84 datasets found
  1. The 15 fastest-growing large cities in the U.S. 2020-2021

    • statista.com
    Updated Jul 5, 2024
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    Statista (2024). The 15 fastest-growing large cities in the U.S. 2020-2021 [Dataset]. https://www.statista.com/statistics/238988/the-percent-increase-of-the-fastest-growing-large-cities-in-the-us/
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    Dataset updated
    Jul 5, 2024
    Dataset authored and provided by
    Statistahttp://statista.com/
    Time period covered
    Jul 1, 2020 - Jul 1, 2021
    Area covered
    United States
    Description

    This statistic represents the percent increase of the 15 fastest-growing large cities in the U.S. between July 1, 2020 and July 1, 2021. Georgetown city in Texas is at the top of the fastest-growing large cities, with a growth rate of 10.5 percent over this period.

  2. U.S. fastest growing metropolitan areas 2022-2023

    • statista.com
    Updated Dec 3, 2024
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    Statista (2024). U.S. fastest growing metropolitan areas 2022-2023 [Dataset]. https://www.statista.com/statistics/431877/the-fastest-growing-metropolitan-areas-in-the-us/
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    Dataset updated
    Dec 3, 2024
    Dataset authored and provided by
    Statistahttp://statista.com/
    Time period covered
    Jul 1, 2022 - Jul 1, 2023
    Area covered
    United States
    Description

    This statistics shows the top 20 fastest growing large-metropolitan areas in the United States between July 1st, 2022 and July 1st, 2023. The total population in the Wilmington, North Carolina, metropolitan area increased by 0.05 percent from 2022 to 2023.

  3. Growth rate of African cities 2020-2035

    • ai-chatbox.pro
    • statista.com
    Updated Sep 30, 2024
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    Saifaddin Galal (2024). Growth rate of African cities 2020-2035 [Dataset]. https://www.ai-chatbox.pro/?_=%2Ftopics%2F12726%2Furbanization-in-africa%2F%23XgboD02vawLYpGJjSPEePEUG%2FVFd%2Bik%3D
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    Dataset updated
    Sep 30, 2024
    Dataset provided by
    Statistahttp://statista.com/
    Authors
    Saifaddin Galal
    Area covered
    Africa
    Description

    The fastest growing city in Africa is Bujumbura, in Burundi. In 2020, this city had an estimated population of about one million. By 2035, the population of Bujumbura could increase by 123 percent and reach roughly 2.3 million people. Zinder, in Niger, had about half million inhabitants in 2020 and, with a growth rate of 118 percent, is Africa's second fastest growing city. In 2035, Zinder could have over one million residents.

    As of 2021, the largest city in whole Africa is Lagos, in Nigeria. Other highly populated cities in Africa are Kinshasa, in Congo, Cairo, and Alexandria, both located in Egypt.

  4. Fastest growing cities in the U.S., from April 1, 2010 to July 1, 2011

    • statista.com
    Updated Jun 28, 2012
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    Statista (2012). Fastest growing cities in the U.S., from April 1, 2010 to July 1, 2011 [Dataset]. https://www.statista.com/statistics/234835/fastest-growing-us-cities/
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    Dataset updated
    Jun 28, 2012
    Dataset authored and provided by
    Statistahttp://statista.com/
    Time period covered
    Apr 1, 2010 - Jul 1, 2011
    Area covered
    United States
    Description

    This graph shows the 15 fastest growing cities in the United States, by percentage increase in population, from the period April 1, 2010 to July 1, 2011. Over this time New Orleans was the fastest growing city at a rate of 4.9 percent.

  5. Population change in UK cities 2013-2023

    • statista.com
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    Statista, Population change in UK cities 2013-2023 [Dataset]. https://www.statista.com/statistics/380171/growth-of-cities-in-the-united-kingdom/
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    Dataset authored and provided by
    Statistahttp://statista.com/
    Area covered
    United Kingdom
    Description

    Cambridge was the fastest growing city in the United Kingdom between 2013 and 2023, with its population increasing by 17.3 percent. Exeter, Milton Keynes, and Peterborough also grew quite fast, with their populations increasing by 15.2 percent, 14.9 percent, and 14 percent, respectively. Largest UK urban areas When looking at cities defined by their urban agglomerations, as of 2023, London had approximately 9.65 million people living there, far larger than any other city in the United Kingdom. The urban agglomeration around the city of Birmingham had a population of approximately 2.67 million, while the urban areas around Manchester and Leeds had populations of 2.79 and 1.92 million respectively. London not only dominated other UK cities in terms of its population, but in its importance to the UK economy. In 2023, the gross domestic product of Greater London was approximately 569 billion British pounds, compared with 101 billion for Greater Manchester, and 85 billion in the West Midlands Metropolitan Area centered around Birmingham. UK population growth In 2023, the overall population of the United Kingdom was estimated to have reached approximately 68.3 million, compared with around 58.9 million in 2000. Since 1970, 2023 was also the year with the highest population growth rate, growing by 0.98 percent, and was at its lowest in 1982 when it shrank by 0.12 percent. Although the UK's birth rate has declined considerably in recent years, immigration to the UK has been high enough to drive population growth in the UK, which has had a positive net migration rate since 1994.

  6. a

    Where are the population centers?

    • hub.arcgis.com
    • hub.scag.ca.gov
    Updated Feb 1, 2022
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    rdpgisadmin (2022). Where are the population centers? [Dataset]. https://hub.arcgis.com/maps/9df4a45a3f5e46f6aae5af57988d45fa
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    Dataset updated
    Feb 1, 2022
    Dataset authored and provided by
    rdpgisadmin
    Area covered
    Description

    This multi-scale map shows counts of the total population the US. Data is from U.S. Census Bureau's 2020 PL 94-171 data for county, tract, block group, and block.County and metro area highlights:The largest county in the United States in 2020 remains Los Angeles County with over 10 million people.The largest city (incorporated place) in the United States in 2020 remains New York with 8.8 million people.312 of the 384 U.S. metro areas gained population between 2010 and 2020.The fastest-growing U.S. metro area between the 2010 Census and 2020 Census was The Villages, FL, which grew 39% from about 93,000 people to about 130,000 people.72 U.S. metro areas lost population from the 2010 Census to the 2020 Census. The U.S. metro areas with the largest percentage declines were Pine Bluff, AR, and Danville, IL, at -12.5 percent and -9.1 percent, respectively.View more 2020 Census statistics highlights on local populations changes.

  7. The global smart city platforms market size will be USD 192541.2 million in...

    • cognitivemarketresearch.com
    pdf,excel,csv,ppt
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    The global smart city platforms market size will be USD 192541.2 million in 2024. [Dataset]. https://www.cognitivemarketresearch.com/smart-city-platforms-market-report
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    pdf,excel,csv,pptAvailable download formats
    Dataset authored and provided by
    Cognitive Market Research
    License

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

    Time period covered
    2021 - 2033
    Area covered
    Global
    Description

    According to Cognitive Market Research, the global smart city platforms market size will be USD 192541.2 million in 2024. It will expand at a compound annual growth rate (CAGR) of 9.00% from 2024 to 2031.

    North America held the major market share for more than 40% of the global revenue with a market size of USD 77016.48 million in 2024 and will grow at a compound annual growth rate (CAGR) of 7.2% from 2024 to 2031.
    Europe accounted for a market share of over 30% of the global revenue with a market size of USD 57762.36 million.
    Asia Pacific held a market share of around 23% of the global revenue with a market size of USD 44284.48 million in 2024 and will grow at a compound annual growth rate (CAGR) of 11.0% from 2024 to 2031.
    Latin America had a market share of more than 5% of the global revenue with a market size of USD 9627.06 million in 2024 and will grow at a compound annual growth rate (CAGR) of 8.4% from 2024 to 2031.
    Middle East and Africa had a market share of around 2% of the global revenue and was estimated at a market size of USD 3850.82 million in 2024 and will grow at a compound annual growth rate (CAGR) of 8.7% from 2024 to 2031.
    The data management platform is the fastest growing segment of the smart city platforms industry
    

    Market Dynamics of Smart city platforms Market

    Key Drivers for Smart city platforms Market

    Urbanization and population growth to drive market growth

    Urbanization and population growth are key drivers of the Smart City Platforms Market, as they create the need for more efficient urban management solutions. Rapid migration to cities places immense pressure on infrastructure, transportation, energy, and public services. To address these challenges, smart city platforms enable cities to optimize resource allocation, improve traffic management, and enhance public safety through data-driven decision-making. As urban populations grow, the demand for sustainable and scalable solutions increases, leading to investments in technologies like IoT, artificial intelligence, and data analytics. These platforms allow city administrators to manage services in real time, ensuring smoother operations and better living conditions. Furthermore, governments worldwide are supporting smart city initiatives to handle the socio-economic impacts of urbanization, boosting the market's expansion.

    Increased demand for efficient public services to boost market growth

    The increased demand for efficient public services is a major driver of growth in the Smart City Platforms Market. As urban populations expand, cities face pressure to improve the efficiency and quality of essential services such as transportation, healthcare, energy management, and waste disposal. Smart city platforms provide a solution by integrating various urban services through the use of IoT devices, big data, and real-time analytics. By leveraging these technologies, cities can streamline operations, reduce costs, and respond more effectively to residents' needs. For example, smart traffic systems can alleviate congestion, while intelligent energy grids optimize power consumption. Citizens also expect more responsive and transparent services, pushing governments to adopt smart platforms to enhance service delivery and public engagement. This rising demand for smarter, more efficient services is a key factor driving market growth.

    Restraint Factor for the Smart city platforms Market

    Data privacy and security concerns to limit market growth

    Data privacy and security concerns pose significant challenges to the growth of the Smart City Platforms Market. As these platforms rely on massive amounts of data collected from IoT devices, sensors, and city infrastructure, they become potential targets for cyberattacks and unauthorized access. Breaches in public data can compromise critical systems, including transportation, healthcare, and public safety, leading to severe consequences. Citizens are increasingly concerned about how their personal information is being used and protected, which raises issues around trust and transparency. Furthermore, stringent regulations like GDPR and other regional data protection laws require cities to ensure robust security measures, which can increase implementation costs and complexity. The fear of potential data misuse or leaks can slow down the adoption of smart city technologies, limiting market growth despite their benefits.

    Impact of Covid-19 on the ...

  8. a

    Thurston Urban Growth Areas

    • hub.arcgis.com
    • gisdata-thurston.opendata.arcgis.com
    Updated Nov 29, 2017
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    Thurston GeoData Center, WA, USA (2017). Thurston Urban Growth Areas [Dataset]. https://hub.arcgis.com/datasets/thurston::thurston-urban-growth-areas
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    Dataset updated
    Nov 29, 2017
    Dataset authored and provided by
    Thurston GeoData Center, WA, USA
    Area covered
    Description

    The Urban Growth Area is used to manage future growth around densely populated areas. The urban growth area is the city/town and adjacent unincorporated growth area identified by the cities/towns/county to receive urban growth in the future. Outside of the boundary only rural growth is permissible.

    Correction to this data can only be made through a Comprehensive Plan change or at the direction of Thurston County Long Range Planning due to a scrivener's error. The 1990 Washington State Growth Management Act requires the state's fastest growing cities and counties to designate UGAs around each city and town to accommodate the expected population growth over the next 20 years. In Thurston County, UGAs surround Bucoda, Lacey, Olympia, Rainier, Tumwater, Tenino, and Yelm. The current boundaries of the UGAs were established in 1990 and updated via the 2015 adoption of the Thurston County Comprehensive Plan: CHAPTER II - LAND USE II.URBAN GROWTH AREAS History and Purpose of Thurston County's Urban Growth Areas: In 1983, Thurston County, along with the cities of Olympia, Lacey and Tumwater, blazed the trail for growth management in Washington State by signing an interlocal government agreement called the "Urban Growth Management Agreement." That early agreement included an Urban Growth Management Boundary around the three cities to serve as a limit for the cities' expansion for 20 years. The purposes of the county's original growth areas remain relevant today: To provide for higher intensity development around the county's incorporated cities and towns and unincorporated community centers in order to concentrate development in areas where minimal impact to the environment, natural resources and rural atmosphere will occur. To minimize public costs and conserve energy by using services and facilities efficiently through concentration of development and integration of jobs, shopping, services and housing. To phase urban growth and infill with the provision of urban public services and facilities. One of the main effects of an urban growth area is to provide a limit for the extension of urban utilities, especially sewer service. To that end, overall residential density in urban growth areas should be high enough to support urban public services and to provide affordable housing choices. There should be a variety of housing types, with most densities ranging from 4 to 16 dwelling units per acre. Map M-14 identifies the urban growth areas for each city or town in Thurston County. The UGAs must accommodate the urban growth projected over the next 20 years including a reasonable market factor. Policies and actions emphasize the provision of urban land uses and services and include provisions specifically aimed at reducing low density residential sprawl. Joint plans established with each city and town include planning policies for each UGA. Joint plans are contained in separate documents, but are incorporated as part of the Thurston County Comprehensive Plan. Detailed land use designations for all UGAs around cities and towns are provided in the following joint plans (Map M-14 is keyed to the numbering below):Olympia/Thurston County Joint PlanLacey/Thurston County Joint Plan Tumwater/Thurston County Joint PlanYelm/Thurston County Joint PlanRainier/Thurston County Joint PlanTenino/Thurston County Joint PlanBucoda/Thurston County Joint PlanList of Map Correction's (Correction can only be made through a Comprehensive Plan change or at the direction of Thurston County Long Range Planning due to a scrivener's error.)Made on 5 AUG 2014 by KLW. Made on 15 July 2016 by KAH. - Correction of scrivener's error in Tenino UGA Boundary at the Teitge Annexations. This error was due to parcel and city mapping issues. The UGA has been fixed to be consistent with the parcel legal descriptions and the legal description included in the annexation ordinance approved by the City of Tenino, and the annexation approved by the Boundary Review Board.

  9. a

    Urban Agglomeration Populations: 1950-2035

    • hub.arcgis.com
    • gis-for-secondary-schools-schools-be.hub.arcgis.com
    • +1more
    Updated May 30, 2018
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    ArcGIS StoryMaps (2018). Urban Agglomeration Populations: 1950-2035 [Dataset]. https://hub.arcgis.com/datasets/4f1518f13f8d461fae54106692b54ea4
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    Dataset updated
    May 30, 2018
    Dataset authored and provided by
    ArcGIS StoryMaps
    Area covered
    Description

    Cities ranking and mega citiesTokyo is the world’s largest city with an agglomeration of 37 million inhabitants, followed by New Delhi with 29 million, Shanghai with 26 million, and Mexico City and São Paulo, each with around 22 million inhabitants. Today, Cairo, Mumbai, Beijing and Dhaka all have close to 20 million inhabitants. By 2020, Tokyo’s population is projected to begin to decline, while Delhi is projected to continue growing and to become the most populous city in the world around 2028.By 2030, the world is projected to have 43 megacities with more than 10 million inhabitants, most of them in developing regions. However, some of the fastest-growing urban agglomerations are cities with fewer than 1 million inhabitants, many of them located in Asia and Africa. While one in eight people live in 33 megacities worldwide, close to half of the world’s urban dwellers reside in much smaller settlements with fewer than 500,000 inhabitants.About the dataThe 2018 Revision of the World Urbanization Prospects is published by the Population Division of the United Nations Department of Economic and Social Affairs (UN DESA). It has been issued regularly since 1988 with revised estimates and projections of the urban and rural populations for all countries of the world, and of their major urban agglomerations. The data set and related materials are available at: https://esa.un.org/unpd/wup/

  10. Italian Metropolitan cities by population growth 2023

    • statista.com
    Updated Feb 14, 2025
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    Statista (2025). Italian Metropolitan cities by population growth 2023 [Dataset]. https://www.statista.com/statistics/1246024/italian-cities-with-the-highest-population-growth/
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    Dataset updated
    Feb 14, 2025
    Dataset authored and provided by
    Statistahttp://statista.com/
    Area covered
    Italy
    Description

    Milan, Bologna, Genoa, Florence, and Turin recorded a population increase between 2022 and 2023. In fact, all the other largest municipalities registered a decrease, most prominently in the south and on the islands. However, Naples is the third-largest Italian municipality, after Rome and Milan.

  11. M

    Boise City Metro Area Population (1950-2025)

    • macrotrends.net
    csv
    Updated May 31, 2025
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    MACROTRENDS (2025). Boise City Metro Area Population (1950-2025) [Dataset]. https://www.macrotrends.net/global-metrics/cities/22938/boise-city/population
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    csvAvailable download formats
    Dataset updated
    May 31, 2025
    Dataset authored and provided by
    MACROTRENDS
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Time period covered
    Dec 1, 1950 - Jun 24, 2025
    Area covered
    Boise, Boise City, United States
    Description

    Chart and table of population level and growth rate for the Boise City metro area from 1950 to 2025.

  12. 2014 05: Housing Units Percent Growth in 2013

    • opendata.mtc.ca.gov
    • hub.arcgis.com
    Updated Jan 6, 2023
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    MTC/ABAG (2014). 2014 05: Housing Units Percent Growth in 2013 [Dataset]. https://opendata.mtc.ca.gov/documents/487a10fab47745978d00df0da310b61c
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    Dataset updated
    Jan 6, 2023
    Dataset provided by
    Metropolitan Transportation Commission
    Authors
    MTC/ABAG
    License

    MIT Licensehttps://opensource.org/licenses/MIT
    License information was derived automatically

    Description

    On May 1, 2014, the California Department of Finance released city, county, and state population estimates updated through the end of year 2013, which includes detailed data on housing production for the San Francisco Bay Region.Key conclusions from the map are summarized below:San Jose and San Francisco are acting as regional powerhouses for infill housing in the urban core.Exurban development is alive and well in the Bay Area, even while housing development has continued to stall in neighboring San Joaquin County.Cities along inner East Bay Bay Area Rapid Transit (BART) corridors produced little-to-no housing in 2013, while the Tri-Valley and eBART corridors saw robust growth.After San Jose and San Francisco, suburban communities like Dublin, Campbell, and Fremont were the top generators of new housing units in 2013.Based on housing production rates (% growth), the fastest-growing cities in the region were all in the eastern fringe of the region or in booming Silicon Valley.

  13. Assessing Social Media Communications of Local Governments in Fast-growing...

    • zenodo.org
    bin
    Updated Mar 7, 2021
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    Ruopu Li; Ruopu Li (2021). Assessing Social Media Communications of Local Governments in Fast-growing U.S. Cities [Dataset]. http://doi.org/10.5281/zenodo.4587255
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    binAvailable download formats
    Dataset updated
    Mar 7, 2021
    Dataset provided by
    Zenodohttp://zenodo.org/
    Authors
    Ruopu Li; Ruopu Li
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Area covered
    United States
    Description

    With social media ubiquitous in our daily communication, local governments have growingly relied on this new media platform for communicating and interacting with their citizens. However, it is still unclear how to assess the effectiveness of social media communication efforts by the governments. Based on the Lasswell communication framework, this study proposes a social media communication index that can be used to compare and evaluate the degree of social media communication effectiveness among different cities. The index was then applied to the social media platforms used by the top growing U.S. cities. The results show that City of Orlando and New York City exhibit top communication effectiveness in social media. This dataset was developed along with the research.

  14. c

    Quantifying Cities Project: TI-City Urban Expansion Data, and Electricity...

    • datacatalogue.cessda.eu
    • beta.ukdataservice.ac.uk
    Updated Jun 4, 2025
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    Fox, S; Agyemang, F; Memon, R (2025). Quantifying Cities Project: TI-City Urban Expansion Data, and Electricity Consumption Data, 2000-2021 [Dataset]. http://doi.org/10.5255/UKDA-SN-856294
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    Dataset updated
    Jun 4, 2025
    Dataset provided by
    University of Manchester
    University of Qatar
    University of Bristol
    Authors
    Fox, S; Agyemang, F; Memon, R
    Time period covered
    Aug 31, 2018 - Aug 30, 2021
    Area covered
    Pakistan, Ghana
    Variables measured
    Household, Geographic Unit
    Measurement technique
    The TI-City data was accessed from institutions responsible for land use and planning in Ghana as well as secondary sources (See the the underlying paper for more https://doi.org/10.1177/23998083211068843).The residential electricity consumption data was provided by K-Electric (KE), the monopoly provider of electricity in Karachi. The data pertains to ~2 million households aggregated into 30m grid cells (see the underlying paper for more https://dx.doi.org/10.2139/ssrn.4154318).
    Description

    This collection contains two datasets: one, data used in TI-City model to predict future urban expansion in Accra, Ghana; and two, residential electricity consumption data used to map intra-urban living standards in Karachi, Pakistan. The TI-City model data are ASCII files of infrastructure and amenities that affect location decisions of households and developers. The residential electricity consumption data consist of average kilowatt hours (kw/h) of electricity consumed per month by ~ 2 million households in Karachi. The electricity consumption data is aggregated into 30m grid cells (count = 193050), with centroids and consumption values provided. The values of the points (centroids), captured under the field "Avg_Avg_Cs", represents the median of average monthly consumption of households within the 30m grid cells.

    Our project addresses a critical gap in social research methodology that has important implications for combating urban poverty and promoting sustainable development in low and middle-income countries. Simply put, we're creating a low-cost tool for gathering critical information about urban population dynamics in cities experiencing rapid spatial-demographic and socioeconomic change. Such information is vital to the success of urban planning and development initiatives, as well as disaster relief efforts. By improving the information base of the actors involved in such activities we aim to improve the lives of urban dwellers across the developing world, particularly the poorest and most vulnerable. The key output for the project will be a freely available 'City Sampling Toolkit' that provides detailed instructions and opensource software tools for replicating the approach at various spatial scales.

    Our research is motivated by the growing recognition that cities are critical arenas for action in global efforts to tackle poverty and transition towards more environmentally sustainable economic growth. Between now and 2050 the global urban population is projected to grow by over 2 billion, with the overwhelming majority of this growth taking place in low and middle-income countries in Africa and Asia. Developing evidence-based policies for managing this growth is an urgent task. As UN Secretary General Ban Ki Moon has observed: "Cities are increasingly the home of humanity. They are central to climate action, global prosperity, peace and human rights...To transform our world, we must transform its cities."

    Unfortunately, even basic data about urban populations are lacking in many of the fastest growing cities of the world. Existing methods for gathering vital information, including censuses and sample surveys, have critical limitations in urban areas experiencing rapid change. And 'big data' approaches are not an adequate substitute for representative population data when it comes to urban planning and policymaking. We will overcome these limitations through a combination of conceptual innovation and creative integration of novel tools and techniques that have been developed for sampling, surveying and estimating the characteristics of populations that are difficult to enumerate. This, in turn, will help us capture the large (and sometimes uniquely vulnerable) 'hidden populations' in cities missed by traditional approaches.

    By using freely available satellite imagery, we can get an idea of the current shape of a rapidly changing city and create a 'sampling frame' from which we then identify respondents for our survey. Importantly, and in contrast with previous approaches, we aren't simply going to count official city residents. We are interested in understanding the characteristics of the actually present population, including recent migrants, temporary residents, and those living in informal or illegal settlements, who are often not considered formal residents in official enumeration exercises. In other words, our 'inclusion criterion' for the survey exercise is presence not residence. By adopting this approach, we hope to capture a more accurate picture of city populations. We will also limit the length of our survey questionnaire to maximise responses and then use novel statistical techniques to reconstruct a rich statistical portrait that reflects a wide range of demographic and socioeconomic information.

    We will pilot our methodology in a city in Pakistan, which recently completed a national census exercise that has generated some controversy with regard to the accuracy of urban population counts. To our knowledge this would be the first project ever to pilot and validate a new sampling and survey methodology at the city scale in a developing country.

  15. City Surveillance Equipment Market Report | Global Forecast From 2025 To...

    • dataintelo.com
    csv, pdf, pptx
    Updated Jan 7, 2025
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    Dataintelo (2025). City Surveillance Equipment Market Report | Global Forecast From 2025 To 2033 [Dataset]. https://dataintelo.com/report/city-surveillance-equipment-market
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    pdf, csv, pptxAvailable download formats
    Dataset updated
    Jan 7, 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

    City Surveillance Equipment Market Outlook



    The global city surveillance equipment market size was valued at approximately USD 10 billion in 2023 and is projected to reach around USD 25 billion by 2032, growing at a compound annual growth rate (CAGR) of 10.5% during the forecast period. This remarkable growth can be attributed to the increasing demand for enhanced public safety measures, rapid urbanization, and advancements in surveillance technology.



    One of the primary growth factors driving the city surveillance equipment market is the escalating need for public safety and security across urban areas. With the rise in crime rates and terrorist activities, cities around the world are increasingly investing in advanced surveillance systems to monitor and secure public spaces. Governments are also implementing stringent regulations requiring the deployment of surveillance equipment in public areas, which further fuels market growth.



    Technological advancements in surveillance equipment are another significant driver of market growth. The advent of high-definition cameras, IP-based surveillance systems, and advanced video management software has revolutionized the way city surveillance is conducted. These innovations provide better image clarity, remote accessibility, and improved storage solutions, making them indispensable for modern city surveillance. The integration of artificial intelligence (AI) and machine learning (ML) in surveillance systems has also enhanced their capabilities, allowing for real-time threat detection and response.



    The rapid pace of urbanization, particularly in emerging economies, is also contributing to the growth of the city surveillance equipment market. As cities expand and populations increase, the need for robust surveillance systems becomes more critical. Urban development projects often include the installation of comprehensive surveillance networks to ensure the safety and security of residents. Additionally, the increasing adoption of smart city initiatives, which integrate various technologies for efficient city management, is driving the demand for advanced surveillance solutions.



    The demand for Video Surveillance Equipment And Services is witnessing a significant surge as cities strive to enhance their security infrastructure. This trend is driven by the increasing need for comprehensive surveillance solutions that not only capture high-quality video footage but also offer advanced analytics and real-time monitoring capabilities. The integration of AI and machine learning technologies in video surveillance systems has further amplified their effectiveness, enabling proactive threat detection and response. As urban areas continue to expand, the requirement for robust surveillance services becomes more critical, ensuring the safety and security of public spaces and residents. This growing demand is encouraging both public and private sectors to invest in state-of-the-art video surveillance equipment and services, fostering a safer urban environment.



    Regionally, Asia Pacific is expected to be the fastest-growing market for city surveillance equipment during the forecast period. The region's rapid urbanization, coupled with substantial government investments in public safety infrastructure, is driving this growth. Countries such as China, India, and Japan are leading the way with extensive surveillance projects to enhance urban security. North America and Europe also represent significant markets due to their advanced technological infrastructure and stringent security regulations.



    Product Type Analysis



    The city surveillance equipment market is segmented by product type into cameras, video management systems, storage solutions, and others. Cameras are the most critical component of surveillance systems, providing the necessary visual data for monitoring and security purposes. The advancement in camera technology, such as high-resolution imaging, night vision, and panoramic views, has significantly enhanced their efficiency and reliability. IP-based cameras, in particular, are gaining popularity due to their ability to transmit data over networks, offering remote accessibility and scalability.



    Video management systems (VMS) play an essential role in city surveillance by managing and analyzing the vast amounts of data generated by surveillance cameras. VMS solutions enable operators to monitor multiple camera feeds simultaneously, detect anoma

  16. O

    Final Report of the Asian American Quality of Life (AAQoL)

    • data.austintexas.gov
    • datahub.austintexas.gov
    • +4more
    application/rdfxml +5
    Updated Jul 12, 2018
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    City of Austin, Texas - data.austintexas.gov (2018). Final Report of the Asian American Quality of Life (AAQoL) [Dataset]. https://data.austintexas.gov/w/hc5t-p62z/7r79-5ncn?cur=pSyIUhgXbVO
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    csv, application/rssxml, tsv, json, xml, application/rdfxmlAvailable download formats
    Dataset updated
    Jul 12, 2018
    Dataset authored and provided by
    City of Austin, Texas - data.austintexas.gov
    Area covered
    Asia
    Description

    The U.S. Census defines Asian Americans as individuals having origins in any of the original peoples of the Far East, Southeast Asia, or the Indian subcontinent (U.S. Office of Management and Budget, 1997). As a broad racial category, Asian Americans are the fastest-growing minority group in the United States (U.S. Census Bureau, 2012). The growth rate of 42.9% in Asian Americans between 2000 and 2010 is phenomenal given that the corresponding figure for the U.S. total population is only 9.3% (see Figure 1). Currently, Asian Americans make up 5.6% of the total U.S. population and are projected to reach 10% by 2050. It is particularly notable that Asians have recently overtaken Hispanics as the largest group of new immigrants to the U.S. (Pew Research Center, 2015). The rapid growth rate and unique challenges as a new immigrant group call for a better understanding of the social and health needs of the Asian American population.

  17. Cities with highest business growth rate in the United Kingdom (UK) 2016 to...

    • statista.com
    • ai-chatbox.pro
    Updated May 7, 2025
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    Statista (2025). Cities with highest business growth rate in the United Kingdom (UK) 2016 to 2017 [Dataset]. https://www.statista.com/statistics/380060/cities-with-highest-business-growth-rate-in-the-united-kingdom-uk/
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    Dataset updated
    May 7, 2025
    Dataset authored and provided by
    Statistahttp://statista.com/
    Area covered
    United Kingdom
    Description

    This statistic shows the ten cities with the fastest growing business base in the United Kingdom (UK) from 2016 to 2017. The number of businesses located in Warrington increased by 26.5 percent during this period, with Aberdeen and Slough in second and third place respectively.

  18. S

    Smart City Landscaping Report

    • datainsightsmarket.com
    doc, pdf, ppt
    Updated Feb 12, 2025
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    Data Insights Market (2025). Smart City Landscaping Report [Dataset]. https://www.datainsightsmarket.com/reports/smart-city-landscaping-1365507
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    ppt, doc, pdfAvailable download formats
    Dataset updated
    Feb 12, 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 global smart city landscaping market is expected to grow from USD XX million in 2025 to USD XX million by 2033, at a CAGR of XX% during the forecast period. The market is driven by the increasing demand for smart city solutions to improve the efficiency, sustainability, and livability of urban areas. Growing urbanization and the need for efficient management of urban resources are also contributing to the market growth. The market is segmented by application into municipal, enterprise, personal, and others. The municipal segment is expected to hold the largest market share due to the increasing adoption of smart city solutions by local governments. The global smart city landscaping market is expected to be dominated by North America and Europe in the coming years. These regions have been at the forefront of smart city development and have invested heavily in smart city initiatives. However, Asia-Pacific is expected to be the fastest-growing region in the smart city landscaping market due to the rapid urbanization and economic growth in the region. The key players in the global smart city landscaping market include Chengdu Xiaobu Chuangxiang, Oriental Smart City (Beijing), Jiangsu Yutu Information Technology, Xiamen Chenglian Technology, Xi'an Lvyun Zhitong Ecological Engineering, Shenzhen Topevery Technology, Hangzhou Crossover Science and Technology, and Hunan Zhixuan Information Technology. These companies are offering a wide range of smart city solutions, including software, hardware, and services.

  19. Luxury real estate price change worldwide 2024, by city

    • statista.com
    • ai-chatbox.pro
    Updated Jun 20, 2025
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    Statista (2025). Luxury real estate price change worldwide 2024, by city [Dataset]. https://www.statista.com/statistics/322413/luxury-real-estate-price-change-cities/
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    Dataset updated
    Jun 20, 2025
    Dataset authored and provided by
    Statistahttp://statista.com/
    Time period covered
    2024
    Area covered
    Worldwide
    Description

    In Seoul, luxury home prices surged by over **** percent between December 2023 and December 2024, making it the fastest growing luxury real estate market worldwide. In the United States, Orange County was the market where prices rose the most during that period. Manila was the Asia-Pacific (APAC) city that experienced the most price growth in the luxury market, amounting to **** percent.

  20. t

    Smart City Communication Network Market Demand, Size and Competitive...

    • techsciresearch.com
    Updated Jun 25, 2025
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    TechSci Research (2025). Smart City Communication Network Market Demand, Size and Competitive Analysis | TechSci Research [Dataset]. https://www.techsciresearch.com/report/smart-city-communication-network-market/29743.html
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    Dataset updated
    Jun 25, 2025
    Dataset authored and provided by
    TechSci Research
    License

    https://www.techsciresearch.com/privacy-policy.aspxhttps://www.techsciresearch.com/privacy-policy.aspx

    Description

    Smart City Communication Network Market was valued at USD 326 billion in 2024 and is expected to reach USD 818 billion by 2030 with a CAGR of 16.56%.

    Pages185
    Market Size2024: USD 326 Billion
    Forecast Market Size2030: USD 818 Billion
    CAGR2025-2030: 16.56%
    Fastest Growing SegmentSmall City
    Largest MarketNorth America
    Key Players1. Cisco Systems, Inc. 2. IBM Corporation 3. Siemens AG 4. Huawei Technologies Co., Ltd. 5. Nokia Corporation 6. Telefonaktiebolaget LM Ericsson 7. NEC Corporation 8. Schneider Electric SE

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Statista (2024). The 15 fastest-growing large cities in the U.S. 2020-2021 [Dataset]. https://www.statista.com/statistics/238988/the-percent-increase-of-the-fastest-growing-large-cities-in-the-us/
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The 15 fastest-growing large cities in the U.S. 2020-2021

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Dataset updated
Jul 5, 2024
Dataset authored and provided by
Statistahttp://statista.com/
Time period covered
Jul 1, 2020 - Jul 1, 2021
Area covered
United States
Description

This statistic represents the percent increase of the 15 fastest-growing large cities in the U.S. between July 1, 2020 and July 1, 2021. Georgetown city in Texas is at the top of the fastest-growing large cities, with a growth rate of 10.5 percent over this period.

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