市场调查报告书
商品编码
1489368
到 2030 年的线控驾驶市场预测:按车型、零件、自主程度、技术、应用、最终用户和地区进行全球分析Drive By Wire Market Forecasts to 2030 - Global Analysis By Vehicle Type, Component, Autonomy Level, Technology, Application, End User and By Geography |
根据Stratistics MRC预测,2023年全球线控驱动市场规模将达216.4亿美元,预计2030年将达到298.2亿美元,预测期内复合年增长率为7.4%。
线控驱动是指取代传统机械耦合的汽车技术。感测器侦测加速器输入并将讯号传送到车辆的控制系统,该系统以电子方式调节节气门开度。该系统不仅提高了精度和响应能力,还实现了巡航控制和牵引力控制等功能。 DBW 常见于现代车辆中,可提高燃油效率、提供更平稳的驾驶体验,并与 ADAS(高级驾驶辅助系统)整合。
印度汽车工业协会(SIAM)公布的统计数据显示,3月小客车销售量为85,229辆,较去年同月下降51%。
自动驾驶日益受到关注
DBW 技术可实现转向、煞车和加速的无缝整合和控制,对于自动驾驶车辆功能至关重要。随着车辆朝向更高水准的自动驾驶迈进,DBW 系统将透过提供自动驾驶功能所需的电子介面来确保安全且有效率的驾驶。对先进控制系统的需求正在推动 DBW 市场的扩张,以满足自动驾驶汽车不断变化的需求。
相容性问题
线控驾驶的兼容性问题源自于将新电子系统与现有车辆架构和组件整合的需要。这可能会带来一些挑战,例如确保不同子系统之间的无缝通讯、调整软体介面以及克服硬体限制。这些相容性障碍增加了实施复杂性和成本、减缓创新并阻碍市场扩张。
电动和混合动力汽车销量增加
DBW 技术能够精确控制电动和混合动力汽车的油门、煞车和转向,从而优化性能并提高能源效率。随着电动和混合动力汽车汽车成为主流,对管理电源、整合再生煞车和支援不同驱动模式的线控系统的需求不断增长。这一趋势凸显了 DBW 在促进向更清洁、更永续的运输解决方案过渡方面发挥的重要作用。
可靠性问题
线控驾驶系统的可靠性问题主要围绕着可能损害车辆安全和性能的故障和故障。系统故障、感测器错误和电气故障引起消费者对该技术可靠性的担忧。这些疑虑可能会阻碍普及,特别是在具有安全意识的消费者中,从而阻碍市场成长。
COVID-19 的影响
COVID-19 大流行对线控驾驶 (DBW) 市场产生了各种影响。虽然汽车产业最初面临供应链挑战和生产停顿的干扰,但这场危机也加速了对 DBW 等先进技术的需求,以增强车辆的安全性、自动化和互联性。此外,出于健康考虑,对非接触式解决方案和远端操作的日益重视进一步推动了 DBW 系统的采用。
自动停车领域预计将在预测期内成为最大的领域
自动停车领域预计将出现利润丰厚的成长。线控驱动技术在自动停车系统中发挥关键作用,无需直接机械耦合即可精确控制转向、煞车和油门功能。透过消除人工干预的需要,DBW 提高了自动停车系统的可靠性和安全性,优化了空间利用率,并改善了使用者的整体停车体验。自动停车的应用展示了 DBW 技术在城市交通解决方案中的变革潜力。
工业机械产业预计在预测期内复合年增长率最高
由于其精确控制和增强的安全功能,工业机械行业预计在预测期内将实现最高的复合年增长率。透过以电子控制取代传统的机械连桿,DBW 使工业机械的运作更加灵活和高效,从而提高生产率并减少维护要求。此外,远端监控和调整设备设定的能力提高了营运效率并促进预测性维护,进一步推动 DBW 在各种工业应用中的采用。
预计亚太地区在预测期内将占据最大的市场占有率。中国、日本和印度等国家的快速工业化、都市化和汽车产量的增加正在推动对包括 DBW 系统在内的先进汽车技术的需求。此外,消费者对具有先进安全性和便利性的车辆的偏好,进一步推动了 DBW 技术在亚太地区的采用,有助于市场扩张。
预计北美在预测期内的复合年增长率最高。该地区强大的汽车工业,加上对先进安全和连接功能的高需求,正在推动 DBW 系统在车辆中的采用。此外,严格的车辆排放气体和安全监管标准正在加速汽车製造商整合 DBW 技术,以满足合规性要求。此外,电动车和自动驾驶汽车在北美的日益普及进一步增加了对 DBW 系统的需求,有助于该地区的市场扩张。
According to Stratistics MRC, the Global Drive By Wire Market is accounted for $21.64 billion in 2023 and is expected to reach $29.82 billion by 2030 growing at a CAGR of 7.4% during the forecast period. Drive by wire refers to an automotive technology that replaces traditional mechanical linkages. These sensors detect the driver's input and send signals to the vehicle's control system, which then adjusts the throttle opening electronically. This system enhances precision and responsiveness, as well as enabling features like cruise control and traction control. DBW is commonly found in modern vehicles, offering improved fuel efficiency, smoother driving experience, and integration with advanced driver assistance systems.
According to the statistics released by the Society of Indian Automobile Manufacturers (SIAM), the sale of passenger cars fell by 51% in March y-o-y to 85,229 units.
Growing focus on autonomous driving
DBW technology enables seamless integration and control of steering, braking, and acceleration, essential for autonomous vehicle functionalities. As vehicles transition towards higher levels of autonomy, DBW systems become indispensable for ensuring safe and efficient operation by providing the electronic interfaces needed for autonomous driving features. This demand for sophisticated control systems is driving the expansion of the DBW market to cater to the evolving needs of autonomous vehicles.
Compatibility issues
Compatibility issues in drive by wire arise from the need to integrate new electronic systems with existing vehicle architectures and components. This can lead to challenges such as ensuring seamless communication between different subsystems, adapting software interfaces, and overcoming hardware limitations. These compatibility hurdles increase the complexity and cost of implementation, slowing down innovation and hindering market expansion.
Rise in electric and hybrid vehicle sales
DBW technology enables precise control of throttle, braking, and steering in these vehicles, optimizing performance and enhancing energy efficiency. As electric and hybrid vehicles become mainstream, the demand for drive by wire systems increases to manage power delivery, integrate regenerative braking, and support various drive modes. This trend underscores the critical role DBW plays in facilitating the transition towards cleaner and more sustainable transportation solutions.
Reliability concerns
Reliability concerns in drive by wire systems primarily revolve around potential malfunctions or failures, which could compromise vehicle safety and performance. Instances of system glitches, sensor errors, or electrical faults raise apprehensions among consumers regarding the technology's dependability. Such doubts can hinder market growth as they deter widespread adoption, particularly among safety-conscious consumers.
Covid-19 Impact
The covid-19 pandemic has had a mixed impact on the Drive By Wire (DBW) market. While the automotive industry initially faced disruptions due to supply chain challenges and production shutdowns, the crisis also accelerated the demand for advanced technologies like DBW to enhance vehicle safety, automation, and connectivity. Moreover, the growing emphasis on contactless solutions and remote operations in response to health concerns has further boosted the adoption of DBW systems.
The automated parking segment is expected to be the largest during the forecast period
The automated parking segment is estimated to have a lucrative growth. Drive by wire technology plays a crucial role in automated parking systems, offering precise control over steering, braking, and throttle functions without direct mechanical linkage. By eliminating the need for manual intervention, DBW enhances the reliability and safety of automated parking systems, optimizing space utilization and enhancing the overall parking experience for users. Its application in automated parking demonstrates the transformative potential of DBW technology in urban mobility solutions.
The industrial machinery segment is expected to have the highest CAGR during the forecast period
The industrial machinery segment is anticipated to witness the highest CAGR growth during the forecast period, due to its precise control and enhanced safety features. By replacing traditional mechanical linkages with electronic controls, DBW enables more flexible and efficient operation of industrial machinery, resulting in improved productivity and reduced maintenance requirements. Additionally, the ability to remotely monitor and adjust equipment settings enhances operational efficiency and facilitates predictive maintenance, further driving the adoption of DBW in various industrial applications.
Asia Pacific is projected to hold the largest market share during the forecast period. Rapid industrialization, urbanization, and increasing automotive production in countries like China, Japan, and India are fueling the demand for advanced automotive technologies, including DBW systems. Additionally, the rising consumer preference for vehicles equipped with advanced safety and convenience features is further boosting the adoption of DBW technology across the Asia-Pacific region, contributing to its market expansion.
North America is projected to have the highest CAGR over the forecast period. The region's strong automotive industry, coupled with a high demand for advanced safety and connectivity features, is driving the adoption of DBW systems in vehicles. Additionally, stringent regulatory standards for vehicle emissions and safety are accelerating the integration of DBW technology by automakers to meet compliance requirements. Moreover, the increasing popularity of electric and autonomous vehicles in North America is further fueling the demand for DBW systems, contributing to the market's expansion in the region.
Key players in the market
Some of the key players profiled in the Drive By Wire Market include Bosch Group, Continental AG, ZF Friedrichshafen AG, Hitachi Automotive Systems, Ltd., Infineon Technologies AG, Nexteer Automotive, Thyssenkrupp AG, DENSO Corporation, Curtiss-Wright Corporation, SKF Group, Kongsberg Automotive, Nissan Motor Corporation, Robert Bosch GmbH, Delphi Technologies, LORD Corporation, Magna International Inc., Toyota Motor Corporation, Mobil Elektronik GmbH, DURA Automotive Systems and STMicroelectronics.
In November 2023, Toyota unveiled its steer-by-wire technology. Steer-by-wire is initially set to be offered on Toyota electric cars, including the Toyota bZ4X and the Lexus RZ. The technology has been developed to meet the world's strictest legislation around by-wire steering systems in Europe.
In July 2022, ZF introduced the new by-wire steering system that creates new level of design & engineering freedom. ZF's steer-by-wire technology enables new safety and comfort features, like autonomous emergency evasive maneuvers or parking in very confined spaces. It marks a breakthrough on the way to fully self-driving cars and trucks by adding new design and engineering freedom.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.