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Information Technology & Telecommunications

Global Next-Gen V2X Cybersecurity Solutions Market Outlook 2025–2033: Global Trends, Threat Prevention Strategies, and Future Growth Insights

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Uncover future-ready strategies in the Global V2X Cybersecurity Market 2025–2033. Growth insights, trends, and security evolution revealed.

SKU: 41    Pages: 500   Format: PDF   Delivery: Upto 24 to 48 hrs

Introduction

  • Rapid Growth Trajectory: The global V2X (Vehicle-to-Everything) cybersecurity market is on track to surge from USD 2.75 billion in 2024 to an estimated USD 8.10 billion by 2030, reflecting a strong CAGR of approximately 19.3% from 2025 onward. 
  • Connected Mobility Driving Demand: As smart transportation ecosystems expand globally, the rising adoption of connected vehicles and intelligent traffic systems is significantly increasing the demand for robust V2X cybersecurity solutions to ensure data integrity and traffic safety.
  • Focus on Threat Prevention and Smart Infrastructure: Government initiatives, along with private sector investments in digital mobility and intelligent infrastructure, are propelling the need for advanced security frameworks to combat evolving cyber threats targeting automotive networks and V2X communications.

GE-McKinsey Matrix

Industry Attractiveness

  • High Market Growth Rate: The V2X cybersecurity market is projected to grow at a robust CAGR of nearly 19.3% from 2025 to 2030, indicating strong industry potential.
  • Strategic Importance in Smart Mobility: Increasing adoption of connected and autonomous vehicles makes V2X security essential to future transportation systems.
  • Government and Regulatory Support: Rising global mandates for vehicle safety and cybersecurity frameworks enhance the sector’s policy-driven attractiveness.
  • Growing Investment Landscape: Significant funding from both public and private sectors in smart infrastructure and connected vehicle R&D is fueling rapid industry expansion.
  • High Technological Innovation: Advancements in 5G, AI-based threat detection, and edge computing increase opportunities for differentiation and market penetration.

Business Unit Strength

  • Strong Technical Capabilities: Leading players are investing in advanced encryption, intrusion detection systems, and cloud-native security architectures tailored for V2X ecosystems.
  • Scalable Product Portfolios: Top-tier vendors offer modular cybersecurity solutions adaptable to OEM, aftermarket, and infrastructure applications.
  • Strategic Partnerships and Alliances: Collaborations between automotive OEMs, telecom providers, and cybersecurity firms are strengthening market positioning.
  • Geographic Reach and Distribution: Major vendors operate globally, ensuring better market access, regulatory alignment, and customer support.
  • Brand Recognition and Trust: Established cybersecurity brands with proven track records gain higher credibility in the safety-critical automotive domain.

Market Segmentation: Global V2X Cybersecurity Market

By Type

  • Hardware Security Modules (HSM)
  • Software Security Solutions
  • Embedded Security
  • Network Security
  • Cloud Security
  • End-to-End Encryption

By Communication Type

  • Vehicle-to-Vehicle (V2V)
  • Vehicle-to-Infrastructure (V2I)
  • Vehicle-to-Pedestrian (V2P)
  • Vehicle-to-Cloud (V2C)
  • Vehicle-to-Device (V2D)

By Security Type

  • Application Security
  • Network Security
  • Data Security
  • Endpoint Security

By Deployment Mode

  • On-Premise
  • Cloud-Based

By Application

  • Passenger Vehicles
  • Commercial Vehicles
  • Emergency Vehicles
  • Autonomous Vehicles

By End User

  • Automotive OEMs
  • Tier 1 Suppliers
  • Government & Public Sector
  • Smart Infrastructure Providers
  • Fleet Operators

Regional Segmentation: Global V2X Cybersecurity Market

North America

  • United States
  • Canada
  • Mexico

Europe

  • Germany
  • United Kingdom
  • France
  • Italy
  • Spain
  • Rest of Europe

Asia-Pacific

  • China
  • Japan
  • South Korea
  • India
  • Australia
  • Rest of Asia-Pacific

Latin America

  • Brazil
  • Argentina
  • Rest of Latin America

Middle East & Africa

  • GCC Countries
  • South Africa
  • Rest of Middle East & Africa

Key Players: Global V2X Cybersecurity Market

Table of Contents (TOC)

1. Executive Summary

2. Research Methodology

3. Market Overview
 3.1. Introduction to V2X Cybersecurity
 3.2. Market Dynamics
  3.2.1. Drivers
  3.2.2. Restraints
  3.2.3. Opportunities
  3.2.4. Challenges
 3.3. Value Chain Analysis
 3.4. Regulatory Framework
 3.5. Porter’s Five Forces Analysis
 3.6. Impact of Emerging Technologies (5G, AI, Edge Computing)

4. Market Size and Forecast (2024–2030)
 4.1. Global Market Value (USD Billion)
 4.2. Market Share Analysis by Segment
 4.3. Forecast Assumptions

5. Market Segmentation Analysis
 5.1. By Type
  5.1.1. Hardware Security Modules (HSM)
  5.1.2. Software Security Solutions
  5.1.3. Embedded Security
  5.1.4. Network Security
  5.1.5. Cloud Security
  5.1.6. End-to-End Encryption

 5.2. By Communication Type
  5.2.1. Vehicle-to-Vehicle (V2V)
  5.2.2. Vehicle-to-Infrastructure (V2I)
  5.2.3. Vehicle-to-Pedestrian (V2P)
  5.2.4. Vehicle-to-Cloud (V2C)
  5.2.5. Vehicle-to-Device (V2D)

 5.3. By Security Type
  5.3.1. Application Security
  5.3.2. Network Security
  5.3.3. Data Security
  5.3.4. Endpoint Security

 5.4. By Deployment Mode
  5.4.1. On-Premise
  5.4.2. Cloud-Based

 5.5. By Application
  5.5.1. Passenger Vehicles
  5.5.2. Commercial Vehicles
  5.5.3. Emergency Vehicles
  5.5.4. Autonomous Vehicles

 5.6. By End User
  5.6.1. Automotive OEMs
  5.6.2. Tier 1 Suppliers
  5.6.3. Government & Public Sector
  5.6.4. Smart Infrastructure Providers
  5.6.5. Fleet Operators

6. Regional Analysis
 6.1. North America
  6.1.1. United States
  6.1.2. Canada
  6.1.3. Mexico

 6.2. Europe
  6.2.1. Germany
  6.2.2. United Kingdom
  6.2.3. France
  6.2.4. Italy
  6.2.5. Spain
  6.2.6. Rest of Europe

 6.3. Asia-Pacific
  6.3.1. China
  6.3.2. Japan
  6.3.3. South Korea
  6.3.4. India
  6.3.5. Australia
  6.3.6. Rest of Asia-Pacific

 6.4. Latin America
  6.4.1. Brazil
  6.4.2. Argentina
  6.4.3. Rest of Latin America

 6.5. Middle East & Africa
  6.5.1. GCC Countries
  6.5.2. South Africa
  6.5.3. Rest of Middle East & Africa

7. Competitive Landscape
 7.1. Market Share Analysis
 7.2. Competitive Benchmarking
 7.3. Company Profiles
  7.3.1. Harman International (Samsung)
  7.3.2. Qualcomm Technologies Inc.
  7.3.3. Autotalks Ltd.
  7.3.4. Continental AG
  7.3.5. Infineon Technologies AG
  7.3.6. NXP Semiconductors N.V.
  7.3.7. ESCRYPT GmbH (Bosch Group)
  7.3.8. Denso Corporation
  7.3.9. Cisco Systems, Inc.
  7.3.10. Honeywell International Inc.
  7.3.11. Argus Cyber Security Ltd.
  7.3.12. Karamba Security
  7.3.13. Trillium Secure Inc.
  7.3.14. Green Hills Software
  7.3.15. ID Quantique

8. Strategic Recommendations

9. Appendix
 9.1. Glossary of Terms
 9.2. List of Abbreviations
 9.3. Research Methodology Details
 9.4. Data Sources
 9.5. Disclaimer

Market Segmentation: Global V2X Cybersecurity Market

By Type

  • Hardware Security Modules (HSM)
  • Software Security Solutions
  • Embedded Security
  • Network Security
  • Cloud Security
  • End-to-End Encryption

By Communication Type

  • Vehicle-to-Vehicle (V2V)
  • Vehicle-to-Infrastructure (V2I)
  • Vehicle-to-Pedestrian (V2P)
  • Vehicle-to-Cloud (V2C)
  • Vehicle-to-Device (V2D)

By Security Type

  • Application Security
  • Network Security
  • Data Security
  • Endpoint Security

By Deployment Mode

  • On-Premise
  • Cloud-Based

By Application

  • Passenger Vehicles
  • Commercial Vehicles
  • Emergency Vehicles
  • Autonomous Vehicles

By End User

  • Automotive OEMs
  • Tier 1 Suppliers
  • Government & Public Sector
  • Smart Infrastructure Providers
  • Fleet Operators

Regional Segmentation: Global V2X Cybersecurity Market

North America

  • United States
  • Canada
  • Mexico

Europe

  • Germany
  • United Kingdom
  • France
  • Italy
  • Spain
  • Rest of Europe

Asia-Pacific

  • China
  • Japan
  • South Korea
  • India
  • Australia
  • Rest of Asia-Pacific

Latin America

  • Brazil
  • Argentina
  • Rest of Latin America

Middle East & Africa

  • GCC Countries
  • South Africa
  • Rest of Middle East & Africa

Key Players: Global V2X Cybersecurity Market

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Frequently Asked Questions

Frequently Asked Questions

Why is V2X cybersecurity becoming a critical priority in today’s connected mobility landscape?

As vehicles evolve into data-driven, connected platforms, they face increasing exposure to cyber threats. V2X cybersecurity ensures secure communication between vehicles, infrastructure, and cloud systems—protecting public safety, data privacy, and transportation continuity in real time.

What are the key drivers behind the rapid growth of the global V2X cybersecurity market?

The market is accelerating due to the rise of autonomous and connected vehicles, stricter global cybersecurity mandates, and increased investment in smart transportation infrastructure. Together, these factors are making V2X cybersecurity foundational to the future of intelligent mobility.

How are automotive OEMs and Tier 1 suppliers integrating V2X cybersecurity into their ecosystems?

Leading OEMs and suppliers are embedding cybersecurity features directly into ECUs, adopting hardware security modules, and deploying over-the-air (OTA) security updates—all aimed at building resilient vehicle networks that can detect, prevent, and respond to evolving cyber threats.

Which regions are leading the charge in V2X cybersecurity implementation and why?

North America and Europe are currently at the forefront due to early 5G adoption, active regulatory enforcement, and smart city initiatives. Meanwhile, Asia-Pacific is emerging rapidly, fueled by high-volume vehicle production and government-backed intelligent transportation programs.

How does V2X cybersecurity differ from traditional automotive security?

Unlike traditional vehicle security, which focuses on internal systems, V2X cybersecurity protects the broader communication network between vehicles, infrastructure, and cloud platforms. It involves securing real-time, bidirectional data flows across open, wireless channels—making it far more complex and essential for modern mobility.