver customer-centric services, positioning GIS as a critical enabler of digital transformation in the utility industry.




    One of the most significant growth factors for the GIS for Utilities market is the accelerating global shift towards smart grids and advanced metering infrastructure. Utilities are under immense pressure to modernize their aging infrastructure to enhance reliability, reduce operational costs, and meet stringent regulatory requirements. GIS solutions offer comprehensive spatial analysis and visualization capabilities, enabling utilities to monitor, control, and optimize their networks in real time. This enhances outage management, improves disaster response, and streamlines maintenance activities, resulting in significant cost savings and improved service quality. Moreover, the proliferation of Internet of Things (IoT) devices and sensors within utility networks is generating vast amounts of geospatial data, further amplifying the need for robust GIS platforms to harness this information for actionable insights.




    Another key driver propelling the growth of the GIS for Utilities market is the increasing emphasis on sustainability and renewable energy integration. As utilities worldwide transition towards cleaner energy sources, the complexity of grid management escalates, necessitating advanced geospatial tools to plan, monitor, and optimize distributed energy resources. GIS supports the integration of solar, wind, and other renewables by providing detailed spatial intelligence for site selection, grid connectivity, and impact assessment. Additionally, regulatory mandates for environmental compliance and resource conservation are compelling utilities to adopt GIS-based solutions for efficient water, gas, and electricity distribution, leakage detection, and resource planning. These factors collectively drive the widespread adoption of GIS across electric, water, and gas utilities.




    The digital transformation wave sweeping across the utilities sector is also fueling market expansion. Utilities are increasingly leveraging GIS for customer management, mobile workforce management, and predictive maintenance, thereby enhancing operational agility and customer satisfaction. The surge in cloud-based GIS deployments is democratizing access to powerful spatial analytics, enabling even small and medium-sized utilities to harness the benefits of GIS without significant upfront investments. Furthermore, strategic collaborations between GIS vendors and utility companies, coupled with ongoing advancements in artificial intelligence and machine learning, are unlocking new use cases and driving innovation across the industry. As a result, the GIS for Utilities market is poised for sustained growth over the coming decade.




    Regionally, North America continues to dominate the GIS for Utilities market, accounting for the largest share in 2024, driven by substantial investments in grid modernization, stringent regulatory frameworks, and high adoption rates of advanced technologies. Europe follows closely, supported by ambitious renewable energy targets and smart city initiatives, while the Asia Pacific region is witnessing the fastest growth, fueled by rapid urbanization, infrastructure development, and government-led digitalization programs. Latin America and the Middle East & Africa are also emerging as attractive markets, with increasing investments in utility infrastructure and growing awareness of the benefits of GIS solutions. This regional dynamism underscores the global relevance and transformative potential of GIS in the utilities sector.



    In the realm of Oil and Gas GIS, the integration of geospatial technology is proving to be a game-changer for the ind

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Growth Market Reports (2025). Utility GIS Data Quality Services Market Research Report 2033 [Dataset]. https://growthmarketreports.com/report/utility-gis-data-quality-services-market

Utility GIS Data Quality Services Market Research Report 2033

Explore at:
csv, pptx, pdfAvailable download formats
Dataset updated
Sep 1, 2025
Dataset authored and provided by
Growth Market Reports
Time period covered
2024 - 2032
Area covered
Global
Description

Utility GIS Data Quality Services Market Outlook



According to our latest research, the global Utility GIS Data Quality Services market size reached USD 1.29 billion in 2024, with a robust growth trajectory marked by a CAGR of 10.7% from 2025 to 2033. By the end of the forecast period, the market is projected to attain a value of USD 3.13 billion by 2033. This growth is primarily driven by the increasing need for accurate spatial data, the expansion of smart grid initiatives, and the rising complexity of utility network infrastructures worldwide.




The primary growth factor propelling the Utility GIS Data Quality Services market is the surging adoption of Geographic Information Systems (GIS) for utility asset management and network optimization. Utilities are increasingly relying on GIS platforms to ensure seamless operations, improved decision-making, and regulatory compliance. However, the effectiveness of these platforms is directly linked to the quality and integrity of the underlying data. With the proliferation of IoT devices and the integration of real-time data sources, the risk of data inconsistencies and inaccuracies has risen, making robust data quality services indispensable. Utilities are investing heavily in data cleansing, validation, and enrichment to mitigate operational risks, reduce outages, and enhance customer satisfaction. This trend is expected to continue, as utilities recognize the strategic importance of data-driven operations in an increasingly digital landscape.




Another significant driver is the global movement towards smart grids and digital transformation across the utility sector. As utilities modernize their infrastructure, they are deploying advanced metering infrastructure (AMI) and integrating distributed energy resources (DERs), which generate vast volumes of spatial and non-spatial data. Ensuring the accuracy, consistency, and completeness of this data is crucial for optimizing grid performance, minimizing losses, and enabling predictive maintenance. The need for real-time analytics and advanced network management further amplifies the demand for high-quality GIS data. Additionally, regulatory mandates for accurate reporting and asset traceability are compelling utilities to prioritize data quality initiatives. These factors collectively create a fertile environment for the growth of Utility GIS Data Quality Services, as utilities strive to achieve operational excellence and regulatory compliance.




Technological advancements and the rise of cloud-based GIS solutions are also fueling market expansion. Cloud deployment offers utilities the flexibility to scale data quality services, access advanced analytics, and collaborate across geographies. This has democratized access to sophisticated GIS data quality tools, particularly for mid-sized and smaller utilities that previously faced budgetary constraints. Moreover, the integration of artificial intelligence (AI) and machine learning (ML) in data quality solutions is enabling automated data cleansing, anomaly detection, and predictive analytics. These innovations are not only reducing manual intervention but also enhancing the accuracy and reliability of utility GIS data. As utilities continue to embrace digital transformation, the demand for cutting-edge data quality services is expected to surge, driving sustained market growth throughout the forecast period.



Utility GIS plays a pivotal role in supporting the digital transformation of the utility sector. By leveraging Geographic Information Systems, utilities can achieve a comprehensive understanding of their network infrastructures, enabling more efficient asset management and network optimization. The integration of Utility GIS with advanced data quality services ensures that utilities can maintain high standards of data accuracy and integrity, which are essential for effective decision-making and regulatory compliance. As utilities continue to modernize their operations and embrace digital technologies, the role of Utility GIS in facilitating seamless data integration and real-time analytics becomes increasingly critical. This not only enhances operational efficiency but also supports the strategic goals of sustainability and resilience in utility management.




Regionally, North America leads the Utility GIS Data Quality Services market, accounting for the largest share in 2024, followed closely by

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