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Report Description

Report Description

Forecast Period

2027-2031

Market Size (2025)

USD 3.51 Billion

CAGR (2026-2031)

15.91%

Fastest Growing Segment

Surveillance

Largest Market

North America

Market Size (2031)

USD 8.51 Billion

Market Overview

The Global Internet of Things for Public Safety Market is projected to grow from USD 3.51 Billion in 2025 to USD 8.51 Billion by 2031 at a 15.91% CAGR. The Global Internet of Things for Public Safety market involves the deployment of interconnected devices and analytics platforms that enable law enforcement and emergency responders to exchange critical information in real time. These solutions encompass automated surveillance systems, environmental sensors, and wearable technologies that collectively improve situational awareness and operational efficiency. The primary drivers fueling market growth include the escalating necessity for rapid emergency response capabilities and substantial government investments in smart city infrastructure to manage urbanization risks. These factors actively encourage the integration of predictive analytics and automated dispatch systems into traditional public safety workflows.

Nevertheless, market expansion faces significant hurdles regarding infrastructure resilience and cybersecurity. As reliance on digital connectivity increases, network disruptions and system failures pose severe risks to operational continuity and public trust. According to the National Emergency Number Association, in 2025, 88% of Emergency Communications Centers experienced technology outages, highlighting the urgent requirement for robust and secure frameworks to support critical operations.

Key Market Drivers

The Growing Frequency and Severity of Natural Disasters is a primary catalyst propelling the adoption of IoT solutions within the public safety sector. As climate change accelerates the incidence of extreme weather events such as floods, wildfires, and hurricanes, agencies are increasingly deploying environmental sensors and early warning systems to mitigate risks and coordinate evacuations. These IoT-enabled devices provide critical real-time data, allowing emergency centers to model disaster trajectories and deploy resources more effectively before a catastrophe strikes. For instance, automated water level sensors and thermal detectors are essential for reducing response times during rapid-onset events. According to Swiss Re, May 2025, in the 'Sigma 1/2025 Report', global insured losses from natural catastrophes totaled USD 137 billion in 2024, underscoring the financial and operational urgency for resilient disaster management technologies.

Concurrently, Increasing Government Expenditure on Public Safety Infrastructure is significantly expanding the market reach of interconnected security devices and dedicated communication networks. Governments are aggressively funding the modernization of legacy systems, transitioning towards broadband-enabled frameworks that support high-bandwidth applications like video streaming and biometric analysis. This investment drive ensures that first responders have priority access to reliable data channels, which is vital for maintaining situational awareness during complex emergencies. According to AT&T, January 2025, in the 'Q4 2024 Earnings Report', the FirstNet public safety network supported more than 6.7 million connections serving over 29,500 agencies, reflecting the massive scale of public sector commitment to connected infrastructure. This sustained funding environment has created a robust pipeline for technology providers; according to Motorola Solutions, in October 2025, the company reported a record ending backlog of $14.6 billion, signaling a long-term trajectory of demand for mission-critical ecosystem solutions.

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Key Market Challenges

The growth of the Global Internet of Things for Public Safety market is significantly hindered by persistent vulnerabilities regarding infrastructure resilience and cybersecurity. As agencies integrate increasingly complex networks of connected sensors and automated systems, the attack surface for potential malicious actors widens, creating substantial risks of data breaches and service paralysis. This fragility forces public safety decision-makers to approach IoT adoption with extreme caution, often delaying the modernization of critical systems. The fear that a digital compromise could disable emergency communications or surveillance capabilities during a crisis leads many organizations to defer investment in advanced IoT solutions in favor of legacy, albeit less efficient, technologies.

This apprehension is well-founded, as evidenced by recent industry data indicating a lack of preparedness in the sector. According to the World Economic Forum, in 2025, 38 percent of public sector organizations identified their cyber resilience as inadequate to withstand current digital threats. This significant confidence gap acts as a primary restraint on market expansion, as stakeholders require absolute assurance of operational continuity before committing to the widespread deployment of interconnected safety technologies.

Key Market Trends

The Proliferation of Unmanned Aerial Vehicles and Drones is fundamentally reshaping tactical response strategies by providing autonomous aerial support for law enforcement and emergency teams. Agencies are actively adopting "Drone as First Responder" programs, where remotely operated aircraft are dispatched immediately to emergency calls, arriving ahead of ground personnel to assess threats and provide real-time situational awareness. This capability significantly reduces physical risks to officers during high-stakes incidents such as armed standoffs or active pursuits by providing eyes-on-scene capabilities from a safe distance. According to Skydio, December 2025, in the press release 'Skydio Reaches Deployment in More Than 1,000 Public Safety Agencies', the company's autonomous drone systems are now utilized by over 1,000 public safety agencies across the United States, illustrating the rapid scale at which this technology is becoming a standard operational asset.

The Integration of Artificial Intelligence and Machine Learning is transitioning video surveillance from passive evidence gathering into a proactive threat detection mechanism. Public safety organizations are embedding AI algorithms directly into video management systems to automatically identify weapons, detect anomalous crowds, or recognize vehicles of interest without continuous human monitoring. This shift allows security operations centers to manage the overwhelming volume of video data more effectively, ensuring that critical events trigger immediate alerts rather than going unnoticed. According to Verizon, September 2025, in the 'Frontline 2025 Public Safety Communications Survey', 71% of public safety professionals identified Artificial Intelligence as either a top priority or significantly important for the future of their agency's operations, reflecting a broad industry commitment to intelligent automation.

Segmental Insights

The surveillance segment is recognized as the fastest-growing category within the Global Internet of Things for Public Safety Market due to an increasing focus on real-time threat detection and situational awareness. Government authorities are actively integrating network-connected cameras with analytics software to enhance urban security frameworks and support smart city initiatives. This rapid adoption is primarily driven by the urgent requirement to monitor critical infrastructure and public spaces for criminal activity or emergencies. Consequently, law enforcement agencies are deploying these connected monitoring solutions to improve response coordination and ensure compliance with stringent national security mandates.

Regional Insights

North America maintains a leading position in the Global Internet of Things for Public Safety Market driven by significant government funding for critical infrastructure protection and emergency management. The region benefits from widespread smart city deployments and the robust integration of advanced telecommunication technologies. Additionally, strategic initiatives by entities like the First Responder Network Authority accelerate the adoption of interoperable broadband networks for safety agencies. These factors, combined with a strong focus on improving situational awareness for first responders, create a stable environment for the sustained development of the market across the region.

Recent Developments

  • In June 2025, Verizon Frontline announced a significant expansion in its deployment of advanced network technologies for public safety agencies, including the use of 5G network slicing and autonomous mobile assets. During the first half of the year, the company provided thousands of devices to first responders, utilizing private network solutions and "robot dogs" equipped with sensors to support emergency operations in hazardous environments. This development highlights the growing reliance on the Internet of Things to maintain critical connectivity and gather data during natural disasters, such as hurricanes and wildfires, ensuring that agencies maintain robust communication channels when commercial networks are compromised.
  • In April 2025, Motorola Solutions launched two significant technologies designed to streamline public safety workflows: SVX and Assist. The SVX device functions as a converged communication tool, integrating a two-way radio, a body-worn camera, and a touchscreen into a single unit to reduce the hardware burden on field officers. Complemented by Assist, an artificial intelligence-driven support tool, the system provides real-time intelligence by analyzing data from various sources to offer procedural guidance and automate reporting tasks. This product launch aims to enhance situational awareness and operational efficiency for law enforcement agencies by unifying voice, video, and data capabilities.
  • In October 2024, Axon showcased its expanded ecosystem of AI-powered public safety solutions at the International Association of Chiefs of Police (IACP) conference. The company highlighted the integration of its real-time crime center technology, known as Axon Fusus, which aggregates data from a wide network of connected cameras and sensors to provide officers with a unified operational view. The presentation demonstrated how these interconnected IoT tools, combined with generative AI capabilities, can accelerate incident response times and improve decision-making by delivering actionable intelligence directly to response teams in the field.
  • In March 2024, Hexagon announced a strategic collaboration with RapidSOS to enhance emergency response capabilities for fire and rescue services. This partnership integrated Hexagon's computer-aided dispatch solutions with the RapidSOS intelligent safety platform, allowing for the seamless exchange of critical data between citizens and emergency communications centers. The collaboration focused on improving the speed and accuracy of information flow during life-threatening incidents by leveraging digital alerts and IoT data sources. This initiative was deployed to support public safety agencies in managing complex emergency events more effectively through improved data interoperability.

Key Market Players

  • Cisco Systems, Inc.
  • International Business Machines Corporation
  • Microsoft Corporation
  • Honeywell International Inc.
  • Motorola Solutions, Inc.
  • Siemens AG
  • NEC Corporation
  • Huawei Technologies Co., Ltd.
  • Hitachi, Ltd.
  • Thales Group

By Component

By Application

By Vertical

By Region

  • Platform
  • Solution
  • Services
  • Disaster Management
  • Emergency Communication & Incident Management
  • Critical Infrastructure Security
  • Surveillance & Security
  • Smart Healthcare
  • Smart Manufacturing
  • North America
  • Europe
  • Asia Pacific
  • South America
  • Middle East & Africa

Report Scope:

In this report, the Global Internet of Things for Public Safety Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:

  • Internet of Things for Public Safety Market, By Component:
  • Platform
  • Solution
  • Services
  • Internet of Things for Public Safety Market, By Application:
  • Disaster Management
  • Emergency Communication & Incident Management
  • Critical Infrastructure Security
  • Surveillance & Security
  • Internet of Things for Public Safety Market, By Vertical:
  • Smart Healthcare
  • Smart Manufacturing
  • Internet of Things for Public Safety Market, By Region:
  • North America
    • United States
    • Canada
    • Mexico
  • Europe
    • France
    • United Kingdom
    • Italy
    • Germany
    • Spain
  • Asia Pacific
    • China
    • India
    • Japan
    • Australia
    • South Korea
  • South America
    • Brazil
    • Argentina
    • Colombia
  • Middle East & Africa
    • South Africa
    • Saudi Arabia
    • UAE

Competitive Landscape

Company Profiles: Detailed analysis of the major companies present in the Global Internet of Things for Public Safety Market.

Available Customizations:

Global Internet of Things for Public Safety Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report:

Company Information

  • Detailed analysis and profiling of additional market players (up to five).

Global Internet of Things for Public Safety Market is an upcoming report to be released soon. If you wish an early delivery of this report or want to confirm the date of release, please contact us at [email protected]

Table of content

Table of content

1.    Product Overview

1.1.  Market Definition

1.2.  Scope of the Market

1.2.1.  Markets Covered

1.2.2.  Years Considered for Study

1.2.3.  Key Market Segmentations

2.    Research Methodology

2.1.  Objective of the Study

2.2.  Baseline Methodology

2.3.  Key Industry Partners

2.4.  Major Association and Secondary Sources

2.5.  Forecasting Methodology

2.6.  Data Triangulation & Validation

2.7.  Assumptions and Limitations

3.    Executive Summary

3.1.  Overview of the Market

3.2.  Overview of Key Market Segmentations

3.3.  Overview of Key Market Players

3.4.  Overview of Key Regions/Countries

3.5.  Overview of Market Drivers, Challenges, Trends

4.    Voice of Customer

5.    Global Internet of Things for Public Safety Market Outlook

5.1.  Market Size & Forecast

5.1.1.  By Value

5.2.  Market Share & Forecast

5.2.1.  By Component (Platform, Solution, Services)

5.2.2.  By Application (Disaster Management, Emergency Communication & Incident Management, Critical Infrastructure Security, Surveillance & Security)

5.2.3.  By Vertical (Smart Healthcare, Smart Manufacturing)

5.2.4.  By Region

5.2.5.  By Company (2025)

5.3.  Market Map

6.    North America Internet of Things for Public Safety Market Outlook

6.1.  Market Size & Forecast

6.1.1.  By Value

6.2.  Market Share & Forecast

6.2.1.  By Component

6.2.2.  By Application

6.2.3.  By Vertical

6.2.4.  By Country

6.3.    North America: Country Analysis

6.3.1.    United States Internet of Things for Public Safety Market Outlook

6.3.1.1.  Market Size & Forecast

6.3.1.1.1.  By Value

6.3.1.2.  Market Share & Forecast

6.3.1.2.1.  By Component

6.3.1.2.2.  By Application

6.3.1.2.3.  By Vertical

6.3.2.    Canada Internet of Things for Public Safety Market Outlook

6.3.2.1.  Market Size & Forecast

6.3.2.1.1.  By Value

6.3.2.2.  Market Share & Forecast

6.3.2.2.1.  By Component

6.3.2.2.2.  By Application

6.3.2.2.3.  By Vertical

6.3.3.    Mexico Internet of Things for Public Safety Market Outlook

6.3.3.1.  Market Size & Forecast

6.3.3.1.1.  By Value

6.3.3.2.  Market Share & Forecast

6.3.3.2.1.  By Component

6.3.3.2.2.  By Application

6.3.3.2.3.  By Vertical

7.    Europe Internet of Things for Public Safety Market Outlook

7.1.  Market Size & Forecast

7.1.1.  By Value

7.2.  Market Share & Forecast

7.2.1.  By Component

7.2.2.  By Application

7.2.3.  By Vertical

7.2.4.  By Country

7.3.    Europe: Country Analysis

7.3.1.    Germany Internet of Things for Public Safety Market Outlook

7.3.1.1.  Market Size & Forecast

7.3.1.1.1.  By Value

7.3.1.2.  Market Share & Forecast

7.3.1.2.1.  By Component

7.3.1.2.2.  By Application

7.3.1.2.3.  By Vertical

7.3.2.    France Internet of Things for Public Safety Market Outlook

7.3.2.1.  Market Size & Forecast

7.3.2.1.1.  By Value

7.3.2.2.  Market Share & Forecast

7.3.2.2.1.  By Component

7.3.2.2.2.  By Application

7.3.2.2.3.  By Vertical

7.3.3.    United Kingdom Internet of Things for Public Safety Market Outlook

7.3.3.1.  Market Size & Forecast

7.3.3.1.1.  By Value

7.3.3.2.  Market Share & Forecast

7.3.3.2.1.  By Component

7.3.3.2.2.  By Application

7.3.3.2.3.  By Vertical

7.3.4.    Italy Internet of Things for Public Safety Market Outlook

7.3.4.1.  Market Size & Forecast

7.3.4.1.1.  By Value

7.3.4.2.  Market Share & Forecast

7.3.4.2.1.  By Component

7.3.4.2.2.  By Application

7.3.4.2.3.  By Vertical

7.3.5.    Spain Internet of Things for Public Safety Market Outlook

7.3.5.1.  Market Size & Forecast

7.3.5.1.1.  By Value

7.3.5.2.  Market Share & Forecast

7.3.5.2.1.  By Component

7.3.5.2.2.  By Application

7.3.5.2.3.  By Vertical

8.    Asia Pacific Internet of Things for Public Safety Market Outlook

8.1.  Market Size & Forecast

8.1.1.  By Value

8.2.  Market Share & Forecast

8.2.1.  By Component

8.2.2.  By Application

8.2.3.  By Vertical

8.2.4.  By Country

8.3.    Asia Pacific: Country Analysis

8.3.1.    China Internet of Things for Public Safety Market Outlook

8.3.1.1.  Market Size & Forecast

8.3.1.1.1.  By Value

8.3.1.2.  Market Share & Forecast

8.3.1.2.1.  By Component

8.3.1.2.2.  By Application

8.3.1.2.3.  By Vertical

8.3.2.    India Internet of Things for Public Safety Market Outlook

8.3.2.1.  Market Size & Forecast

8.3.2.1.1.  By Value

8.3.2.2.  Market Share & Forecast

8.3.2.2.1.  By Component

8.3.2.2.2.  By Application

8.3.2.2.3.  By Vertical

8.3.3.    Japan Internet of Things for Public Safety Market Outlook

8.3.3.1.  Market Size & Forecast

8.3.3.1.1.  By Value

8.3.3.2.  Market Share & Forecast

8.3.3.2.1.  By Component

8.3.3.2.2.  By Application

8.3.3.2.3.  By Vertical

8.3.4.    South Korea Internet of Things for Public Safety Market Outlook

8.3.4.1.  Market Size & Forecast

8.3.4.1.1.  By Value

8.3.4.2.  Market Share & Forecast

8.3.4.2.1.  By Component

8.3.4.2.2.  By Application

8.3.4.2.3.  By Vertical

8.3.5.    Australia Internet of Things for Public Safety Market Outlook

8.3.5.1.  Market Size & Forecast

8.3.5.1.1.  By Value

8.3.5.2.  Market Share & Forecast

8.3.5.2.1.  By Component

8.3.5.2.2.  By Application

8.3.5.2.3.  By Vertical

9.    Middle East & Africa Internet of Things for Public Safety Market Outlook

9.1.  Market Size & Forecast

9.1.1.  By Value

9.2.  Market Share & Forecast

9.2.1.  By Component

9.2.2.  By Application

9.2.3.  By Vertical

9.2.4.  By Country

9.3.    Middle East & Africa: Country Analysis

9.3.1.    Saudi Arabia Internet of Things for Public Safety Market Outlook

9.3.1.1.  Market Size & Forecast

9.3.1.1.1.  By Value

9.3.1.2.  Market Share & Forecast

9.3.1.2.1.  By Component

9.3.1.2.2.  By Application

9.3.1.2.3.  By Vertical

9.3.2.    UAE Internet of Things for Public Safety Market Outlook

9.3.2.1.  Market Size & Forecast

9.3.2.1.1.  By Value

9.3.2.2.  Market Share & Forecast

9.3.2.2.1.  By Component

9.3.2.2.2.  By Application

9.3.2.2.3.  By Vertical

9.3.3.    South Africa Internet of Things for Public Safety Market Outlook

9.3.3.1.  Market Size & Forecast

9.3.3.1.1.  By Value

9.3.3.2.  Market Share & Forecast

9.3.3.2.1.  By Component

9.3.3.2.2.  By Application

9.3.3.2.3.  By Vertical

10.    South America Internet of Things for Public Safety Market Outlook

10.1.  Market Size & Forecast

10.1.1.  By Value

10.2.  Market Share & Forecast

10.2.1.  By Component

10.2.2.  By Application

10.2.3.  By Vertical

10.2.4.  By Country

10.3.    South America: Country Analysis

10.3.1.    Brazil Internet of Things for Public Safety Market Outlook

10.3.1.1.  Market Size & Forecast

10.3.1.1.1.  By Value

10.3.1.2.  Market Share & Forecast

10.3.1.2.1.  By Component

10.3.1.2.2.  By Application

10.3.1.2.3.  By Vertical

10.3.2.    Colombia Internet of Things for Public Safety Market Outlook

10.3.2.1.  Market Size & Forecast

10.3.2.1.1.  By Value

10.3.2.2.  Market Share & Forecast

10.3.2.2.1.  By Component

10.3.2.2.2.  By Application

10.3.2.2.3.  By Vertical

10.3.3.    Argentina Internet of Things for Public Safety Market Outlook

10.3.3.1.  Market Size & Forecast

10.3.3.1.1.  By Value

10.3.3.2.  Market Share & Forecast

10.3.3.2.1.  By Component

10.3.3.2.2.  By Application

10.3.3.2.3.  By Vertical

11.    Market Dynamics

11.1.  Drivers

11.2.  Challenges

12.    Market Trends & Developments

12.1.  Merger & Acquisition (If Any)

12.2.  Product Launches (If Any)

12.3.  Recent Developments

13.    Global Internet of Things for Public Safety Market: SWOT Analysis

14.    Porter's Five Forces Analysis

14.1.  Competition in the Industry

14.2.  Potential of New Entrants

14.3.  Power of Suppliers

14.4.  Power of Customers

14.5.  Threat of Substitute Products

15.    Competitive Landscape

15.1.  Cisco Systems, Inc.

15.1.1.  Business Overview

15.1.2.  Products & Services

15.1.3.  Recent Developments

15.1.4.  Key Personnel

15.1.5.  SWOT Analysis

15.2.  International Business Machines Corporation

15.3.  Microsoft Corporation

15.4.  Honeywell International Inc.

15.5.  Motorola Solutions, Inc.

15.6.  Siemens AG

15.7.  NEC Corporation

15.8.  Huawei Technologies Co., Ltd.

15.9.  Hitachi, Ltd.

15.10.  Thales Group

16.    Strategic Recommendations

17.    About Us & Disclaimer

Figures and Tables

Frequently asked questions

Frequently asked questions

The market size of the Global Internet of Things for Public Safety Market was estimated to be USD 3.51 Billion in 2025.

North America is the dominating region in the Global Internet of Things for Public Safety Market.

Surveillance segment is the fastest growing segment in the Global Internet of Things for Public Safety Market.

The Global Internet of Things for Public Safety Market is expected to grow at 15.91% between 2026 to 2031.

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