8 datasets found
  1. e

    Eindhoven smart society IoT charter

    • data.eindhoven.nl
    • ckan.mobidatalab.eu
    • +1more
    Updated Oct 18, 2017
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    (2017). Eindhoven smart society IoT charter [Dataset]. https://data.eindhoven.nl/explore/dataset/eindhoven-smart-society-iot-charter/
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    Dataset updated
    Oct 18, 2017
    Area covered
    Eindhoven
    Description

    Smart Society Charter IoT Architecture principles & guidelines City of Eindhoven In a Smart Society, digital online technologies become seamlessly integrated in the physical offline world, to improve people’s lives and contribute to the development of the society. The most important thing in a Smart Society is that people experience the benefits of what the intensive co-evolution of digital and analogue, virtual and physical, online and offline will bring them. With more and more technologies on the Internet of Things, and increasing volumes of data being collected, it is inevitable that IoT and data-driven services will have a serious impact on our lives. As a pioneer of the Smart Society, the City of Eindhoven is already facing up to imminent changes, and confronting the dilemmas that the new technologies bring with them. In order to safeguard public interest, stimulate innovation, foster a sustainable ecosystem of partners and encourage socially responsible business models, we have put together a few simple common principles to apply to an architecture of all current and emerging IoT initiatives across the city. These principles are being developed in cooperation with commercial partners, start-ups and small enterprises, independent IoT developers, academic and research institutes, citizen-driven initiatives and other public organizations. We believe that these principles reflect our common values, contribute to the development of the city and improve the quality of life of its residents. We call on all IoT parties in Eindhoven, as well as our Dutch and international partners, to adopt, extend and reflect on these principles when building new or improving existing IoT and data infrastructures, platforms, services and applications. In a Smart Society, all participants should benefit from technology's achievements. 1 Privacy first First and foremost, the privacy of the users and citizens should be guaranteed. People should be given insight into the data that is collected and control over the way it is and will be used. Ethical aspects should be taken into account when extending practices into areas not addressed by current legislation. 2 Open data and interfaces We facilitate innovation by making data publicly available and enabling access to IoT & data systems through open interfaces. We stimulate new business models and emerging services that rely on generating added value, rather than exploiting licenses on data or exclusive rights on the infrastructure. We recommend making the infrastructure open on the lowest level and making raw data publicly available whenever this can be done without compromising the privacy and security of the citizens. 3 Embrace open standards Wherever available, the IoT infrastructure, connectivity, platforms, devices and services should be built on open or broadly agreed de-facto standards. Using established standards will facilitate evolution of infrastructure and services, sustain a competitive market and prevent vendor lock-in. Where standards are not yet available, maintaining openness and sharing best practices will help to lay a foundation for the future. 4 Share where possible We expect all IoT and Data developments to provide well-defined, easily accessible stable interfaces for sharing and reusing existing assets. Shared use of grids, sensor networks, connectivity and software components will lower the barriers for their adoption, increase connectivity and stimulate interoperability. The IoT & Data infrastructure should be available for re-use, as well as open to innovation and expansion. 5 Support modularity We recommend adopting a modular architecture with well-defined open interfaces as the core of any IoT or data-driven development. Modularity helps to ensure interoperability between platforms, services and applications and facilitates re-use and cooperation between partners. 6 Maintain security The reliability of components, platforms, solutions and services must be constantly safeguarded. Ensuring confidentiality, integrity and availability is vital to essential services and core parts of the infrastructure, which need to be safeguarded to the highest possible degree. In addition, all digital assets must be well-protected from attack, damage or unauthorized access. 7 Accept social responsibility Providing new technologies and services, and collecting and combining data may result in unforeseen effects on society or individuals. We cannot predict the future. We encourage experimentation, provided responsibility is taken for the consequences.

  2. G

    Global Smart Communities Market Report

    • marketreportanalytics.com
    doc, pdf, ppt
    Updated Mar 20, 2025
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    Market Report Analytics (2025). Global Smart Communities Market Report [Dataset]. https://www.marketreportanalytics.com/reports/global-smart-communities-market-16508
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    pdf, ppt, docAvailable download formats
    Dataset updated
    Mar 20, 2025
    Dataset authored and provided by
    Market Report Analytics
    License

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

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

    The global smart communities market is experiencing robust growth, driven by increasing urbanization, the need for enhanced infrastructure efficiency, and the rising adoption of Internet of Things (IoT) technologies. The market's expansion is fueled by governments' initiatives to improve citizen services, optimize resource management, and enhance public safety. Key trends include the integration of advanced analytics for predictive maintenance in smart city infrastructure, the proliferation of smart grids for energy efficiency, and the development of sophisticated data security measures to address privacy concerns. While initial investments can be substantial, the long-term cost savings and improved quality of life associated with smart communities are strong motivators for adoption. We estimate the current market size to be approximately $250 billion in 2025, with a Compound Annual Growth Rate (CAGR) of 12% projected through 2033, leading to a market valuation exceeding $800 billion by the end of the forecast period. Competition is intense among leading technology companies such as Cisco, IBM, Siemens, Schneider Electric, and Toshiba, each striving for market share by offering integrated solutions covering various smart city applications. The market is segmented by type (e.g., smart grids, smart transportation, smart buildings) and application (e.g., public safety, environmental monitoring, healthcare). Geographic growth varies; North America and Europe currently dominate, but Asia-Pacific is expected to witness significant growth due to rapid urbanization and government investments in infrastructure modernization. Restraints include the high cost of implementation, concerns about data privacy and security, and the need for interoperability among different systems. The success of smart community initiatives hinges on effective data management, collaborative partnerships between public and private sectors, and the engagement of citizens. Addressing these challenges will be crucial for realizing the full potential of smart communities and sustaining market growth in the coming years. The integration of advanced technologies like AI and machine learning for predictive modeling will significantly enhance the effectiveness of smart city initiatives, leading to optimized resource allocation and proactive problem-solving. Furthermore, the development of open standards and interoperable platforms will streamline the implementation of smart city projects and reduce complexity. The continued growth of 5G networks will also be a major driver for the widespread deployment of IoT sensors and devices necessary for creating truly intelligent communities.

  3. IoT Analytics Market Analysis North America, APAC, Europe, Middle East and...

    • technavio.com
    Updated Sep 3, 2024
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    Technavio (2024). IoT Analytics Market Analysis North America, APAC, Europe, Middle East and Africa, South America - US, Canada, Germany, UK, China, India, France, Japan, Australia, Spain - Size and Forecast 2024-2028 [Dataset]. https://www.technavio.com/report/iot-analytics-market-industry-analysis
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    Dataset updated
    Sep 3, 2024
    Dataset provided by
    TechNavio
    Authors
    Technavio
    Time period covered
    2021 - 2025
    Area covered
    Canada, United Kingdom, United States, Global
    Description

    Snapshot img

    IoT Analytics Market Size 2024-2028

    The iot analytics market size is forecast to increase by USD 153.66 billion, at a CAGR of 46.4% between 2023 and 2028.

    The Internet of Things (IoT) analytics market is experiencing significant growth, driven by the increasing need to improve business efficiency and enhance operational productivity. One of the most promising sectors for IoT analytics is healthcare, where real-time data analysis is revolutionizing patient care and diagnosis. However, the market's expansion is not without challenges. The sluggish connectivity for IoT devices poses a significant obstacle, limiting the potential for widespread adoption and integration. To capitalize on the market opportunities and navigate these challenges effectively, companies must focus on developing robust IoT analytics solutions that can seamlessly integrate with various devices and networks. By addressing the connectivity issue and delivering actionable insights, organizations can unlock the full potential of IoT analytics and transform their operations.

    What will be the Size of the IoT Analytics Market during the forecast period?

    Explore in-depth regional segment analysis with market size data - historical 2018-2022 and forecasts 2024-2028 - in the full report.
    Request Free SampleThe Internet of Things (IoT) analytics market is characterized by continuous evolution and dynamic market activities. Deep learning and machine learning algorithms are increasingly being integrated into IoT systems for advanced data analysis, enabling real-time decision making and process automation. Edge computing, with its ability to process data closer to the source, enhances operational efficiency and reduces latency in data transfer. Financial services sector is leveraging IoT analytics for fraud detection, risk management, and customer behavior analysis. Wireless networks and low-power wide-area networks facilitate seamless data acquisition from smart devices, ensuring data privacy and security through robust protocols and encryption techniques. Cloud integration and API management enable easy access to data and integration with business intelligence tools, enabling data visualization and data governance. Industrial IoT applications span across various sectors, including supply chain management, fleet management, and smart manufacturing, with a focus on cost optimization and energy management. IoT security is a critical concern, with ongoing efforts towards developing advanced security protocols and firmware updates. Precision agriculture, smart homes, retail analytics, and smart cities are among the emerging applications of IoT analytics, offering significant potential for process automation, environmental monitoring, and public safety. The market dynamics of IoT analytics are shaped by ongoing advancements in artificial intelligence, data analytics, and software defined networking. Integration services and deployment strategies continue to evolve, enabling seamless integration with consumer electronics, healthcare monitoring, and energy management systems. Open standards and real-time monitoring are essential for ensuring interoperability and scalability in IoT ecosystems.

    How is this IoT Analytics Industry segmented?

    The iot analytics industry research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in 'USD million' for the period 2024-2028, as well as historical data from 2018-2022 for the following segments. ComponentSoftwareServicesEnd-userManufacturingRetailHealthcareTelecommunication and ITOthersGeographyNorth AmericaUSCanadaEuropeFranceGermanySpainUKAPACAustraliaChinaIndiaJapanRest of World (ROW).

    By Component Insights

    The software segment is estimated to witness significant growth during the forecast period.In the dynamic landscape of IoT analytics, software solutions have emerged as a dominant force in 2023, accounting for a significant market share. This trend is driven by the expanding global reach of IT and retail companies, necessitating large-scale data management. The surge in SME growth in emerging economies, such as China, India, Brazil, Indonesia, and Mexico, further fuels the demand for data-driven decision-making tools. companies in the market offer software solutions to various industries, enabling real-time data acquisition and analysis for valuable business insights. Edge computing, machine learning, and artificial intelligence technologies are integrated into these solutions to optimize operational efficiency, enhance process automation, and bolster data security. Furthermore, the integration of wireless networks, cloud services, and APIs facilitates seamless data exchange and analysis. Low-power wide-area networks and sensor networks expand the reach of IoT analytics, enabling precision agriculture, smart homes, and retail analytics, among other applications. The market also priori

  4. C

    Connected IoT Devices Market Report

    • promarketreports.com
    doc, pdf, ppt
    Updated Feb 1, 2025
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    Pro Market Reports (2025). Connected IoT Devices Market Report [Dataset]. https://www.promarketreports.com/reports/connected-iot-devices-market-10310
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    doc, ppt, pdfAvailable download formats
    Dataset updated
    Feb 1, 2025
    Dataset authored and provided by
    Pro Market Reports
    License

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

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

    The Connected IoT Devices Market is likely to grow to reach USD 11.96 billion by 2033. It is expected to accrue at a massive CAGR of 16.17% during 2023-2033. In this regard, demand is most likely to expand on account of the major adoption of IoT technology in different sectors. Some key drivers of the same include an improved efficiency for operations, customer experience, and data-driven decision-making. The growing trend of smart cities and increasing rollout of 5G are additional factors driving growth for this market. The main demand is being created by smart homes, health care, automotive, industrial automation, and retail sectors where IoT-enabled devices used in these industries are enhancing connectivity and automation. Additionally, smart cities are proliferating with 5G networks that are again propelling the market growth due to real-time data transfer, low-latency communication, etc. However, it would face issues of data security and interoperability issues, among others. Still, developments in AI, edge computing, and cloud-based IoT solutions will open huge opportunities, becoming an important pillar for future digital transformation within several sectors. Recent developments include: April 2024: An industry expert in identity management, fraud prevention, and connected asset services, Somos, Inc., is happy to disclose its collaboration with NetRise, a premier supplier of IoT Software Bill of Materials security analysis. The partnership implies a substantial achievement for SomosID, the company's flagship IoT device registry, as it spearheads efforts to advance transparency and improved security in the IoT device realm. NetRise offers granular visibility into the world's Extended Internet of Things (XIoT) security problem — comprising the modern firmware and software component security challenges of IT, IoT, OT, and other connected cyber-physical systems. The SomosID solution offers enterprises a thorough view of their deployed IoT assets, comprising all the device, application identity, and network attributes, as well as verification of certification of those devices. Somos also maintains comprehensive hardware and software bill of materials information to offer customers a current state of all of their assets. The capability effortlessly incorporates NetRise's IoT device software analysis, including software bills of materials and vulnerability monitoring. It provides a thorough, constant view of an enterprise's IoT security posture and risks across all of its assets. SVP & Chief Technology Officer at Somos, Sri Ramachandran, said that Somos is happy to be able to use NetRise's best-in-class firmware analysis capabilities to fulfill the striking rise in cyber-attacks on IoT devices and the latest compliance requirements posed by the global IoT cybersecurity regulations, including the regulations by the Federal Drug Administration (FDA), the Cyber Resilience Act in Europe and Federal Communications Commission (FCC) in the U.S., June 2023: The Vietnamese IoT market is projected to acquire worth nearly USD 8.5 billion. To attain that target, the nation should apply IoT to measurement devices and means of transport, as per the experts. One report discovered that there are nearly 13 billion IoT devices across the globe, and the compound annual growth rate (CAGR) is 19 percent per annum. Among all these, 2.7 billion IoT connection devices use SIM with a CAGR of around 12 percent. The majority of the world's IoT device market belongs to China. The nation owns more than 10 billion IoT connections, among which 1.84 billion devices use SIM. According to the research, in Vietnam, the IoT market was worth nearly USD 2.5 billion in 2021 and grew by 22.6 percent per year., June 2022: OEMs and skid makers may now remotely evaluate the health and condition of their installed base thanks to Connected OEM, a Honeywell Internet of Things (IoT) service. This technology allows for remote monitoring of compressors, furnaces, pumping stations, analyzer houses, and skids at end-user locations., April 2022: Samsung established a partnership with IoT service provider ABB in order to increase support for home and commercial devices on SmartThings, the company's smart device hub. By collaborating with other companies, Samsung's SmartThings is evolving into a one-stop shop for controlling connected devices.. Key drivers for this market are: Rising demand for connectivity and real-time data Growing awareness of the benefits of IoT solutions Technological advancements in connectivity and data analytics. Potential restraints include: Security concerns and vulnerabilities Interoperability and compatibility issues Cost and complexity of IoT deployments Shortage of skilled professionals. Notable trends are: The integration of IoT devices into home environments is driving market growth. Smart home devices, such as smart speakers, thermostats, and lighting systems, offer convenience, energy efficiency, and enhanced home security. Industrial IoT (IIoT) applications are rapidly expanding, particularly in manufacturing, healthcare, and transportation. IIoT solutions enable real-time monitoring, predictive maintenance, and process optimization, leading to increased efficiency and reduced downtime..

  5. D

    Wireless Occupancy Sensor Market Report | Global Forecast From 2025 To 2033

    • dataintelo.com
    csv, pdf, pptx
    Updated Jan 7, 2025
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    Dataintelo (2025). Wireless Occupancy Sensor Market Report | Global Forecast From 2025 To 2033 [Dataset]. https://dataintelo.com/report/wireless-occupancy-sensor-market
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    pdf, pptx, csvAvailable download formats
    Dataset updated
    Jan 7, 2025
    Authors
    Dataintelo
    License

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

    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Wireless Occupancy Sensor Market Outlook




    The global wireless occupancy sensor market is experiencing significant growth, with the market size projected to increase from $2.5 billion in 2023 to approximately $5.8 billion by 2032, representing a robust compound annual growth rate (CAGR) of 9.6%. This burgeoning expansion is driven by a plethora of growth factors, including escalating demand for energy-efficient solutions across various sectors, the proliferation of smart buildings, and advancements in wireless communication technologies. The adoption of wireless occupancy sensors is becoming increasingly essential as organizations and residential users alike seek to optimize energy consumption, reduce operational costs, and enhance overall operational efficiency.




    A major catalyst propelling the growth of the wireless occupancy sensor market is the rising emphasis on sustainable and energy-efficient building solutions. As governments and regulatory bodies worldwide impose stricter energy conservation mandates, there is a heightened demand for technologies that can facilitate significant reductions in energy usage. Wireless occupancy sensors, which detect human presence and adjust lighting and HVAC systems accordingly, are key to achieving these objectives. This trend is complemented by the increasing consumer preference for smart home technologies, which offer enhanced convenience and cost savings. Furthermore, the commercial sector, particularly offices and retail spaces, is witnessing a rapid adoption of these sensors to optimize space utilization and reduce operational expenses.




    Technological advancements in wireless communication and sensor technologies are also fueling market growth. The integration of Internet of Things (IoT) technology with wireless occupancy sensors has opened new avenues for enhanced functionality and interoperability with other smart devices. IoT-enabled sensors provide real-time data and insights that can be leveraged for predictive analytics, thus enabling more informed decision-making for facility management. Moreover, the development of advanced sensor technologies, such as passive infrared and ultrasonic sensors, has improved the accuracy and reliability of occupancy detection, further driving their adoption across diverse applications. With continuous innovation, these sensors are becoming more sophisticated, compact, and cost-effective, making them accessible to a broader range of users.




    The regional outlook for the wireless occupancy sensor market remains promising, with significant growth anticipated across key geographic areas. North America currently leads the market, driven by the early adoption of advanced technologies, a well-established infrastructure, and supportive regulatory frameworks promoting energy efficiency. Europe is also experiencing notable growth due to stringent energy directives and increasing investments in smart building projects. Meanwhile, the Asia Pacific region is poised for substantial expansion, fueled by rapid urbanization, the growth of the middle class, and large-scale smart city initiatives. Emerging markets in Latin America and the Middle East & Africa are also expected to contribute to market growth, albeit at a more gradual pace, as infrastructural development and technology adoption continue to gain momentum.



    The integration of Microwave Occupancy Sensor technology is becoming increasingly prevalent in the market, offering a unique advantage in environments where precise detection is crucial. These sensors utilize microwave radar to detect motion, providing superior sensitivity and accuracy compared to traditional passive infrared sensors. This makes them particularly effective in complex environments with obstructions or where high sensitivity to movement is required. As organizations seek to enhance their energy management systems, the adoption of microwave sensors is expected to grow, driven by their ability to provide reliable occupancy detection and reduce energy waste. The versatility of these sensors allows them to be used in a wide range of applications, from commercial buildings to industrial facilities, where precise control over lighting and HVAC systems is essential.



    Technology Analysis




    The technology segment of the wireless occupancy sensor market encompasses passive infrared (PIR), ultrasonic, and dual technology sensors, each offering distinct advantages and features. Passive infrared sen

  6. Smart Buildings Market Analysis, Size, and Forecast 2025-2029: North America...

    • technavio.com
    Updated Feb 15, 2025
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    Technavio (2025). Smart Buildings Market Analysis, Size, and Forecast 2025-2029: North America (US and Canada), Europe (France, Germany, UK), Middle East and Africa (UAE), APAC (China, India, Japan), South America (Brazil), and Rest of World (ROW) [Dataset]. https://www.technavio.com/report/smart-buildings-market-industry-analysis
    Explore at:
    Dataset updated
    Feb 15, 2025
    Dataset provided by
    TechNavio
    Authors
    Technavio
    Time period covered
    2021 - 2025
    Area covered
    Global
    Description

    Snapshot img

    Smart Buildings Market Size 2025-2029

    The smart buildings market size is forecast to increase by USD 76.8 billion, at a CAGR of 11.3% between 2024 and 2029.

    The market is experiencing significant growth, driven by the increasing demand for building automation to enhance business outcomes. This trend is further propelled by the integration of Internet of Things (IoT) technology with building automation software. The convergence of these technologies enables real-time monitoring and optimization of energy consumption, indoor environmental quality, and overall operational efficiency. However, the integration of building automation software and IoT devices poses challenges. Interoperability issues between different systems and companies hinder seamless integration and data exchange, limiting the full potential of smart buildings. Companies seeking to capitalize on the market opportunities must address these challenges by focusing on standardized communication protocols and open APIs to ensure compatibility and seamless data flow between systems. By doing so, they can create a competitive edge, offering advanced automation solutions that deliver improved operational efficiency, reduced energy consumption, and enhanced occupant comfort.

    What will be the Size of the Smart Buildings 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 SampleThe market continues to evolve, with various sectors integrating advanced technologies to optimize building performance. Real estate development firms are investing in IoT sensors, edge computing, and building automation systems to enhance energy efficiency and asset management. Smart appliances, such as voice-controlled thermostats and dynamic glazing, are becoming standard features in new constructions. Data integration plays a crucial role in this dynamic landscape, with cloud-based platforms facilitating the seamless exchange of information between different systems. LEED certification and green building standards are driving the adoption of renewable energy, smart grids, and water management solutions. Safety regulations and access control systems are also evolving to accommodate emerging technologies like biometric authentication and facial recognition. Smart infrastructure, including 5G networks and smart transportation, is transforming urban landscapes into smart cities. Building management software and digital twins are enabling real-time monitoring and analysis of building performance, while machine learning and artificial intelligence are optimizing HVAC control systems and predicting maintenance needs. Smart waste management, air quality sensors, and temperature sensors are addressing health and sustainability concerns. Construction technology, including virtual and augmented reality, is revolutionizing design and planning processes. The ongoing integration of these technologies is creating a complex ecosystem that requires open APIs and advanced data analytics to ensure optimal performance and user experience. The market is an ever-evolving landscape, with new applications and innovations emerging constantly.

    How is this Smart Buildings Industry segmented?

    The smart buildings industry research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in 'USD billion' for the period 2025-2029, as well as historical data from 2019-2023 for the following segments. ProductSafety and security managementEnergy managementBuilding infrastructure managementNetwork managementIWMSComponentSoftwareHardwareServicesBuilding TypeCommercialResidentialIndustrialApplicationSecurity SystemsHVAC ControlLighting ManagementGeographyNorth AmericaUSCanadaEuropeFranceGermanyUKMiddle East and AfricaUAEAPACChinaIndiaJapanSouth AmericaBrazilRest of World (ROW)

    By Product Insights

    The safety and security management segment is estimated to witness significant growth during the forecast period.The market is experiencing significant growth as advanced technologies are integrated to optimize building performance and enhance safety and security. Building performance optimization is a key focus area, with natural language processing, smart waste management, smart glass, air quality sensors, and virtual reality (VR) technologies improving energy efficiency, reducing waste, and creating immersive occupant experiences. Cloud computing, 5G networks, and edge computing enable real-time data processing and integration, while renewable energy sources and green building standards promote sustainability. Safety regulations are driving the adoption of smart water management, temperature sensors, and motion sensors for early leak detection and occupancy monitoring. Voice control, facial recognition, and smart thermostats offer convenience and personalized comfort,

  7. Smart Home Scene Builder App Market Research Report 2033

    • growthmarketreports.com
    csv, pdf, pptx
    Updated Jun 29, 2025
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    Growth Market Reports (2025). Smart Home Scene Builder App Market Research Report 2033 [Dataset]. https://growthmarketreports.com/report/smart-home-scene-builder-app-market
    Explore at:
    pdf, pptx, csvAvailable download formats
    Dataset updated
    Jun 29, 2025
    Dataset authored and provided by
    Growth Market Reports
    Time period covered
    2024 - 2032
    Area covered
    Global
    Description

    Smart Home Scene Builder App Market Outlook



    As per our latest research, the global Smart Home Scene Builder App market size reached USD 2.43 billion in 2024, driven by surging consumer demand for home automation and integrated digital experiences. The market is projected to expand at a robust CAGR of 16.8% from 2025 to 2033, reaching an estimated value of USD 11.34 billion by the end of the forecast period. This growth is primarily fueled by the proliferation of smart devices, increasing adoption of IoT technologies, and heightened consumer focus on convenience, energy efficiency, and security within residential and commercial environments.




    The rapid integration of Internet of Things (IoT) devices into modern homes is a primary driver for the Smart Home Scene Builder App market. As consumers continue to invest in smart lighting, thermostats, security systems, and entertainment devices, the need for centralized, user-friendly applications that can orchestrate multiple devices and automate daily routines is growing exponentially. These apps allow users to create personalized “scenes” or automation routines—such as adjusting lighting and temperature for movie nights or activating security protocols when leaving home—thus enhancing convenience and energy efficiency. The increasing interoperability among devices from different manufacturers, facilitated by open APIs and standardized protocols, further accelerates the adoption of scene builder apps, making them indispensable in the evolving smart home ecosystem.




    Another significant growth factor is the rising awareness of energy conservation and sustainability. Smart Home Scene Builder Apps empower users to monitor and optimize energy usage by automating device operations based on occupancy, time, or environmental conditions. For example, these apps can automatically adjust lighting and climate control systems to reduce energy consumption when rooms are unoccupied, contributing to lower utility bills and reduced environmental impact. This aligns with global efforts to promote sustainable living and smart city development, encouraging governments and utility companies to incentivize the adoption of smart home technologies. As a result, the market is witnessing increased investments in research and development, leading to the introduction of advanced features such as AI-driven automation, predictive analytics, and real-time energy monitoring.




    The evolution of wireless communication technologies, such as Wi-Fi 6, Zigbee, Z-Wave, and Bluetooth Low Energy (BLE), is also propelling the Smart Home Scene Builder App market. These technologies enable seamless connectivity and interoperability among a wide range of smart devices, ensuring reliable performance and user satisfaction. The growing penetration of high-speed internet and the rollout of 5G networks are further enhancing the capabilities of cloud-based smart home applications, allowing for remote access, real-time updates, and integration with voice assistants like Amazon Alexa, Google Assistant, and Apple Siri. This technological advancement is particularly beneficial for the commercial segment, where large-scale automation and centralized control are critical for energy management, security, and operational efficiency.




    From a regional perspective, North America continues to dominate the global Smart Home Scene Builder App market, accounting for the largest revenue share in 2024. This leadership is attributed to high consumer awareness, widespread adoption of smart home devices, and the presence of major industry players. Europe follows closely, driven by stringent energy efficiency regulations and growing investments in smart infrastructure. Meanwhile, the Asia Pacific region is emerging as the fastest-growing market, supported by rapid urbanization, rising disposable incomes, and government initiatives promoting smart city development. Latin America and the Middle East & Africa are also witnessing steady growth, albeit from a smaller base, as consumers increasingly embrace digital lifestyles and home automation solutions.





    <h2 id='component-analysis

  8. D

    Smart Home Security Light Bulbs Market Report | Global Forecast From 2025 To...

    • dataintelo.com
    csv, pdf, pptx
    Updated Jan 7, 2025
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    Dataintelo (2025). Smart Home Security Light Bulbs Market Report | Global Forecast From 2025 To 2033 [Dataset]. https://dataintelo.com/report/global-smart-home-security-light-bulbs-market
    Explore at:
    csv, pdf, 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

    Smart Home Security Light Bulbs Market Outlook



    The global smart home security light bulbs market size was valued at approximately USD 3.5 billion in 2023 and is anticipated to reach USD 9.8 billion by 2032, growing at a compound annual growth rate (CAGR) of 12.4% during the forecast period. This remarkable growth trajectory is primarily driven by advancements in smart home technologies, increasing consumer awareness regarding home security, and a growing inclination towards energy-efficient lighting solutions. The market's expansion is further fueled by the rising penetration of Internet of Things (IoT) devices and the adoption of smart home systems, which seamlessly integrate lighting, security, and home automation.



    One of the pivotal growth factors in this market is the increasing necessity for enhanced home security solutions. As urbanization intensifies and more individuals move into metropolitan areas, there is a growing concern over residential security. Smart home security light bulbs offer an innovative solution, combining illumination with security features such as motion detection, camera integration, and remote access. These bulbs not only deter potential intruders but also provide homeowners with real-time alerts and monitoring capabilities, significantly enhancing home safety. Furthermore, the convenience of controlling lighting functions remotely via smartphones or voice-controlled devices has garnered substantial attention, fostering greater adoption rates among tech-savvy consumers.



    The evolution of smart lighting technologies, specifically the transition from traditional lighting systems to LED-based smart bulbs, has also significantly contributed to market growth. LEDs are known for their energy efficiency and longer lifespan, traits that are highly desirable in an eco-conscious market. When combined with smart technology, these bulbs provide users with customizable lighting options, integrating seamlessly with various smart home ecosystems. As consumer preferences shift towards sustainable and intelligent home solutions, the demand for LED-based smart home security light bulbs is expected to rise. Additionally, government initiatives promoting energy efficiency and smart city projects are likely to further bolster market expansion.



    The proliferation of smart home devices and increasing interoperability between different systems have opened new avenues for market development. The integration of smart home security light bulbs with other IoT devices, such as smart locks, cameras, and alarm systems, provides comprehensive security solutions. This integration allows for the creation of a synchronized home environment, where different devices communicate with each other, enhancing overall functionality and user experience. As technology continues to evolve, innovations such as artificial intelligence (AI) and machine learning are expected to play a significant role in advancing the capabilities of smart home security light bulbs, offering predictive analytics and automated responses to potential security threats.



    The Smart Light Bulb has become a cornerstone of modern smart home ecosystems, offering a blend of convenience, energy efficiency, and enhanced security features. These bulbs are not just about illumination; they represent a shift towards more integrated and automated home environments. With the ability to be controlled remotely via smartphones or voice-activated devices, Smart Light Bulbs provide users with unprecedented control over their home lighting systems. They can be programmed to adjust based on time of day or occupancy, contributing to energy savings and a reduced carbon footprint. As technology advances, Smart Light Bulbs are expected to incorporate even more sophisticated features, such as adaptive lighting and integration with other smart home devices, further solidifying their role in the smart home landscape.



    Regionally, North America currently holds the largest share of the smart home security light bulbs market, driven by high consumer awareness and adoption of smart home technologies. Europe follows closely, with increasing investments in smart city projects and growing environmental concerns promoting energy-efficient solutions. The Asia Pacific region is anticipated to witness the highest growth rate over the forecast period, attributed to rapid urbanization, rising disposable incomes, and a growing middle class with a penchant for smart home innovations. Emerging economies in Latin America and the Middle East & Africa are also gradually adopting these technologies, presenting

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(2017). Eindhoven smart society IoT charter [Dataset]. https://data.eindhoven.nl/explore/dataset/eindhoven-smart-society-iot-charter/

Eindhoven smart society IoT charter

Explore at:
Dataset updated
Oct 18, 2017
Area covered
Eindhoven
Description

Smart Society Charter IoT Architecture principles & guidelines City of Eindhoven In a Smart Society, digital online technologies become seamlessly integrated in the physical offline world, to improve people’s lives and contribute to the development of the society. The most important thing in a Smart Society is that people experience the benefits of what the intensive co-evolution of digital and analogue, virtual and physical, online and offline will bring them. With more and more technologies on the Internet of Things, and increasing volumes of data being collected, it is inevitable that IoT and data-driven services will have a serious impact on our lives. As a pioneer of the Smart Society, the City of Eindhoven is already facing up to imminent changes, and confronting the dilemmas that the new technologies bring with them. In order to safeguard public interest, stimulate innovation, foster a sustainable ecosystem of partners and encourage socially responsible business models, we have put together a few simple common principles to apply to an architecture of all current and emerging IoT initiatives across the city. These principles are being developed in cooperation with commercial partners, start-ups and small enterprises, independent IoT developers, academic and research institutes, citizen-driven initiatives and other public organizations. We believe that these principles reflect our common values, contribute to the development of the city and improve the quality of life of its residents. We call on all IoT parties in Eindhoven, as well as our Dutch and international partners, to adopt, extend and reflect on these principles when building new or improving existing IoT and data infrastructures, platforms, services and applications. In a Smart Society, all participants should benefit from technology's achievements. 1 Privacy first First and foremost, the privacy of the users and citizens should be guaranteed. People should be given insight into the data that is collected and control over the way it is and will be used. Ethical aspects should be taken into account when extending practices into areas not addressed by current legislation. 2 Open data and interfaces We facilitate innovation by making data publicly available and enabling access to IoT & data systems through open interfaces. We stimulate new business models and emerging services that rely on generating added value, rather than exploiting licenses on data or exclusive rights on the infrastructure. We recommend making the infrastructure open on the lowest level and making raw data publicly available whenever this can be done without compromising the privacy and security of the citizens. 3 Embrace open standards Wherever available, the IoT infrastructure, connectivity, platforms, devices and services should be built on open or broadly agreed de-facto standards. Using established standards will facilitate evolution of infrastructure and services, sustain a competitive market and prevent vendor lock-in. Where standards are not yet available, maintaining openness and sharing best practices will help to lay a foundation for the future. 4 Share where possible We expect all IoT and Data developments to provide well-defined, easily accessible stable interfaces for sharing and reusing existing assets. Shared use of grids, sensor networks, connectivity and software components will lower the barriers for their adoption, increase connectivity and stimulate interoperability. The IoT & Data infrastructure should be available for re-use, as well as open to innovation and expansion. 5 Support modularity We recommend adopting a modular architecture with well-defined open interfaces as the core of any IoT or data-driven development. Modularity helps to ensure interoperability between platforms, services and applications and facilitates re-use and cooperation between partners. 6 Maintain security The reliability of components, platforms, solutions and services must be constantly safeguarded. Ensuring confidentiality, integrity and availability is vital to essential services and core parts of the infrastructure, which need to be safeguarded to the highest possible degree. In addition, all digital assets must be well-protected from attack, damage or unauthorized access. 7 Accept social responsibility Providing new technologies and services, and collecting and combining data may result in unforeseen effects on society or individuals. We cannot predict the future. We encourage experimentation, provided responsibility is taken for the consequences.

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