The torque vectoring market size has grown rapidly in recent years. It will grow from $9.17 billion in 2023 to $10.76 billion in 2024 at a compound annual growth rate (CAGR) of 17.4%. The growth in the historic period can be attributed to factors such as improved traction and stability, enhanced safety features, increased market competitiveness, consumer demand for advanced driving dynamics, and concerns related to environmental and fuel efficiency.
The torque vectoring market size is expected to see rapid growth in the next few years. It will grow to $19.32 billion in 2028 at a compound annual growth rate (CAGR) of 15.7%. The growth in the forecast period can be attributed to factors such as the development of autonomous vehicles, the implementation of urban mobility solutions, adherence to regulatory compliance and safety standards, integration of cybersecurity measures, and the increasing popularity of rear-wheel torque vectoring. Major trends in the forecast period include the adoption of advanced sensor technologies for precise control, the use of AI-based torque vectoring algorithms, integration with vehicle stability control, customizable driver settings, and collaboration with tire manufacturers.
The upward trajectory of autonomous vehicles is anticipated to be a catalyst driving the expansion of the torque vectoring market. Autonomous vehicles, capable of operating independently without human intervention, rely on an array of sensors such as radar, lidar, and cameras to map their surroundings. Torque vectoring technology plays a pivotal role in enhancing the energy efficiency of these autonomous vehicles by mitigating power loss attributed to wheel slide and inefficiencies. Notably, insights from the Insurance Institute for Highway Safety in December 2022 projected a significant rise in autonomous vehicles on American roads, reaching an estimated 3.5 million by 2025 and further escalating to 4.5 million by 2030. Consequently, the burgeoning trend of autonomous vehicles fuels the growth of the torque vectoring market.
The escalation in fuel consumption serves as another driving force propelling the expansion of the torque vectoring market. Fuel consumption denotes the quantity of fuel utilized by a vehicle or machinery over a specific distance or time, often measured in units such as gallons, liters, or kilometers per liter. Torque vectoring systems play a pivotal role in augmenting fuel economy and performance by curbing power loss due to wheel slide and optimizing power delivery. For instance, as per the Energy Information Administration's findings in August 2022, an average of about 3.96 million b/d, equivalent to 166 million gallons, of distillate fuel oil was consumed in 2022, constituting 20% of the country's total petroleum consumption. Consequently, the escalating trend in fuel consumption significantly drives the growth of the torque vectoring market.
The implementation costs associated with torque vectoring, all-wheel drive (AWD), and four-wheel drive (4WD) systems pose a significant challenge that might impede the market's growth in the forecast period. These costs can limit the adoption of torque vectoring technology, especially in markets sensitive to pricing or among consumers mindful of budget constraints. The high expenses stem from the systems' complexity, requiring additional components and sophisticated control algorithms to function optimally. As indicated in 2023 by the Multidisciplinary Digital Publishing Institute, the primary cost drivers are the intricate engineering and manufacturing processes involved in developing and integrating these systems into vehicles. Thus, the high implementation cost acts as a deterrent to the growth of the torque vectoring market.
Key industry players in the torque vectoring market are directing their efforts toward the development of innovative technologies, specifically focusing on rear-axle torque vectoring to deliver dependable services to consumers. Rear-axle torque vectoring is a system designed to distribute torque between a vehicle's rear wheels, enhancing handling and stability by leveraging various sensors to monitor factors such as the vehicle's speed, steering angle, and lateral acceleration. For instance, in May 2021, Volkswagen AG, a German automotive manufacturer, introduced the 4Motion all-wheel-drive system equipped with rear-axle torque vectoring. This new torque vectoring system incorporates a rear differential featuring two multi-plate clutches capable of redirecting up to 100% of the rear torque to a single rear wheel. The Vehicle Dynamics Manager seamlessly integrates the DCC adaptive damping system, electronic differential locking (XDS), and torque vectoring axle to enhance cornering performance.
In March 2023, SAF-HOLLAND SE, a German company specializing in the design and manufacturing of chassis-related systems and components, completed the acquisition of Haldex AB. The financial details of this acquisition were not disclosed. This strategic acquisition is anticipated to foster collaboration between the two entities, aiming to develop an intelligent system that integrates axle and suspension systems with telematics. Additionally, SAF-HOLLAND SE aims to leverage its advanced products and services in connection, electrification, and autonomous driving to actively influence the transportation industry's evolution through this acquisition. Haldex AB, the Sweden-based provider of torque vectoring technology for all-wheel drive (AWD) vehicles.
Major companies operating in the torque vectoring market report are Robert Bosch GmbH, Tesla Inc., Audi AG, ZF Friedrichshafen AG, Continental AG, Magna International Inc., Eaton Corporation, Mitsubishi Motors Corporation, Schaeffler AG, BorgWarner Inc., JTEKT Corporation, Denso Corporation, Dana Incorporated, Linamar Corporation, GKN Automotive Limited, American Axle & Manufacturing Inc., Haldex Ltd., Ricardo Plc, Univance Corporation, Prodrive Holdings Ltd., Getrag B.V. & Co. KG, Koenigsegg Automotive AB, Modelon AB, Drako Motors Inc., Hofer Powertrain GmbH.
North America was the largest region in the torque vectoring market in 2023. Europe is expected to be the fastest-growing region in the forecast period. The regions covered in the torque vectoring market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa The countries covered in the torque vectoring market report are Australia, Brazil, China, France, Germany, India, Indonesia, Japan, Russia, South Korea, UK, USA, Canada, Italy, Spain.
The torque vectoring market consists of revenues earned by entities by providing services such as increase traction control and improve handling systems. The market value includes the value of related goods sold by the service provider or included within the service offering. The torque vectoring market also includes sales of clutches, differentials, and electronic control units which are used in providing torque vectoring services. Values in this market are ‘factory gate’ values, that is the value of goods sold by the manufacturers or creators of the goods, whether to other entities (including downstream manufacturers, wholesalers, distributors and retailers) or directly to end customers. The value of goods in this market includes related services sold by the creators of the goods.
The primary types of clutch actuation mechanisms in torque vectoring include hydraulic clutch and electronic clutch. In a hydraulic clutch, hydraulic fluid is utilized instead of a cable to move the clutch plate. This technology is applied across various vehicle types, including light commercial vehicles, heavy commercial vehicles, and passenger cars, with different propulsion systems such as front-wheel drive (FWD), rear-wheel drive (RWD), and all-wheel drive (AWD) or four-wheel drive (4WD). Torque vectoring systems come in various technologies, such as active torque vectoring system (ATVS) and passive torque vectoring system (PTVS).
The torque vectoring market research report is one of a series of new reports that provides torque vectoring market statistics, including torque vectoring industry global market size, regional shares, competitors with a torque vectoring market share, detailed torque vectoring market segments, market trends and opportunities, and any further data you may need to thrive in the torque vectoring industry. This torque vectoring market research report delivers a complete perspective of everything you need, with an in-depth analysis of the current and future scenario of the industry.
The market value is defined as the revenues that enterprises gain from the sale of goods and/or services within the specified market and geography through sales, grants, or donations in terms of the currency (in USD, unless otherwise specified).
The revenues for a specified geography are consumption values that are revenues generated by organizations in the specified geography within the market, irrespective of where they are produced. It does not include revenues from resales along the supply chain, either further along the supply chain or as part of other products.
This product will be delivered within 3-5 business days.
The torque vectoring market size is expected to see rapid growth in the next few years. It will grow to $19.32 billion in 2028 at a compound annual growth rate (CAGR) of 15.7%. The growth in the forecast period can be attributed to factors such as the development of autonomous vehicles, the implementation of urban mobility solutions, adherence to regulatory compliance and safety standards, integration of cybersecurity measures, and the increasing popularity of rear-wheel torque vectoring. Major trends in the forecast period include the adoption of advanced sensor technologies for precise control, the use of AI-based torque vectoring algorithms, integration with vehicle stability control, customizable driver settings, and collaboration with tire manufacturers.
The upward trajectory of autonomous vehicles is anticipated to be a catalyst driving the expansion of the torque vectoring market. Autonomous vehicles, capable of operating independently without human intervention, rely on an array of sensors such as radar, lidar, and cameras to map their surroundings. Torque vectoring technology plays a pivotal role in enhancing the energy efficiency of these autonomous vehicles by mitigating power loss attributed to wheel slide and inefficiencies. Notably, insights from the Insurance Institute for Highway Safety in December 2022 projected a significant rise in autonomous vehicles on American roads, reaching an estimated 3.5 million by 2025 and further escalating to 4.5 million by 2030. Consequently, the burgeoning trend of autonomous vehicles fuels the growth of the torque vectoring market.
The escalation in fuel consumption serves as another driving force propelling the expansion of the torque vectoring market. Fuel consumption denotes the quantity of fuel utilized by a vehicle or machinery over a specific distance or time, often measured in units such as gallons, liters, or kilometers per liter. Torque vectoring systems play a pivotal role in augmenting fuel economy and performance by curbing power loss due to wheel slide and optimizing power delivery. For instance, as per the Energy Information Administration's findings in August 2022, an average of about 3.96 million b/d, equivalent to 166 million gallons, of distillate fuel oil was consumed in 2022, constituting 20% of the country's total petroleum consumption. Consequently, the escalating trend in fuel consumption significantly drives the growth of the torque vectoring market.
The implementation costs associated with torque vectoring, all-wheel drive (AWD), and four-wheel drive (4WD) systems pose a significant challenge that might impede the market's growth in the forecast period. These costs can limit the adoption of torque vectoring technology, especially in markets sensitive to pricing or among consumers mindful of budget constraints. The high expenses stem from the systems' complexity, requiring additional components and sophisticated control algorithms to function optimally. As indicated in 2023 by the Multidisciplinary Digital Publishing Institute, the primary cost drivers are the intricate engineering and manufacturing processes involved in developing and integrating these systems into vehicles. Thus, the high implementation cost acts as a deterrent to the growth of the torque vectoring market.
Key industry players in the torque vectoring market are directing their efforts toward the development of innovative technologies, specifically focusing on rear-axle torque vectoring to deliver dependable services to consumers. Rear-axle torque vectoring is a system designed to distribute torque between a vehicle's rear wheels, enhancing handling and stability by leveraging various sensors to monitor factors such as the vehicle's speed, steering angle, and lateral acceleration. For instance, in May 2021, Volkswagen AG, a German automotive manufacturer, introduced the 4Motion all-wheel-drive system equipped with rear-axle torque vectoring. This new torque vectoring system incorporates a rear differential featuring two multi-plate clutches capable of redirecting up to 100% of the rear torque to a single rear wheel. The Vehicle Dynamics Manager seamlessly integrates the DCC adaptive damping system, electronic differential locking (XDS), and torque vectoring axle to enhance cornering performance.
In March 2023, SAF-HOLLAND SE, a German company specializing in the design and manufacturing of chassis-related systems and components, completed the acquisition of Haldex AB. The financial details of this acquisition were not disclosed. This strategic acquisition is anticipated to foster collaboration between the two entities, aiming to develop an intelligent system that integrates axle and suspension systems with telematics. Additionally, SAF-HOLLAND SE aims to leverage its advanced products and services in connection, electrification, and autonomous driving to actively influence the transportation industry's evolution through this acquisition. Haldex AB, the Sweden-based provider of torque vectoring technology for all-wheel drive (AWD) vehicles.
Major companies operating in the torque vectoring market report are Robert Bosch GmbH, Tesla Inc., Audi AG, ZF Friedrichshafen AG, Continental AG, Magna International Inc., Eaton Corporation, Mitsubishi Motors Corporation, Schaeffler AG, BorgWarner Inc., JTEKT Corporation, Denso Corporation, Dana Incorporated, Linamar Corporation, GKN Automotive Limited, American Axle & Manufacturing Inc., Haldex Ltd., Ricardo Plc, Univance Corporation, Prodrive Holdings Ltd., Getrag B.V. & Co. KG, Koenigsegg Automotive AB, Modelon AB, Drako Motors Inc., Hofer Powertrain GmbH.
North America was the largest region in the torque vectoring market in 2023. Europe is expected to be the fastest-growing region in the forecast period. The regions covered in the torque vectoring market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa The countries covered in the torque vectoring market report are Australia, Brazil, China, France, Germany, India, Indonesia, Japan, Russia, South Korea, UK, USA, Canada, Italy, Spain.
The torque vectoring market consists of revenues earned by entities by providing services such as increase traction control and improve handling systems. The market value includes the value of related goods sold by the service provider or included within the service offering. The torque vectoring market also includes sales of clutches, differentials, and electronic control units which are used in providing torque vectoring services. Values in this market are ‘factory gate’ values, that is the value of goods sold by the manufacturers or creators of the goods, whether to other entities (including downstream manufacturers, wholesalers, distributors and retailers) or directly to end customers. The value of goods in this market includes related services sold by the creators of the goods.
The primary types of clutch actuation mechanisms in torque vectoring include hydraulic clutch and electronic clutch. In a hydraulic clutch, hydraulic fluid is utilized instead of a cable to move the clutch plate. This technology is applied across various vehicle types, including light commercial vehicles, heavy commercial vehicles, and passenger cars, with different propulsion systems such as front-wheel drive (FWD), rear-wheel drive (RWD), and all-wheel drive (AWD) or four-wheel drive (4WD). Torque vectoring systems come in various technologies, such as active torque vectoring system (ATVS) and passive torque vectoring system (PTVS).
The torque vectoring market research report is one of a series of new reports that provides torque vectoring market statistics, including torque vectoring industry global market size, regional shares, competitors with a torque vectoring market share, detailed torque vectoring market segments, market trends and opportunities, and any further data you may need to thrive in the torque vectoring industry. This torque vectoring market research report delivers a complete perspective of everything you need, with an in-depth analysis of the current and future scenario of the industry.
The market value is defined as the revenues that enterprises gain from the sale of goods and/or services within the specified market and geography through sales, grants, or donations in terms of the currency (in USD, unless otherwise specified).
The revenues for a specified geography are consumption values that are revenues generated by organizations in the specified geography within the market, irrespective of where they are produced. It does not include revenues from resales along the supply chain, either further along the supply chain or as part of other products.
This product will be delivered within 3-5 business days.
Table of Contents
1. Executive Summary2. Torque Vectoring Market Characteristics3. Torque Vectoring Market Trends and Strategies32. Global Torque Vectoring Market Competitive Benchmarking33. Global Torque Vectoring Market Competitive Dashboard34. Key Mergers and Acquisitions in the Torque Vectoring Market
4. Torque Vectoring Market - Macro Economic Scenario
5. Global Torque Vectoring Market Size and Growth
6. Torque Vectoring Market Segmentation
7. Torque Vectoring Market Regional and Country Analysis
8. Asia-Pacific Torque Vectoring Market
9. China Torque Vectoring Market
10. India Torque Vectoring Market
11. Japan Torque Vectoring Market
12. Australia Torque Vectoring Market
13. Indonesia Torque Vectoring Market
14. South Korea Torque Vectoring Market
15. Western Europe Torque Vectoring Market
16. UK Torque Vectoring Market
17. Germany Torque Vectoring Market
18. France Torque Vectoring Market
19. Italy Torque Vectoring Market
20. Spain Torque Vectoring Market
21. Eastern Europe Torque Vectoring Market
22. Russia Torque Vectoring Market
23. North America Torque Vectoring Market
24. USA Torque Vectoring Market
25. Canada Torque Vectoring Market
26. South America Torque Vectoring Market
27. Brazil Torque Vectoring Market
28. Middle East Torque Vectoring Market
29. Africa Torque Vectoring Market
30. Torque Vectoring Market Competitive Landscape and Company Profiles
31. Torque Vectoring Market Other Major and Innovative Companies
35. Torque Vectoring Market Future Outlook and Potential Analysis
36. Appendix
Executive Summary
Torque Vectoring Global Market Report 2024 provides strategists, marketers and senior management with the critical information they need to assess the market.This report focuses on torque vectoring market which is experiencing strong growth. The report gives a guide to the trends which will be shaping the market over the next ten years and beyond.
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Description
Where is the largest and fastest growing market for torque vectoring? How does the market relate to the overall economy, demography and other similar markets? What forces will shape the market going forward? This report answers all these questions and many more.The report covers market characteristics, size and growth, segmentation, regional and country breakdowns, competitive landscape, market shares, trends and strategies for this market. It traces the market’s historic and forecast market growth by geography.
Scope
Markets Covered:1) By Clutch Actuation Type: Hydraulic Clutch; Electronic Clutch
2) By Vehicle Type: Light Commercial Vehicles; Heavy Commercial Vehicles; Passenger Car
3) By Propulsion: Front Wheel Drive (FWD); Rear Wheel Drive (RWD); All Wheel Drive (AWD) Or Four Wheel Drive (4WD)
4) By Technology: Active Torque Vectoring System (ATVS); Passive Torque Vectoring System (PTVS)
Key Companies Mentioned: Robert Bosch GmbH; Tesla Inc.; Audi AG; ZF Friedrichshafen AG; Continental AG
Countries: Australia; Brazil; China; France; Germany; India; Indonesia; Japan; Russia; South Korea; UK; USA; Canada; Italy; Spain
Regions: Asia-Pacific; Western Europe; Eastern Europe; North America; South America; Middle East; Africa
Time Series: Five years historic and ten years forecast
Data: Ratios of market size and growth to related markets, GDP proportions, expenditure per capita
Data Segmentation: Country and regional historic and forecast data, market share of competitors, market segments
Sourcing and Referencing: Data and analysis throughout the report is sourced using end notes
Delivery Format: PDF, Word and Excel Data Dashboard
Methodology
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