The India Road Safety Market was valued at $130.3 Million in 2025 and projected to reach to $319.6 Million by 2030, representing a compound annual growth rate of 19.7%. India's road safety market is poised for transformative growth, with the market expanding from USD 130.3 million in 2025 to USD 319.6 million by 2030.
| Market Size in | USD 26.32 MN |
| Market Forecast in | |
| CAGR | |
| Forecast Period | |
| Units Considered | Value (USD MN) |
India's road safety market is expanding at 19.7% CAGR, significantly outpacing the global rate of 13.1%, driven by rapid motorization and government safety mandates across the nation.
Stringent Indian vehicle safety standards and mandatory advanced driver assistance systems (ADAS) implementation are accelerating adoption of road safety technologies among manufacturers and fleet operators.
India's expanding middle class and increasing vehicle ownership rates are creating substantial demand for safety solutions, from connected vehicle technologies to intelligent traffic management systems.
Government initiatives like Smart Cities Mission and National Highway Authority investments in IoT and AI-based road monitoring are catalyzing market growth and creating new opportunities for safety technology providers.
| COMPANY | USE CASE DESCRIPTION | BENEFITS |
|---|---|---|
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Victoria Police deployed JENOPTIK’s mobile distracted-driving enforcement solution to detect mobile-phone use and seatbelt violations using camera-based technology and AI analytics. The system supports automated identification of unsafe driver behavior and evidence generation for enforcement. | Improved detection of distracted driving and seatbelt violations, more efficient enforcement, and enhanced road-user safety through automated evidence collection and analytics. |
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Kapsch TrafficCom, together with SCAIL, is deploying India’s first C-ITS project on a highway near New Delhi. The system provides connected-vehicle warnings for roadworks, maintenance vehicles, hazardous locations, traffic queues, and temporary virtual signage using real-time connectivity and AI-based situational awareness. | Earlier warnings of road hazards, improved work-zone safety, faster driver response, and enhanced protection of road users through connected infrastructure. |
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Sensys Gatso provides automated traffic enforcement as a managed service, combining speed, red-light, school-zone, and work-zone enforcement with hardware, software, data, analytics, and citation processing. Municipal and government authorities have deployed its solutions to improve traffic safety and driver compliance. | Higher enforcement coverage, improved compliance with speed limits, reduced risky driving behavior, and lower operational burden for public authorities through managed enforcement services. |
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Verra Mobility manages automated speed and red-light enforcement programs for government and transportation agencies. In Hawaii, the company expanded its program under a 10-year contract to 187 dual-enforcement cameras across major islands, following reported reductions in red-light violations and crashes at existing sites. | Improved traffic-law compliance, reduced dangerous driving, expanded automated enforcement coverage, and enhanced safety at high-risk intersections and roadways. |
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Teledyne FLIR thermal cameras are used for pedestrian detection and automatic emergency braking applications, particularly in darkness, glare, fog, and other challenging visibility conditions. Their thermal sensing technology can complement radar and visible cameras to improve vulnerable road user detection. | Improved nighttime and adverse-weather pedestrian detection, earlier AEB response, enhanced vulnerable-road-user protection, and reduced limitations of conventional vision sensors. |
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| Report Metric | Details |
|---|---|
| Base Year | 2025 |
| Fastest Growing Segment | MANAGED SERVICES (Service) |
| Forecast Period | 2025–2030 |
| Growth Rate | CAGR of 13.1% from 2025 to 2030 |
| Largest Segment | ROADWAY (Transportation Mode) |
| Market Size Base Year (Billions) | ~USD 6.7 (2025) |
| Revenue Forecast (Billions) | ~USD 12.39 (2030) |
| Segments Covered | Offering, Solution, Solution Type, Component, Service, Type, Deployment Model, Enforcement Type, Data Type, Professional Service, Managed Service, Application, End User, Area Of Application, Transportation Mode |
15 segment dimensions are covered across the global market.
| Company | HQ | Ownership | Strongest segments |
|---|---|---|---|
| BLUJAY SOLUTIONS | United Kingdom | Private Company | Transportation & Fleet Management (incl. MobileSTAR),Control Tower, BluIQ Analytics & Actionable Intelligence,Customs, Compliance & Augmented Global Trade, |
| JABIL | United States | Public Company | Sensors and Cameras Hardware,Traffic Control and Smart Signals Platforms,RSUs and Connectivity Modules, |
| THE 3M COMPANY | United States | Public Company | Traffic Control (signage, markings, work-zone materials),Sensors, RSUs, Smart Signals (hardware adjacencies),Cameras, ANPR, ALPR, Enforcement, |
| DHC SOFTWARE CO., LTD. | United States | Public Company | Traffic Control & Smart Signals,ANPR/ALPR & Enforcement,Incident Response & Emergency Management, |
| ZENSAR TECHNOLOGIES LTD | India | Public Company | AI, ML, Analytics,Incident Response & Violation Management Platforms,Traffic Control & Smart Signals Integration, |
| JENOPTIK | Germany | Public Company | Speed and Red-Light Enforcement Systems,ANPR/ALPR and Data Analysis Software,Traffic Control, Smart Signals, and RSUs, |
| KAPSCH TRAFFICCOM | Austria | Public Company | Traffic Control & Smart Signals,ANPR/ALPR & Cameras,Incident Response, RSUs & Sensors, |
| SENSYS GATSO GROUP | Sweden | Public Company | Traffic Control & Enforcement (speed, red-light, section control, school zones),ANPR/ALPR & Vehicle Access Control,Back-office Software (Flux, Puls, Xilium) & Analytics (AI/ML), |
| VERRA MOBILITY | United States | Public Company | Enforcement (speed, red-light, school bus, bus lane),Violation Management, ANPR/ALPR Analytics,Parking & Work Zone Safety Solutions, |
| TELEDYNE FLIR | United States | Private Company | Traffic Control & Smart Signals,Enforcement (ANPR/ALPR & Violation Management),Incident Response & Work Zone Safety, |
| MOTOROLA SOLUTIONS | United States | Public Company | Cameras & Sensors (fixed/mobile, including in-vehicle video),AI/ML & Video/ALPR Analytics,Incident Response & Command Center Software, |
| IDEMIA | France | Private Company | ANPR/ALPR & Enforcement Platforms,AI/ML Analytics & Incident Response,Cameras & Sensors (via partners/OEM bundles), |
| SIEMENS | Germany | Public Company | Traffic Control & Smart Signals,Enforcement, ANPR & ALPR,Sensors, Cameras, RSUs, |
| CONDUENT | United States | Public Company | Enforcement & Violation Management (incl. ANPR/ALPR-enabled back office),Traffic Control & Smart Signals (software, analytics, integration),Incident Response & Work Zone Safety Solutions, |
| CUBIC CORPORATION | United States | Private Company | Traffic Control & Smart Signals,Cameras, Sensors, RSUs,ANPR/ALPR & Enforcement, |
| DAHUA TECHNOLOGY | China | Public Company | Cameras (fixed, PT/PTZ, thermal, explosion-proof),ANPR/ALPR and Enforcement Solutions,Traffic Control, Smart Signals, RSUs, and Sensors, |
| LASER TECHNOLOGIES | United States | Private Company | Enforcement (laser speed and distance devices),Traffic Control & Incident Response (range-based measurement tools),Software (data collection and reporting), |
Blujay Solutions is a UK-based private company founded in 1972 with 600 employees. The company specializes in supply chain and logistics software solutions.
Jabil is a US-based public company founded in 1966 with 135,000 employees. The company provides electronics manufacturing services and supply chain solutions globally.
The 3M Company is a US-based public company founded in 1902 with 60,500 employees. It is a diversified technology and manufacturing conglomerate known for innovative products across multiple industries.
DHC Software Co., Ltd. is a US-based public company founded in 2001 with 10,757 employees. The company develops and provides software solutions for enterprise applications.
Zensar Technologies Ltd is an India-based public company founded in 1963 with 10,066 employees. It offers IT services, digital transformation, and software development solutions.
Jenoptik is a Germany-based public company founded in 1846 with 4,020 employees. The company specializes in optics, photonics, and industrial technology solutions.
Kapsch TrafficCom is an Austria-based public company founded in 1892 with 3,041 employees. It develops intelligent transportation systems and traffic management solutions.
Sensys Gatso Group is a Sweden-based public company founded in 1958 with 268 employees. The company manufactures traffic safety and enforcement systems.
Verra Mobility is a US-based public company founded in 1987 with 1,895 employees. It provides mobility and enforcement solutions for traffic and parking management.
Teledyne FLIR is a US-based private company founded in 1978 with 4,179 employees. The company specializes in thermal imaging and infrared technology solutions.
Motorola Solutions is a US-based public company founded in 1928 with 23,000 employees. It provides communications, software, and services for enterprise and government customers.
IDEMIA is a France-based private company founded in 1987 with 6,800 employees. The company specializes in identity and security solutions including biometrics and digital services.
Siemens is a Germany-based public company founded in 1847 with 310,312 employees. It is a global conglomerate providing electrification, automation, and digitalization solutions across multiple sectors.
Conduent is a US-based public company founded in 2016 with 48,000 employees. It provides business process services and digital transformation solutions for government and commercial clients.
Cubic Corporation is a US-based private company founded in 1951 with 6,100 employees. The company develops transportation systems, defense electronics, and software solutions.
Dahua Technology is a China-based public company founded in 2002 with 22,131 employees. It manufactures and provides video surveillance, security, and smart technology solutions.
Laser Technologies is a US-based private company founded in 1985 with 78 employees. The company specializes in laser-based technology and precision measurement solutions.
India's road safety market was valued at USD 130.3 million in 2025 and is expected to grow to USD 319.6 million by 2030.
India's road safety market is projected to grow at a compound annual growth rate (CAGR) of 19.7% from 2025 to 2030.
Key drivers include rising vehicle ownership, government regulatory initiatives, digital transformation adoption, and increased awareness of road safety technologies in India.
Advanced driver assistance systems (ADAS), telematics, connected vehicle technologies, and intelligent transportation systems are primary growth drivers in India's market.
India's 19.7% CAGR significantly exceeds the global road safety market CAGR of 13.1%, positioning India as a high-growth region.
The research study for the road safety market involved extensive secondary sources, directories, journals, and paid databases. Primary sources included industry experts from core and related industries, preferred road safety providers, third-party service providers, consulting service providers, end users, and other commercial enterprises. In-depth interviews with primary respondents, including key industry participants and subject matter experts, were conducted to obtain and verify critical qualitative and quantitative information and assess the market’s prospects.
In the secondary research process, the study referred to various authoritative and industry sources to identify and collect information. The secondary sources included annual reports; investor presentations; company press releases; product documentation; technical specifications; government publications; regulatory documents; transportation and road-safety databases; procurement and tender documents; and certified publications and standards related to road safety, intelligent transportation systems, traffic enforcement, connected vehicles, and road infrastructure. Relevant information was also collected from organizations and institutions such as the World Health Organization (WHO), United Nations Economic Commission for Europe (UNECE), United Nations Road Safety Collaboration (UNRSC), World Bank, International Transport Forum (ITF), International Organization for Standardization (ISO), International Telecommunication Union (ITU), Institute of Transportation Engineers (ITE), Intelligent Transportation Society of America (ITS America), European Commission, European Road Safety Observatory (ERSO), Federal Highway Administration (FHWA), National Highway Traffic Safety Administration (NHTSA), US Department of Transportation (USDOT), and European Transport Safety Council (ETSC). Government and regulatory sources from major countries and regions were also reviewed, including the US Department of Transportation, Transport Canada, the European Union and national transport ministries, the UK Department for Transport, India's Ministry of Road Transport and Highways (MoRTH), and relevant state and municipal transportation authorities. Technical standards and guidance related to automated enforcement, intelligent transportation systems, connected and cooperative mobility, V2X communication, vulnerable road users, traffic-control systems, road infrastructure, vehicle safety, and data management were also considered, including standards and publications from ISO, SAE International, IEEE, ETSI, and other recognized transportation and technology organizations. The analysis also reviewed company-level information from leading road-safety technology providers to assess product portfolios, product launches, partnerships, contracts, deployments, technology developments, geographic presence, and competitive strategies.
Secondary research was used to gather key information on the industry’s value chain, the market’s monetary chain, the overall pool of key players, market classification and segmentation aligned with industry trends to the bottom-most level, regional markets, and key developments from market- and technology-oriented perspectives.
Primary research for the road safety market was conducted with a diverse set of stakeholders across the supply and demand sides of the market to validate market assumptions, technology adoption trends, pricing structures, purchasing criteria, and competitive dynamics. Interviews were targeted toward company executives, technology and innovation leaders, system integrators, road-safety solution providers, enforcement technology vendors, highway and transportation authorities, law-enforcement agencies, and other industry experts. The discussions focused on the adoption of automated enforcement, ANPR/ALPR, AI-based video analytics, incident detection, traffic monitoring, connected road infrastructure, pedestrian and VRU protection, and road-safety services.
The primary research process was designed to understand how road-safety technologies are evaluated, purchased, deployed, and operated across different end-user groups. Discussions with government and municipal stakeholders, highway authorities, and law-enforcement agencies provided insights into procurement processes, regulatory requirements, deployment priorities, system integration requirements, and operational challenges. Industry participants provided perspectives on technology roadmaps, product development, competitive positioning, pricing structures, contract models, recurring service opportunities, and the transition from standalone enforcement equipment toward integrated road-safety platforms.
Primary interviews also examined the key demand drivers and adoption barriers influencing the market. Stakeholders highlighted factors such as increasing road fatalities, government road-safety initiatives, stricter traffic enforcement, smart-city investments, expansion of intelligent transportation systems, and the growing availability of AI-enabled sensing and analytics. Discussions also assessed implementation challenges, including infrastructure readiness, interoperability with legacy systems, data privacy and security, regulatory approvals, public acceptance, budget constraints, system maintenance, and the availability of skilled personnel. Stakeholder research on automated enforcement similarly indicates that public acceptance, perceived legitimacy, and evidence of safety benefits can influence deployment decisions.
The research further evaluated technology-specific adoption and commercial use cases across automated speed enforcement, red-light enforcement, ANPR/ALPR, AI-powered violation detection, driver behavior monitoring, incident detection and response, smart traffic signals, road-weather monitoring, connected intersections, V2X communication, and VRU protection. Interviews assessed the maturity of these technologies, current commercial deployments, expected adoption timelines, and the extent to which AI, computer vision, edge computing, IoT sensors, and connected infrastructure are changing conventional road-safety operations. Evidence from recent research on AI-powered enforcement also indicates growing deployment of automated systems for real-time violation detection and their potential influence on driver behavior and traffic safety.
The findings from primary research were subsequently triangulated with secondary research, company disclosures, government publications, regulatory documents, industry standards, procurement information, and other authoritative sources. Primary interview inputs were used to validate market segmentation, estimate technology and solution adoption, assess vendor positioning, identify emerging applications, and refine assumptions about market growth and demand potential. The research also supported the bottom-up assessment of market opportunities by evaluating the typical composition of hardware, software, services, and managed-service contracts across different road-safety applications and end users. This combined approach helped ensure that the final market estimates and forecasts reflect both quantitative market indicators and qualitative insights from participants directly involved in the road-safety ecosystem.
Breakdown of Primary Research

Note: Three tiers of companies are defined based on their total revenue for the year ended 31st December 2025; Tier 1 companies’ revenue is more than USD 500 million; Tier 2 companies' revenue ranges between USD 500 million and 100 million; and Tier 3 companies’ revenue is less than USD 100 million
Source: MarketsandMarkets Analysis
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The top-down and bottom-up approaches were used to estimate and forecast the road safety market and its dependent submarkets. This multi-layered analysis was further reinforced through data triangulation, which incorporated primary and secondary research inputs. The market figures were also validated against the existing MarketsandMarkets repository for accuracy.

The market was divided into several segments and subsegments after determining the overall market size using the market size estimation processes described above. To complete the overall market engineering process and determine the exact statistics for each market segment and subsegment, data triangulation and market segmentation procedures were employed, wherever applicable. The overall market size was then used in the top-down approach to estimate the size of other individual markets by applying percentage splits to the market segmentation.
The road safety market comprises technologies, solutions, and services designed to prevent road crashes, detect unsafe driving and road conditions, and improve the safety of vehicles and road users. It includes automated enforcement, ANPR/ALPR, incident detection, traffic monitoring, intelligent sensing, pedestrian and vulnerable road-user protection, and connected road-safety systems. The market also covers AI-enabled analytics, V2X applications, safety-specific traffic infrastructure, and related managed and professional services. It excludes general traffic management, mobility, tolling, and transportation solutions where road safety is not the primary purchased function.
Position sensors play a crucial role across automotive and electric vehicles, manufacturing and industrial automation, robotics, aerospace & defense, healthcare equipment, packaging machinery, and consumer electronics. These solutions enable precise motion measurement, position feedback, equipment control, automation, and safety functions. Position sensors are commonly integrated into steering and braking systems, actuators, motors, machine tools, robotic systems, material-handling equipment, and automated production lines. A typical position-sensing system may consist of a sensing element, signal-conditioning or processing circuitry, output interface, and associated control electronics, with its configuration varying according to the sensing technology, measurement range, accuracy requirements, application, and operating environment.
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