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Redundant EPS System Market to Reach USD 4.23 Billion by 2034

08-04-2025 01:50 PM CET | Business, Economy, Finances, Banking & Insurance

Press release from: Exactitude Consultancy

Redundant EPS System

Redundant EPS System

In the era of connected, autonomous, and electric vehicles, ensuring safety, reliability, and seamless control is non-negotiable. Redundant Electric Power Steering (EPS) systems have emerged as a pivotal advancement in this regard, offering fail-operational steering capabilities even if one system fails. These systems are especially crucial for Level 3 and above autonomous driving vehicles, where human intervention is minimal or absent.

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According to Exactitude Consultancy, the global redundant EPS system market is projected to grow from USD 1.65 billion in 2024 to USD 4.23 billion by 2034, expanding at a CAGR of 9.8% over the forecast period. The rising adoption of advanced driver-assistance systems (ADAS), safety regulations, and the evolution of autonomous vehicles are accelerating demand across automotive OEMs globally.

Market Overview
• Market Size (2024): USD 1.65 Billion
• Forecasted Market Size (2034): USD 4.23 Billion
• CAGR (2024-2034): 9.8%

Key Growth Drivers:
• Rising demand for fail-operational safety systems in autonomous and electric vehicles
• Increasing deployment of Level 2+ to Level 4 autonomous driving capabilities
• Stringent automotive safety standards (UNECE WP.29, Euro NCAP, etc.)
• OEM focus on redundancy architecture for drive-by-wire and steer-by-wire systems
• Growth of ADAS, lane keep assist, and automatic emergency steering functions

Key Challenges:
• High development and integration costs of dual-path EPS systems
• Complex testing, validation, and certification requirements
• Supply chain constraints for advanced ECUs, sensors, and actuators
• Need for specialized repair and maintenance expertise

Key Market Participants:
• Robert Bosch GmbH
• Nexteer Automotive
• ZF Friedrichshafen AG
• JTEKT Corporation
• NSK Ltd.
• Hyundai Mobis
• Mando Corporation
• Showa Corporation (Hitachi Astemo)
• Continental AG
• ThyssenKrupp Presta AG

Segmentation Analysis
By Type:
• Column Assist EPS (C-EPS)
• Pinion Assist EPS (P-EPS)
• Rack Assist EPS (R-EPS)
• Dual Pinion EPS (DP-EPS)

By Redundancy Level:
• Hardware Redundancy
• Software Redundancy
• Power Supply Redundancy
• Sensor Redundancy

By Vehicle Type:
• Passenger Cars
• Light Commercial Vehicles (LCVs)
• Heavy Commercial Vehicles (HCVs)
• Autonomous Vehicles (Level 3 and above)

By End User:
• OEMs
• Tier 1 Suppliers
• Aftermarket

Segmentation Summary:
Rack Assist (R-EPS) and Dual Pinion (DP-EPS) configurations lead the market due to their compatibility with mid-to-large size vehicles and their superior response characteristics. The passenger car segment dominates, particularly with the integration of Level 2+ and Level 3 automation. OEMs are increasingly adopting multi-layer redundancy (hardware, software, and power) to align with upcoming safety mandates.

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Regional Analysis
North America
• Strong presence of autonomous vehicle R&D centers in the U.S. and Canada
• Government focus on road safety and testing standards for autonomous fleets
• Tesla, GM (Cruise), and Ford investing in redundant control systems
• Growing deployment in commercial delivery and ride-hailing AVs
Europe
• Regulatory leadership in ADAS and fail-safe automotive architectures (e.g., UNECE WP.29)
• Germany, France, and the UK are spearheading automotive innovation hubs
• Stringent Euro NCAP scoring linked to steering redundancy for high safety ratings
Asia-Pacific
• Fastest-growing region, driven by China, Japan, and South Korea
• Local OEMs (Hyundai, Toyota, BYD, NIO) adopting steer-by-wire with redundancy for electric and autonomous fleets
• Rapid EV adoption and supportive government policies
• Integration of AI and high-performance ECUs in high-volume vehicle platforms
Middle East & Africa
• Early-stage adoption with opportunities in luxury fleets and future smart city deployments
• Dubai and Saudi Arabia exploring autonomous public transport with redundant safety systems
Latin America
• Gradual growth due to increasing demand for safer vehicles
• Limited infrastructure and high system cost hinder large-scale adoption
• Brazil and Mexico show potential via exports and regional production hubs

Regional Summary:
Asia-Pacific and Europe lead in implementation, with North America being a hotbed of technological R&D. Growth in emerging regions will rely on cost optimization and regulatory alignment, especially in shared mobility, public transport, and autonomous logistics.

Market Dynamics
Key Growth Drivers:
• Fail-Operational Steering Requirements: Autonomous vehicles require redundant steering to safely complete driving maneuvers even in case of a subsystem failure.
• ADAS Integration: Features like lane centering, auto parking, and evasive steering demand reliable, fail-safe EPS systems.
• OEM Shift Toward Software-Defined Vehicles (SDVs): Redundant EPS complements centralized domain controller architectures, offering flexible and secure control paths.
• Legislative Momentum: International bodies are now mandating higher levels of functional safety (ISO 26262 ASIL-D compliance).
• Electric Vehicle Boom: EVs offer platform flexibility, making it easier to integrate next-gen EPS systems.

Challenges:
• High System Cost: Redundant EPS systems include dual motors, controllers, power paths, and sensors - significantly raising BOM (bill of materials) costs.
• Complex Development Cycle: Integrating multi-redundant components with ASIL-D certification requires extensive simulation, testing, and validation.
• Data and Cybersecurity Risks: EPS redundancy systems, often cloud-connected or software-driven, need robust cybersecurity protocols.
• Lack of Standardization: OEMs and suppliers still follow fragmented development architectures for redundancy implementation.

Emerging Trends:
• Steer-by-Wire Architecture: Electronic control without mechanical linkage is enabling modular, redundant EPS designs.
• AI-Based Fault Detection: Machine learning models identify EPS faults and reroute control in milliseconds.
• Cloud-Connected EPS Diagnostics: Remote monitoring of redundancy system health in fleet and autonomous vehicles.
• Redundancy-as-a-Service (RaaS): OEMs collaborating with Tier 1s to offer modular redundancy stacks for SDVs.
• Integrated Redundancy for All Drive-By-Wire Systems: Combining steering, braking, and acceleration fail-safes under one centralized control unit.

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Competitor Landscape
Key Players and Their Strategic Focus:
1. Robert Bosch GmbH - Leading in redundant EPS solutions with hardware/software fail-safe integration for autonomous platforms.
2. ZF Friedrichshafen AG - Offering steer-by-wire EPS with multiple redundancy layers, targeting EV and AV platforms.
3. Nexteer Automotive - Specializes in high-performance column and rack EPS systems with scalable redundancy.
4. JTEKT Corporation - Key provider of electric steering systems for Japanese OEMs; investing in dual-motor EPS.
5. NSK Ltd. - Developing compact redundant EPS for compact EVs and urban mobility platforms.
6. Hyundai Mobis - Integrated redundancy modules under development for future Hyundai/Kia autonomous cars.
7. Mando Corporation - South Korea-based innovator in fail-operational EPS with strategic alliances.
8. Showa Corporation (Hitachi Astemo) - Focused on high-torque EPS with redundant control paths for heavy vehicles.
9. Continental AG - Offers software-defined EPS with high safety certification and AI-based diagnostics.
10. ThyssenKrupp Presta AG - Collaborating with OEMs for bespoke EPS systems for luxury autonomous models.

Competitive Summary:
The market is moderately consolidated, with a strong presence of Tier 1 suppliers who offer full-stack solutions from mechanical systems to software control. Partnerships with OEMs, focus on ASIL-D compliance, and capability to scale across vehicle classes are key competitive advantages.

Conclusion: Steering Safely into the Autonomous Era
The Redundant EPS System Market represents a critical enabler of tomorrow's self-driving, electrified mobility landscape. As vehicles increasingly rely on electronic controls, the need for fail-operational systems to ensure safety and regulatory compliance will grow exponentially.

Key Takeaways:
• Market projected to grow at a CAGR of 9.8%, reaching USD 4.23 billion by 2034
• Demand driven by autonomous driving, ADAS, and ISO 26262-compliant safety architectures
• Asia-Pacific and Europe lead adoption, with North America as a key technology hub
• Integration with steer-by-wire, AI diagnostics, and cloud-based EPS management are emerging frontiers

Opportunities Ahead:
• OEMs: Embed scalable redundancy in EV/AV architectures
• Suppliers: Develop modular, software-integrated EPS solutions
• Tech Firms: Support predictive analytics, cybersecurity, and remote diagnostics for redundant systems
• Policymakers: Standardize safety protocols for autonomous vehicle steering safety
As driving becomes increasingly autonomous, redundant EPS systems will move from luxury to necessity - ensuring safety remains central in our mobility future.

This report is also available in the following languages : Japanese (冗長EPSシステム市場), Korean (이중화 EPS 시스템 시장), Chinese (冗余EPS系统市场), French (Marché des systèmes EPS redondants), German (Markt für redundante EPS-Systeme), and Italian (Mercato dei sistemi EPS ridondanti), etc.

Request for a sample of this research report at (Use Corporate Mail ID for Quick Response) @ https://exactitudeconsultancy.com/reports/69077/redundant-eps-system-market#request-a-sample

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About Us
Exactitude Consultancy is a market research & consulting services firm which helps its client to address their most pressing strategic and business challenges. Our market research helps clients to address critical business challenges and also helps make optimized business decisions with our fact-based research insights, market intelligence, and accurate data.
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