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市場調査レポート
商品コード
1705122
自動車用レーダーセンサーの世界市場:車両タイプ別、距離別、用途別、地域別、機会、予測、2018年~2032年Automotive Radar Sensors Market Assessment, By Vehicle Type, By Range, By Application, By Region, Opportunities and Forecast, 2018-2032F |
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カスタマイズ可能
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自動車用レーダーセンサーの世界市場:車両タイプ別、距離別、用途別、地域別、機会、予測、2018年~2032年 |
出版日: 2025年04月16日
発行: Market Xcel - Markets and Data
ページ情報: 英文 230 Pages
納期: 3~5営業日
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世界の自動車用レーダーセンサーの市場規模は、予測期間の2025年~2032年に12.10%のCAGRで拡大し、2024年の31億8,000万米ドルから2032年には79億3,000万米ドルに成長すると予測されています。自動車用レーダーセンサー市場は、ADAS(先進運転支援システム)や自律走行技術に対する需要の高まりとともに急成長しています。レーダー技術は、アダプティブ・クルーズ・コントロール、衝突回避、死角検出などの主要な安全機能を提供する最前線にあります。
自動車の自動化が加速する中、あらゆる気象条件下で高精度に物体をリアルタイムで検出する必要性が高まっています。
自動車メーカーや自動車部品サプライヤーは、より優れた解像度、より広い視野、干渉緩和を備えた将来のレーダーセンサーの設計に多大な努力を傾けています。より高い周波数のミリ波レーダーシステムの移行は、歩行者、自転車、静的障害物を検知する精度を向上させ、半自律走行や自律走行を可能にします。カメラやLiDARなどの他のセンサーを超え、システムの信頼性をさらに高め、より高度な安全性を備えたモビリティを提供するエンドツーエンドの知覚システムです。
世界中で自動車の安全基準を促進する規制ニーズが採用を加速させる一方、プレミアムな安全機能に対する顧客のニーズが自動車を通じた市場浸透を後押ししています。ADAS機能の後付けが安価になるにつれて、アフターマーケットも勢いを増しています。
技術開拓が進み、手頃な価格のレーダーモジュールによって大衆車でも技術を利用できるようになり、高級車以外にも適用できるようになっています。AI主導の信号処理とセンサーフュージョンが継続的に進歩する中、自動車用レーダーセンサーは、将来のインテリジェント交通システムの中心的な決定要因であり続けています。
例えば、Texas Instruments (TI)は2025年1月、車両クラス全体の安全性を高める画期的な車載用チップを発表しました。AWRL6844 60GHz mmWaveレーダーセンサーは、シートベルト・モニタリング、子供検知、エッジAIを使用した侵入警告を1チップに統合しています。この統合ソリューションにより、進化する規制に対応しながら、コスト効率の高い先進安全システムの導入が可能になります。
このチップのオンボード処理により、外部コンピューティングの必要性がなくなり、簡素化されたアーキテクチャによりリアルタイム応答を実現します。
当レポートでは、世界の自動車用レーダーセンサー市場について調査し、市場の概要とともに、車両タイプ別、距離別、用途別、地域別動向、および市場に参入する企業のプロファイルなどを提供しています。
Global automotive radar sensor market is projected to witness a CAGR of 12.10% during the forecast period, 2025-2032, growing from USD 3.18 billion in 2024 to USD 7.93 billion in 2032. The market for automotive radar sensors is growing at a rapid pace with increasing demand for advanced driver-assistance systems (ADAS) and autonomous driving technology. Radar technology is at the forefront of delivering prime safety features such as adaptive cruise control, collision avoidance, and blind-spot detection.
As vehicle automation is picking up pace, the need for real-time detection of objects with high accuracy in all weather conditions is high in demand.
Automotive original equipment makers and automotive part suppliers are directing significant efforts into designing future radar sensors with more excellent resolution, a greater field of view, and improved interference mitigation. Higher-frequency millimeter-wave radar system migration provides better accuracy for sensing pedestrians, bicyclists, and static obstacles to enable semi-autonomous and autonomous vehicle operation. It goes beyond other sensors such as cameras and LiDAR, boosts the system's reliability even further, and is an end-to-end perception system to provide mobility with a higher degree of safety.
Regulatory needs fostering vehicle safety standards worldwide are pushing adoption quicker, while customers' need for premium safety features is driving market penetration through vehicles. The aftermarket is also gaining momentum as ADAS functionality becomes cheaper to retrofit.
Technological development is growing, and affordable radar modules are making technology accessible in mass-market cars, making it applicable beyond luxury vehicles. With continuous advancement in AI-driven signal processing and sensor fusion, car radar sensors remain a central determinant of the future of intelligent transportation systems.
For instance, in January 2025, Texas Instruments (TI) introduced breakthrough automotive chips enhancing safety across vehicle classes. The AWRL6844 60GHz mmWave radar sensor combines seat belt monitoring, child detection and intrusion alerts using edge AI in a single chip. This integrated solution enables cost-effective deployment of advanced safety systems while meeting evolving regulations.
The chip's onboard processing eliminates external computing needs, delivering real-time responses through simplified architecture.
New Products Launch Bolster the Demand
New product launches are driving growth in demand in the market for automotive radar sensors. Such products enhance the sensing technology, enhance detection accuracy, and provide improved efficiency. Through combining innovative technologies such as edge AI and enhanced power efficiency, such products make it possible to develop enhanced safety features and autonomous driving capabilities. Adequate availability of smaller, newer radar sensors enhances their application in various types of vehicles and drives the market. As a result, demand for car radar sensors continues to grow since there is a growing demand for enhancing vehicle performance and safety, driving the global automotive radar sensors market demand.
For instance, in September 2024, Rohde & Schwarz GmbH & Co. KG introduced the R&S AREG-P, built on the R&S AREG800A automotive radar target simulator. The scalable solution, which may be used as a stand-alone or integrated into NOFFZ's production tester systems, allows Tier 1 automotive radar suppliers to optimize the productivity of their production by gaining throughput, minimizing test times, and streamlining end-of-line test expenses.
Adaptive Cruise Control Drives the Global Market Demand
Adaptive Cruise Control (ACC) drives the automotive radar sensors market by integrating radar technology into precise object detection and speed fluctuation. ACC functionality relies on the utilization of radar sensors, particularly under diverse climatic conditions, making them an even better choice compared to other technologies. The increase in demand for ACC is generated by consumers' appreciation for advanced protection functionalities and mandatory government regulations requiring auto safety. With the growing demand for ACC in various vehicle segments, the demand for radar sensors is rising, thus driving innovation and growth in the automotive sector. This trend favors using radar sensors in vehicles to enhance performance and safety.
For instance, in September 2023, Robert Bosch LLC's developments in autonomous and safety technology for the U.S. ADAS market illustrate its emphasis on AI-driven sensor innovation and regionalization. Artificial-intelligence-powered 6th-generation radar sensors enhance distance measurement, angular resolution, and object detection-facilitating robust identification of motorcycles and small objects in SAE Levels 0-3 automation.
Passenger Vehicles Dominate the Global Market Growth
Passenger vehicles dominate the market for automotive radar sensors owing to the widespread use of driver-assistance features and advanced safety technologies. The growing demand for passenger car installation with Radar sensors is driven by end-users who seek advanced safety features like blind-spot monitoring, adaptive cruise control, and automatic emergency braking. Passenger car manufacturers launched automotive radar sensors due to vehicle safety regulations. Secondly, passenger cars have a massive market share since radar sensors come as an add-on standard feature in most car models to provide added protection and convenience while traveling personally.
For instance, in 2023, Polestar Performance AB announced the launch of the Polestar 3, a future-looking electric SUV, which integrates forward-looking styling, power, and environmental sustainability with high-tech safety and technology amenities. The vehicle has an extensive list of sensors, consisting of five radars, four interior radars, and twelve ultrasonic sensors, that aid a variety of advanced driver-assistance systems (ADAS), including adaptive cruise control, lane-keeping assistance, and pedestrian recognition.
Asia-Pacific Dominates the Market Growth
Asia-Pacific region holds the majority market share for automotive radar sensors, attributed to the industry's strong base of automobile production and surging need for superior safety in automotive products. Government emphasis on technical advances in this sector drives demand for radar sensors. Country automakers from China, Japan, and South Korea, push forward development through autonomous driving technology and electric driving technology, significantly escalating radar sensor demand. Domestic players are formulating economic solutions, so radar sensors find their way across various vehicle segments.
For instance, UHNDER Inc. collaborated with Seoul-based company Bitsensing in April 2023 to produce 4D digital imaging radar solely for top Korean automotive original equipment manufacturers (OEMs). The radar technology enhances object detection performance in hostile conditions-i.e., heavy rain, snow, fog, and glare-through 4D data acquisition (range, Doppler, azimuth, elevation) and low-level fusion with cameras to guarantee performance.
Future Market Scenario (2025 - 2032F)
The integration of radar sensors in autonomous vehicles will continue to drive market growth, as these sensors are crucial for safety and performance in self-driving cars.
Advancements in radar sensor technology, such as improved detection capabilities and integration with AI, will enhance their role in advanced driver-assistance systems (ADAS) and autonomous driving45.
Stricter safety regulations will further boost the demand for radar sensors, as they are essential for features like adaptive cruise control and emergency braking.
The Asia-Pacific region is expected to experience significant growth due to increasing vehicle production and consumer demand for advanced safety features.
Key Players Landscape and Outlook
The competitive landscape of the automotive radar sensors market is highly competitive, with numerous major players vying for market share. Companies are prominent in the industry, focusing on enhancing production capabilities and expanding facilities to secure a competitive advantage. These firms are also investing in research and development to create high-performance, compact radars at reduced costs. Strategic collaborations, partnerships, and mergers and acquisitions are common strategies used to strengthen market positions. Additionally, emerging technologies and innovations in radar sensor design continue to drive competition, as companies strive to offer more efficient and precise solutions for advanced driver-assistance systems (ADAS) and autonomous vehicles.
For instance, in January 2024, NXP Semiconductors N.V.'s extension of its automotive radar one-chip family with the SAF86xx exemplifies a significant advancement in radar technology for software-defined vehicles.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.