|  | 市場調查報告書 商品編碼 1846043 全球汽車雷達市場規模(按頻寬、範圍、應用、地區和預測)Global Automotive Radar Market Size By Frequency Band, By Range, By Application, By Geographic Scope and Forecast | ||||||
預計 2024 年汽車雷達市場規模將達到 23.4173 億美元,到 2031 年將達到 44.2183 億美元,2024 年至 2031 年的複合年成長率為 8.27%。
汽車雷達是現代汽車的關鍵技術,在高級駕駛輔助系統 (ADAS) 和自動駕駛功能中發揮關鍵作用。雷達利用無線電波探測物體相對於車輛的距離、速度和角度,提供關鍵訊息,從而提高安全性和駕駛便利性。
汽車雷達是一項關鍵技術,它顯著提高了車輛安全性、自動駕駛和駕駛輔助系統的性能。汽車雷達最常見的應用之一是高級駕駛輔助系統 (ADAS),其中包括主動式車距維持定速系統(ACC)、防撞、車道變換輔助、盲點識別等。
汽車雷達技術的未來應用有望透過提高車輛安全性、效率和自動化程度來改變交通運輸產業。隨著自動駕駛和半自動汽車的普及,雷達系統將在提供ADAS(高級駕駛輔助系統)和自動駕駛功能方面發揮越來越重要的作用。
影響全球汽車雷達市場的關鍵市場動態是:
關鍵市場促進因素
對汽車安全的日益關注:消費者和製造商高度重視汽車安全,這是汽車雷達產業發展的主要驅動力之一。隨著道路交通流量的增加,事故發生的頻率也隨之增加,提高了人們對汽車安全措施必要性的認知。汽車雷達透過執行防撞、緊急煞車和盲點識別等任務來提高汽車安全性。
雷達技術的發展:雷達系統的技術發展正在推動汽車雷達產業的發展。現代雷達系統正變得越來越複雜,解析度越來越高,物體偵測精度也越來越高。片上雷達 (RoC) 技術的進步使雷達系統變得更小巧、更經濟高效,並且更易於整合到車輛中。
ADAS(先進駕駛輔助系統)的普及率不斷提高:推動汽車雷達產業發展的另一個主要因素是ADAS(高階駕駛輔助系統)的廣泛應用。主動式車距維持定速系統、車道維持輔助和自動緊急煞車等ADAS技術嚴重依賴雷達感測器。
主要挑戰
干擾和訊號處理:汽車雷達系統面臨的關鍵挑戰之一是干擾和訊號處理。隨著越來越多的車輛配備雷達系統,雷達之間相互干擾的可能性也隨之增加。這種干擾會損害雷達系統的性能,導致錯誤的距離和速度估計、誤報甚至漏報。
成本與整合:雷達系統的另一個關鍵挑戰是其成本及其與車輛的整合。天線、發射器、接收器和訊號處理器等汽車雷達組件價格昂貴,會增加車輛的整體成本。為了獲得廣泛認可,在不犧牲性能的前提下,最大限度地降低這些部件的成本至關重要。
監管和標準化挑戰:監管和標準化限制為汽車雷達系統帶來了額外的障礙。不同國家和地區對雷達頻率、功率等級和安全標準有不同的規定。這些監管差異可能會影響雷達系統的開發和部署,因為製造商必須確保其符合各種國際要求。
主要趨勢:
ADAS(高級駕駛輔助系統)的應用日益廣泛:ADAS 在當今車輛中變得日益普及,而雷達技術在其運作中發揮關鍵作用。雷達感測器提供車輛周圍環境的即時數據,為主動式車距維持定速系統、自動緊急煞車和盲點識別等功能提供支援。
雷達系統的技術進步:技術的突破顯著提升了車輛雷達系統的功能。訊號處理技術、天線設計和半導體技術的改進使得雷達系統更加精確可靠。
轉向更高頻寬:汽車雷達領域正在轉向更高頻段,主要從24 GHz轉向77 GHz和79 GHz。更高頻率的雷達系統具有多種優勢,包括更高的解析度以及物體識別和距離測量的準確性。
Automotive Radar Market size was valued at USD 2341.73 Million in 2024 and is projected to reach USD 4421.83 Million by 2031, growing at a CAGR of 8.27% from 2024 to 2031.
Automotive radar is a crucial technology in modern automobiles playing an important role in advanced driver assistance systems (ADAS) and self-driving capabilities. It uses radio waves to detect the distance, speed, and angle of objects relative to the car delivering critical information that improves safety and driving convenience.
Automotive radar is a crucial technology that has greatly improved car safety, automation, and driver-aid systems. One of the most common uses for automobile radar is in Advanced Driver Aid Systems (ADAS) which include adaptive cruise control (ACC), collision avoidance, lane change aid, and blind spot recognition.
The future application of automotive radar technology is expected to transform the transportation industry by improving vehicle safety, efficiency, and automation. As autonomous and semi-autonomous vehicles become more common, radar systems will play an increasingly important role in providing advanced driver assistance systems (ADAS) and self-driving capabilities.
The key market dynamics that are shaping the global automotive radar market include:
Key Market Drivers:
Increasing Focus on Vehicle Safety: Consumers and manufacturers are placing a greater emphasis on vehicle safety which is one of the key drivers of the automotive radar industry. As road traffic increases, so does the frequency of accidents raising awareness about the necessity of car safety measures. Automotive radars improve vehicle safety by providing tasks like collision avoidance, emergency braking, and blind-spot identification.
Radar Technology Developments: Technological developments in radar systems are helping to drive the automotive radar industry forward. Modern radar systems are growing more complex, with sharper resolution and increased object detection accuracy. The advancement of radar-on-chip (RoC) technology has made radar systems more small, cost-effective, and simple to integrate into vehicles.
Increasing Adoption of Advanced Driver Assistance Systems (ADAS): Another major factor driving the automotive radar industry is the growing use of advanced driver assistance systems (ADAS). ADAS technology such as adaptive cruise control, lane-keeping assistance, and automatic emergency braking rely significantly on radar sensors to perform properly.
Key Challenges:
Interference and Signal Processing: One of the key issues of automotive radar systems is interference and signal processing. With a rising number of cars equipped with radar systems, the potential of reciprocal interference between radars grows. This interference can damage radar systems performance resulting in erroneous distance and speed estimations, false positives, and even missing detections.
Cost and Integration: Another key difficulty for radar systems is their cost and integration into vehicles. Automotive radar components such as antennas, transmitters, receivers, and signal processors can be expensive adding to the vehicle's overall cost. To ensure widespread acceptance, it is critical to minimize the cost of these components without sacrificing performance.
Regulatory and Standardization Issues: Regulatory and standardization constraints pose additional obstacles for vehicle radar systems. Different countries and areas have different regulations on radar frequencies, power levels, and safety standards. These regulatory discrepancies can affect radar system development and deployment because manufacturers must verify that they meet a variety of international requirements.
Key Trends:
Increase in Use of Advanced Driver Assistance Systems (ADAS): ADAS are becoming more common in current automobiles with radar technology playing an important part in their operation. Radar sensors offer real-time data about the vehicle's surroundings allowing features such as adaptive cruise control, automatic emergency braking, and blind-spot recognition to function.
Technological Advancements in Radar Systems: Technological breakthroughs are considerably improving the capabilities of vehicle radar systems. Improvements in signal processing techniques, antenna design, and semiconductor technology are resulting in more precise and dependable radar systems.
Shift to Higher Frequency Bands: The automobile radar sector is shifting to higher frequency bands mainly from 24 GHz to 77 GHz and 79 GHz. Higher frequency radar systems provide various benefits including increased resolution and accuracy in object recognition and range measurement.
Here is a more detailed regional analysis of the global automotive radar market:
Asia Pacific:
In Asia Pacific, the automotive radar market is primarily driven by rising demand for advanced driver assistance systems (ADAS) and self-driving cars with China leading the way. The region's strong economic expansion, urbanization, and rising disposable incomes are driving the adoption of high-end vehicles with safety features.
A major motivator is the increasing emphasis on road safety and government rules requiring the installation of safety technology in automobiles. According to the World Health Organization, the Asia Pacific region accounts for 60% of global road traffic deaths necessitating more stringent safety measures. In China, the world's largest automobile market, the Ministry of Industry and Information Technology has set a target of 50% of new vehicles having Level 2 or higher autonomous driving.
Since April 2019, the Indian government has made ABS essential for all new cars driving up demand for automotive radar systems. Furthermore, the growing emphasis on vehicle electrification is encouraging the integration of radar technologies. According to the International Energy Agency, despite the pandemic, Chinese electric vehicle sales reached 1.2 million units in 2020, accounting for 41% of global EV sales. The Asia Pacific region's fast urbanization with the UN forecasting that 66% of the population would live in cities by 2050 creates a demand for smart transportation solutions.
Europe:
The European automotive radar market is expanding rapidly with passenger vehicles emerging as the fastest-growing sector. This spike is mostly driven by the region's growing demand for advanced driver assistance systems (ADAS) and self-driving technology.
The European Union has adopted severe car safety rules that require the adoption of modern safety equipment. According to the European Commission starting in July 2022, all new vehicles in the EU must be fitted with enhanced safety technologies such as emergency braking and lane-keeping assistance. This regulation is likely to greatly increase the adoption of vehicle radar technology.
When it comes to purchasing a vehicle, European consumers are increasingly putting safety first. According to a Euro NCAP study, 76% of European car purchasers place a high value on safety ratings when choosing a vehicle. This increased awareness has resulted in a greater demand for vehicles equipped with radar-based safety technologies. According to the European Automobile Manufacturers Association (ACEA), the market penetration of ADAS features in new cars has risen from 5% in 2016 to more than 50% in 2021 demonstrating a steady increasing trend in customer adoption of radar-based safety technology.
The Global Automotive Radar Market is segmented based on the Frequency Band, Range, Application, and Geography.
Based on the Frequency Band, the Global Automotive Radar Market is bifurcated into 24 GHz and 77 GHz. In the global automotive radar market, the 77 GHz frequency band is currently dominant over the 24 GHz band. This dominance is primarily due to the superior performance of 77 GHz radar systems which offer higher resolution, better accuracy, and enhanced object detection capabilities compared to 24 GHz systems. The 77 GHz band provides more precise data and improved target discrimination which is critical for advanced driver assistance systems (ADAS) and autonomous driving applications. Additionally, regulatory changes are phasing out 24 GHz in favor of 77 GHz to reduce interference with other services. Consequently, automakers are increasingly adopting 77 GHz radar technology to meet evolving safety standards and enhance vehicle performance.
Short Range Radar (SRR)
Medium Range Radar (MRR)
Long Range Radar (LRR)
Based on the Range, the Global Automotive Radar Market is bifurcated into Short Range Radar (SRR), Medium Range Radar (MRR), and Long Range Radar (LRR). In the global automotive radar market, Long Range Radar (LRR) is currently the dominant segment. This dominance is driven by LRR's critical role in advanced driver assistance systems (ADAS) and autonomous driving technologies. LRR provides extensive detection capabilities enabling vehicles to detect and respond to potential hazards at significant distances which is essential for features such as adaptive cruise control and collision avoidance.
Adaptive Cruise Control (ACC)
Autonomous Emergency Braking (AEB)
Blind Spot Detection (BSD)
Parking Assistance
Cross Traffic Alert (CTA)
Others
Based on the Application, the Global Automotive Radar Market is bifurcated into Adaptive Cruise Control (ACC), Autonomous Emergency Braking (AEB), Blind Spot Detection (BSD), Parking Assistance, Cross Traffic Alert (CTA), and Others. Adaptive Cruise Control (ACC) is the dominant application in the global automotive radar market. This is due to its significant role in enhancing driving comfort and safety by automatically adjusting the vehicle's speed to maintain a safe distance from the vehicle ahead. ACC systems are increasingly being integrated into both high-end and mainstream vehicles as part of Advanced Driver Assistance Systems (ADAS). The growing emphasis on reducing traffic accidents and improving driver convenience drives high demand for ACC.
North America
Europe
Asia Pacific
Rest of the world
Based on Geography, the Global Automotive Radar Market is classified into North America, Europe, Asia Pacific, and the Rest of the world. Asia Pacific is the dominant region in the global automotive radar market. This dominance is driven by the rapid expansion of automotive industries in countries like China, Japan, and South Korea which are leading in automotive innovation and production. The region's strong focus on developing advanced driver assistance systems (ADAS) and autonomous vehicles coupled with significant investments in smart infrastructure and regulatory support further bolsters its leading position.
The "Global Automotive Radar Market" study report will provide valuable insight with an emphasis on the global market. The major players in the market are Robert Bosch GmbH, Continental AG, Denso Corporation, NXP Semiconductors, Infineon Technologies, HELLA KGaA, Texas Instruments, ZF Friedrichshafen AG, Magna International, Analog Devices, Inc., and Autoliv.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.
