市場調查報告書
商品編碼
1358995
到 2030 年牽引力控制系統市場預測:依類型、組件、車型、配銷通路和地區進行的全球分析Traction Control System Market Forecasts to 2030 - Global Analysis By Type (Electrical Linkage, Mechanical Linkage and Other Types), Component, Vehicle Type, Distribution Channel and By Geography |
根據 Stratistics MRC 的數據,2023 年全球牽引力控制系統市場規模將達到 117 億美元,預計到 2030 年將達到 205 億美元,預測期內年複合成長率為 8.3%。
牽引力控制是汽車電子穩定控制 (ESC) 的一個子功能,旨在防止車輪失去對路面的抓地力。當引擎功率和控制輸入與路況不匹配時,牽引力控制系統就會啟動。為了幫助促進因素保持對汽車的控制,汽車使用牽引力控制,這是一種增強的主動煞車系統。這使得車輛的車輪能夠與促進因素的煞車輸入成反比地保持與路面的動態接觸。
根據世界衛生組織 (WHO) 和世界銀行委託、哈佛大學公共衛生學院出版的《全球疾病負擔》,預計到 2020 年,交通事故將成為第三大死因。
ADAS(高級駕駛員輔助系統)包括防鎖死煞車系統 (ABS)、車道維持輔助和防撞系統等安全功能,在牽引力控制中發揮重要作用。在提高汽車穩定性和加速和減速過程中的控制方面,牽引力控制系統尤其重要。隨著這些技術變得越來越廣為人知和使用,對牽引力控制系統的需求也不斷增加。消費者越來越意識到該技術提供的便利和安全優勢。因此,這一因素正在推動市場擴張。
製造商在將牽引力控制系統與引擎、煞車和穩定性控制等其他車輛系統整合時面臨重大課題。成功整合和無縫互通性面臨許多技術課題。這些系統中的演算法考慮了許多變量,包括輪速差、車速、轉向輸入和路況。因此,建造一個提供最佳性能並減少誤報的牽引力控制系統是一個困難的過程。因此,這些要素預計將在整個預測期內抑制市場成長。
自動駕駛汽車使用各種感測器,包括攝影機、雷達、光達和 GPS,來偵測周圍環境並做出明智的駕駛決策。隨著對自動駕駛汽車的需求增加,對可靠性和安全性的需求也在增加。牽引力控制系統將變得更加重要,因為它們使自動駕駛車輛能夠安全地適應各種路況。推動市場擴張的主要要素之一是無人駕駛車輛對牽引力控制系統的需求促進因素。
汽車牽引力控制系統似乎是一個非常有前途的安全功能。目前,高昂的維護成本阻礙了市場的擴張。牽引力控制系統由控制模組和感測器等眾多電子零件結構,這些元件的使用壽命很短並且需要定期維護。這些零件非常昂貴,修理起來要花很多錢。此外,這些零件缺乏替代也拖累了市場。
由於 COVID-19大流行,汽車部門的銷售和產量均大幅下降。由於供應鏈問題導致生產活動放緩,汽車銷售正在下降。結果,所有市場領域的汽車銷售量都在下降,加上經濟景氣衰退導致勞動市場波動和消費者需求下降。因此,不利影響預計將對市場產生負面影響。
由於電動車和混合汽車的興起,預計電氣連接領域將在預測期內成為最大的部分。這樣可以精確調整動力分配,以最大限度地提高牽引力並提高車輛的整體性能。它還可以實現電動動力傳動系統組件和牽引力控制系統之間的完美通訊和協調。它們在車輛眾多零件和牽引力控制模組之間的訊號和命令傳輸過程中至關重要。
由於全球小客車需求不斷成長以及汽車部門嚴格安全法規的實施,預計小客車部門在預測期內將呈現最高的年複合成長率。此外,隨著消費者對汽車安全意識的增強,OEM正在為小客車配備先進的牽引力控制系統。預計這一因素將在預測期內進一步支持市場擴張。
由於車輛安全功能的研究支持和開發的投資不斷增加,預計北美在預測期內將佔據最大的市場佔有率。經濟狀況的改善以及自動駕駛和電動車需求的增加也將進一步推動牽引力控制系統的使用,從而推動預測期內區域市場的擴張。
預計亞太地區在預測期內將維持最高的年複合成長率。感測器網路、人工智慧和機器學習等自動駕駛技術的成長和發展正在增加自動駕駛汽車的可行性和未來性潛力,並增加對牽引力控制系統的需求。尖端安全和駕駛輔助技術在國產汽車中的廣泛採用也是推動牽引力控制系統市場的主要要素。
According to Stratistics MRC, the Global Traction Control System Market is accounted for $11.7 billion in 2023 and is expected to reach $20.5 billion by 2030 growing at a CAGR of 8.3% during the forecast period. Traction control is a subordinate function of electronic stability control (ESC) on motor vehicles that is designed to prevent road wheels from losing grip. When engine force and control input are incompatible with the road's circumstances, it is stimulated. To help drivers keep control of their vehicles, traction control, an enhanced active braking system, is used in automobiles. It enables a vehicle's wheels to maintain dynamic contact with the road, which is inversely proportional to the driver's inputs for braking.
According to The Global Burden of Disease, published by The Harvard School of Public Health on behalf of the World Health Organization and the World Bank, road accidents are estimated to become the third leading cause of death by 2020.
Advanced Driver Assistance Systems (ADAS), which include safety features like anti-lock braking systems (ABS), lane-keeping assistance, and collision avoidance systems, play a crucial role in traction control. With regard to improving the stability and control of cars during acceleration and deceleration, traction control systems are particularly important. The need for traction control systems is growing as these technologies become more widely known and used. Consumers are becoming more aware of the convenience and safety advantages this technology offers. As a result, this element is fueling market expansion.
Manufacturers face a significant problem when integrating traction control systems with other vehicle systems like the engine, brakes, and stability control. Successful integration and seamless interoperability include a number of technical challenges. These systems' algorithms take into account a number of variables, including wheel speed differentials, vehicle speed, steering input, and road conditions. As a result, creating traction control systems that provide optimal performance and reduce false alarms is a difficult procedure. Therefore, it is anticipated that these factors will restrain market growth throughout the forecast period.
Autonomous vehicles use a wide range of sensors, including cameras, radar, LIDAR, and GPS, to detect their surroundings and make wise driving judgments. The need of reliability and safety will grow as demand for autonomous vehicles rises. As traction control systems let autonomous vehicles safely handle a variety of road conditions, they become even more crucial. One of the main factors propelling the market's expansion is the increasing demand for traction control systems in driverless vehicles.
The traction control system for cars seems like a really promising safety feature. Currently, the market's expansion is being hampered by the high cost of maintenance. The traction control system is made up of a number of electronic parts that have a very short lifespan and require routine maintenance, such as control modules and sensors. These components are highly expensive, and fixing them will cost a lot of money. Additionally, the market is hampered by a lack of alternatives for these components.
Due to the COVID-19 pandemic, the car sector has seen a significant decline in both sales and production. As a result of supply chain issues that slowed down production activities, fewer automobiles have been launched. As a result, there has been a reduction in car sales across all market sectors, combined with a decline in consumer demand as a result of the unstable labor market and the recession. Unfavourable effects are therefore projected to have a adverse effect on the market.
The electric linkage segment is expected to be the largest during the forecast period due to the rise of electric and hybrid vehicles. This enables precise regulation of power distribution to maximize traction and boost overall vehicle performance. It also enables flawless communication and coordination between the electric powertrain components and the traction control system. They are essential in the signal and command transmission process between the vehicle's numerous parts and the traction control module.
The passenger car segment is expected to have the highest CAGR during the forecast period due to the rising demand for passenger cars globally as well as the implementation of severe safety rules in the automotive sector. In addition, as consumer awareness of vehicle safety has grown, OEMs are increasingly including sophisticated traction control systems in passenger cars. This element is additionally projected to support market expansion within the projected time frame.
North America is projected to hold the largest market share during the forecast period owing to increasing investment in research support and development of vehicle safety features. The use of traction control systems will also be further boosted by the improvement in economic conditions and the rising demand for autonomous and electric vehicles, which will fuel the expansion of the regional market during the projection period.
Asia Pacific is projected to hold the highest CAGR over the forecast period. The growth and development of autonomous driving technologies, such as sensor networks, artificial intelligence, and machine learning, have enhanced the viability and promise of self-driving cars, which has increased the demand for traction control systems. The widespread adoption of cutting-edge safety and driver-assistance technologies in automobiles made locally is a key factor driving the traction control system market.
Some of the key players in Traction Control System market include: ZF TRW, WABCO, Hyundai Mobis CO., LTD, Hitachi Ltd, Denso Corporation, Nissin Kogyo Co., Robert Bosch GmbH, AUTOLIV INC, Continental AG, ADVICS CO., LTD, MAHLE GmbH and Delphi Automotive LLP.
In August 2023, Hyundai Mobis , a leading global automotive supplier and Autotalks, a world leader in V2X (Vehicle-to-Everything) communication solutions are set to unveil their latest joint effort: Hyundai Mobis' MTCU (Multi-functional Telematics Control Unit) connectivity modules.
In May 2023, Bosch and Plus are collaborating to make software-defined commercial trucks a reality. Through a new technology agreement, Plus is offering its PlusDrive solution with the integrated steering system from Bosch featuring hardware and software to deliver driver assistance and partially automated features to commercial vehicles.
In December 2022, Hyundai Mobis, the global automotive supplier, and Ottopia, the global leader in teleoperation software, announced a partnership to develop an end-to-end remote mobility assistance solution that enables the commercialization of autonomous mobility.
List of Figures
Figure 1 Traction Control System - Market Segmentation
Figure 2 Research Methodology
Figure 3 Data Mining
Figure 4 Data Analysis
Figure 5 Data Validation
Figure 6 Research Pipeline
Figure 7 Research Approach
Figure 8 Research Sources
Figure 9 Traction Control System Market Scenario, Emerging Markets (2023) (% Market Share)
Figure 10 Porter's Five Forces Analysis - Traction Control System
Figure 11 Global Traction Control System Market Analysis & Projection, By Type (2023 VS 2030) (US$MN)
Figure 12 Global Traction Control System Market Analysis & Projection, By Electrical Linkage (2023 VS 2030) (US$MN)
Figure 13 Global Traction Control System Market Analysis & Projection, By Mechanical Linkage (2023 VS 2030) (US$MN)
Figure 14 Global Traction Control System Market Analysis & Projection, By Other Types (2023 VS 2030) (US$MN)
Figure 15 Global Traction Control System Market Analysis & Projection, By Component (2023 VS 2030) (US$MN)
Figure 16 Global Traction Control System Market Analysis & Projection, By Hydraulic Modulators (2023 VS 2030) (US$MN)
Figure 17 Global Traction Control System Market Analysis & Projection, By Sensors (2023 VS 2030) (US$MN)
Figure 19 Global Traction Control System Market Analysis & Projection, By Electronic Control Unit (2023 VS 2030) (US$MN)
Figure 20 Global Traction Control System Market Analysis & Projection, By Other Components (2023 VS 2030) (US$MN)
Figure 21 Global Traction Control System Market Analysis & Projection, By Vehicle Type (2023 VS 2030) (US$MN)
Figure 22 Global Traction Control System Market Analysis & Projection, By Passenger Car (2023 VS 2030) (US$MN)
Figure 23 Global Traction Control System Market Analysis & Projection, By Electric Vehicles (2023 VS 2030) (US$MN)
Figure 24 Global Traction Control System Market Analysis & Projection, By Light Commercial Vehicle (2023 VS 2030) (US$MN)
Figure 25 Global Traction Control System Market Analysis & Projection, By Heavy Commercial Vehicle (2023 VS 2030) (US$MN)
Figure 26 Global Traction Control System Market Analysis & Projection, By Internal Combustion Engine (ICE) (2023 VS 2030) (US$MN)
Figure 27 Global Traction Control System Market Analysis & Projection, By Other Vehicle Types (2023 VS 2030) (US$MN)
Figure 28 Global Traction Control System Market Analysis & Projection, By Distribution Channel (2023 VS 2030) (US$MN)
Figure 29 Global Traction Control System Market Analysis & Projection, By Original Equipment Manufacturer (OEM) (2023 VS 2030) (US$MN)
Figure 30 Global Traction Control System Market Analysis & Projection, By Aftermarket (2023 VS 2030) (US$MN)
Figure 31 Global Traction Control System Market Analysis & Projection, By Geography (2023 VS 2030) (US$MN)
Figure 32 Global Traction Control System Market Analysis & Projection, By Country (2023 VS 2030) (US$MN)
Figure 33 Global Traction Control System Market Analysis & Projection, By North America (2023 VS 2030) (US$MN)
Figure 34 Global Traction Control System Market Analysis & Projection, By Europe (2023 VS 2030) (US$MN)
Figure 35 Global Traction Control System Market Analysis & Projection, By Asia Pacific (2023 VS 2030) (US$MN)
Figure 36 Global Traction Control System Market Analysis & Projection, By South America (2023 VS 2030) (US$MN)
Figure 37 Global Traction Control System Market Analysis & Projection, By Middle East & Africa (2023 VS 2030) (US$MN)
Figure 38 ZF TRW - Swot Analysis
Figure 39 WABCO - Swot Analysis
Figure 40 Hyundai Mobis CO., LTD - Swot Analysis
Figure 41 Hitachi Ltd - Swot Analysis
Figure 42 Denso Corporation - Swot Analysis
Figure 43 Nissin Kogyo Co. - Swot Analysis
Figure 44 Robert Bosch GmbH - Swot Analysis
Figure 45 AUTOLIV INC - Swot Analysis
Figure 46 Continental AG - Swot Analysis
Figure 47 ADVICS CO., LTD - Swot Analysis
Figure 48 MAHLE GmbH - Swot Analysis
Figure 49 Delphi Automotive LLP - Swot Analysis