市场调查报告书
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1351101
到 2030 年汽车盲点侦测系统的市场预测:按细分市场和地区分類的全球分析Automotive Blind Spot Detection System Market Forecasts to 2030 - Global Analysis By Vehicle Type (Commercial Vehicle, Passenger Cars and Other Vehicle Types), Component, Sales Channel and By Geography |
根据Stratistics MRC预测,2023年全球汽车盲点侦测系统市场规模将达到72亿美元,预计2030年将达到271亿美元,预测期内年复合成长率为20.7%。
称为盲点侦测 (BSD) 的安全功能使用感测器来识别汽车内部和周围的物体和行人。后视镜、头枕、窗柱和座位的不正确位置都会导致盲点。盲点侦测系统会促进因素的障碍物警报。警告讯号可以透过多种方式发出,包括方向盘的震动、驾驶室中微弱的脉衝声,或资讯娱乐萤幕或仪表板上的闪烁灯光。
根据世界卫生组织 (WHO) 统计,每年约有 125 万人死于道路交通事故。
汽车互联对于汽车盲点侦测技术的发展至关重要。该设备透过提供附近车道上行驶的其他车辆的即时资讯来帮助防止盲点碰撞。汽车盲点侦测系统利用协作感知、资料分析和车辆间通讯等连网汽车技术。因此,系统能够更好地识别模式、预测风险并发现盲点。该行业的一个重要趋势是引入此类最尖端科技。
后保险桿后面的雷达感测器是盲点监控系统使用的主要技术。从无线电波返回所需的时间,您可以了解有关物体结构的更多信息,例如其大小、与其他移动物体的距离以及移动方向。然而,感测器视野内其他材料(例如保险桿修復材料)的存在可能会减慢无线电波的传播速度。这可能会导致雷达设备的检测出现错误。这一要素限制了市场的扩张。
随着全球交通事故发生率的增加,对车道偏离警告、停车辅助、防撞系统、牵引力控制、电子稳定控制、轮胎压力监测器、安全气囊和远端资讯处理等安全技术的需求将会增加,这是一个趋势。根据交通状况,这些系统还可以自动减速或停止。此外,有人指出,交通事故死亡率急遽上升。
在汽车中实施应用程式的高昂成本预计将减缓该行业的扩张。由于安装盲点侦测系统的成本高等要素,汽车成本不断增加。车辆拥有大量的电气零件和感测器,维护极为困难,需要具有专业知识的人员。具有复杂架构的系统的生命週期很短。因此,市场成长预计将受到高初始成本和复杂结构的显着影响。
COVID-19的爆发对全球汽车产业产生了重大负面影响。一些国家已实施全国封锁措施,以阻止病毒的传播。严格的社交距离规则和全州范围内的封锁措施要素许多OEM工厂关闭,扰乱了原材料的流动,并间接和直接影响了数千名依赖工人和整个行业。由于汽车停产、失业和收入减少,对汽车的需求也大幅下降。受此影响,消费者购买力也大幅下降。
小客车市场预计将在预测期内成为最大的市场。地球人口的成长和相关的交通需求是造成这种成长的原因。由于严格的政府法律要求汽车配备驾驶员辅助系统以提高安全性,该行业正在不断扩大。此外,消费者对小客车安全的需求不断增长预计将推动市场扩张。
由于其精确的可操作性,雷达领域预计在预测期内将出现最高的年复合成长率。对汽车安全设备的需求不断增长将有助于在整个预测期内保持雷达的主导地位。雷达使用容易穿透大气层的无线电波。因此,汽车雷达主要用于物体侦测用途。
预计北美在预测期内将占据最大的市场占有率。该地区当局收紧了汽车评级要求,迫使製造商生产符合严格安全法规的汽车。汽车行业越来越多地使用基于感测器的技术。因此,在预测期内对高阶驾驶员辅助系统的需求可能会增加。
预计亚太地区在预测期内将维持最高的年复合成长率。这一增长归因于该地区的主要市场参与者进行了大量投资来开发增强型盲点检测系统。此外,购买力上升、生活水准提高和快速都市化导致小客车需求增加预计也将对行业成长产生积极影响。
According to Stratistics MRC, the Global Automotive Blind Spot Detection System Market is accounted for $7.2 billion in 2023 and is expected to reach $27.1 billion by 2030 growing at a CAGR of 20.7% during the forecast period. A safety feature called Blind Spot Detection (BSD) uses sensors to identify objects and pedestrians in and around moving cars. Incorrectly positioned rear view mirrors and headrests, window pillars, and seated passengers all contribute to blind spots. Any impediment that is not visible to the driver is alerted to by a blind spot detection system. The warning signal is produced in a variety of ways, including the steering shaking, a faint pulsing sound inside the driver's cabin, and a light flashing on the infotainment screen or the instrument cluster.
According to the World Health Organization (WHO), about 1.25 million people die each year in road accidents.
Vehicle connectivity is crucial to the development of automotive blind spot detection technology. This device assists in preventing blind spot collisions by providing real-time information on the presence of other vehicles in nearby lanes. Automotive blind spot detection systems make use of connected car technologies like joint perception, data analytics, and vehicle-to-vehicle communication. As a result, the system is better able to identify patterns, anticipate risks, and uncover blind spots. A key trend in this industry is the introduction of such cutting-edge technology.
Radar sensors behind the back bumper are the main technology used by blind spot monitoring systems. The amount of time it takes for the radio waves to return provides details on the structure of the object, including its size, distance from other moving objects, and direction of travel. However, other materials, like bumper repair material in the sensor's field of vision, may cause the radio waves to travel more slowly. Radar device readings may become erroneous as a result of this. This factor is limiting market expansion.
The need for safety technologies including lane departure alerts, parking assistance, collision avoidance systems, traction control, electronic stability control, tire pressure monitors, airbags, and telematics is on the rise as the incidence of traffic incidents increases globally. Depending on the traffic conditions, these systems can also automatically slow down or stop the car. Additionally, it has been noted that the death rates from traffic accidents have increased dramatically.
It is anticipated that the high cost of implementing apps in vehicles will slow industry expansion. The cost of cars is rising as a result of factors including the higher installation costs for blind spot detection systems. Due to the vehicles numerous electrical parts and sensors, servicing it is very challenging and demands expert personnel. Systems with complex architectures have shorter shelf lives. Therefore, it is anticipated that the market's growth will be significantly impacted by the high starting cost and complex structure.
The COVID-19 epidemic had a significant negative impact on the global auto industry. Several countries implemented nationwide lockdown measures to halt the virus' spread. Strict social segregation rules and state-wide lockdowns forced the closure of many OEM facilities, which also interrupted the flow of raw materials and had an indirect or direct impact on thousands of dependent workers and the industry. The need for autos was also significantly reduced by lockdowns, unemployment, and income decreases. As a result, the consumer's purchasing power has also been significantly reduced.
The passenger vehicle segment is expected to be the largest during the forecast period. e increasing number of people on the planet and the resulting demand for transportation are to blame for this rise. The industry is expanding as a result of strict government laws requiring automobiles to be equipped with driver assistance systems that increase vehicle safety. Additionally, it is projected that rising consumer demand for passenger vehicle safety will support market expansion.
The radar segment is expected to have the highest CAGR during the forecast period due to its precise operation. Rising demand for automotive safety installations will help maintain RADAR's dominance throughout the forecast period. It uses radio waves that can be easily transmitted through the atmosphere. Automotive radar is, therefore, primarily used for object detection applications.
North America is projected to hold the largest market share during the forecast period. Authorities in this region have tightened the requirements for vehicle ratings, putting manufacturers under pressure to build cars that adhere to strict safety regulations. In the automotive industry, the use of sensor-based technology is growing. As a result, over the projection period, there will be a rise in demand for sophisticated driver assistance systems.
Asia Pacific is projected to hold the highest CAGR over the forecast period. This growth can be attributed to the presence of the leading market players in the region that are making significant investments to develop enhanced blind spot detection systems. In addition, the growing demand for passenger vehicles with the rising purchasing power, improved living standards, and rapid urbanisation is also anticipated to positively impact the industry growth.
Some of the key players in Automotive Blind Spot Detection System market include: Smart Microwave Sensors GmbH, Robert Bosch GmbH, Porsche, Texas Instruments Incorporated, Continental AG, Gentex, Denso Corporation, Preco Electronics, Magna International Inc., Tata Motors, Infineon Technologies AG, NXP Semiconductors, Infineon Technologies AG, SerVision and Xiamen Autostar Electronics Co.
In May 2023, Porsche announced a partnership with Israel-based company Mobileye to integrate advanced driver assistance technology. As part of the partnership, Porsche will integrate Mobileye's advanced SuperVision driver assistance system into future models.
In February 2023, Tata Motors launched the latest dark edition of compact SUV namely Harrier and Safari which is a SUV; to the Indian market. The Harrier and Safari dark edition are equipped with Advanced Driver Assistance System (ADAS).
In January 2023, NXP Semiconductors released an advanced automotive 28nm RFCMOS radar-on-chip family for next-generation ADAS and autonomous driving systems.