市場調查報告書
商品編碼
1530658
2030 年汽車夜視市場預測:按車輛類型、顯示器類型、組件類型、技術、應用和地區進行的全球分析Automotive Night Vision Market Forecasts to 2030 - Global Analysis By Vehicle Type, Display Type, Component Type, Technology, Application and By Geography |
根據Stratistics MRC預測,2024年全球汽車夜視市場規模將達47億美元,預計2030年將達到99億美元,預測期內複合年成長率為13.1%。
汽車夜視系統透過偵測標準車頭燈看不到的物體、行人和動物發出的紅外線光來提高駕駛者在照度下的能見度。這些系統使用熱成像或近紅外線照明來創建即時影像,這些影像顯示在車輛的儀表板上,以提醒駕駛員潛在的危險。透過提供比傳統車頭燈更寬的觀察範圍,汽車夜視儀提高了安全性,尤其是在光線不足的地區或惡劣天氣下,並降低了因能見度差而發生事故的風險。
根據業界估計,去年當地市場乘用車銷量約410萬輛,較2022年的379萬輛成長約8.2%。
豪華車需求不斷成長
在安全技術進步的推動下,市場對豪華車的需求激增。豪華汽車製造商擴大安裝夜視系統,以提高駕駛員在照度下的能見度和安全性。這些系統使用紅外線感測器來偵測行人、動物和車頭燈無法到達的其他障礙物,並即時提醒駕駛員。人們對具有先進安全功能的豪華汽車的日益偏好正在推動其在全球市場的採用。
認知有限
儘管技術進步正在推動需求,但消費者的理解仍然很低。主要障礙包括高成本和缺乏標準化法規。製造商在向消費者宣傳安全優勢方面面臨障礙,例如提高照度下的能見度。市場擴張取決於強調安全功能以及與自動駕駛技術整合的有效行銷策略。與汽車製造商和監管機構的合作對於克服這些障礙並推動市場成長至關重要。
人們對交通安全的興趣日益濃厚
人們對道路安全的興趣日益濃厚,正在推動市場進步,旨在意識提升在弱光照度下意識的技術不斷湧現。創新技術包括熱成像和紅外線感測器,可偵測車頭燈範圍之外的行人、動物和其他車輛。監管支援和消費者對更安全駕駛體驗的需求正在推動這一重要汽車技術領域的進一步投資和發展。
效率限制
紅外線感測器高昂的開發和整合成本等技術障礙正在阻礙市場效率。強制執行嚴格安全標準和測試要求的法律規範也是一個挑戰,影響產品創新時間表。此外,由於汽車價格上漲以及對 ADAS(高級駕駛輔助系統)的偏好不同,市場在消費者採用方面面臨障礙。這些因素共同限制了市場的有效擴展和採用。
COVID-19 的爆發對市場產生了重大影響,並擾亂了供應鍊和生產計劃。封鎖和消費者支出減少導致汽車銷售下降,並影響了夜視系統等先進安全技術的採用。然而,這場危機也可能推動未來的成長,因為它增加了人們對提高車輛安全性的興趣,並且汽車製造商在疫情後的恢復階段優先考慮創新。
軍用車輛市場預計將在預測期內成為最大的市場
軍用車輛利用先進的夜視技術來增強情境察覺,預計在預測期內將達到高峰。這些車輛通常整合紅外線熱感成像或紅外線感測器,使工作人員能夠檢測潛在威脅並有效穿越困難地形。此類技術不僅提高了安全性,而且即使在黑暗中也能提供清晰的可見度,從而提高任務成功率,確保各種軍事行動的作戰效率和戰略優勢。
行人偵測領域預計在預測期內複合年成長率最高
行人偵測部分預計在預測期內複合年成長率最高,透過在照度條件下識別行人來提高安全性。這些系統利用紅外線感測器和先進的影像處理演算法來偵測道路上或附近人員的形狀和運動。透過向駕駛員提供即時警告,該技術擴大整合到現代車輛中,這與 Masu 在不同環境條件下改善行人安全和整體駕駛體驗的更廣泛努力是一致的。
由於車輛安全技術的進步和車輛安全意識的提高,預計北美在預測期內將佔據最大的市場佔有率。該市場的主要企業致力於將紅外線感測器和攝影機整合到車輛中,以提高在照度條件下的可見度。北美,特別是美國,由於其先進汽車技術的高採用率和嚴格的安全法規,仍然是一個重要的市場。
預計亞太地區在預測期內將維持最高複合年成長率。政府法規強制規定車輛安全功能正在推動汽車夜視系統的採用。紅外線感測器、熱感成像和影像處理技術的進步正在提高夜視系統的性能和成本。夜視系統與防撞系統和主動式轉向頭燈等其他技術的整合進一步推動了市場的成長。
According to Stratistics MRC, the Global Automotive Night Vision Market is accounted for $4.7 billion in 2024 and is expected to reach $9.9 billion by 2030 growing at a CAGR of 13.1% during the forecast period. Automotive night vision systems enhance driver visibility in low-light conditions by detecting infrared radiation emitted by objects, pedestrians, or animals beyond the reach of standard headlights. These systems use thermal imaging or near-infrared illumination to create real-time images displayed on the vehicle's dashboard, alerting drivers to potential hazards. By extending visibility range beyond conventional headlights, automotive night vision enhances safety, particularly in poorly lit areas or adverse weather conditions, thereby reducing the risk of accidents caused by limited visibility.
According to industry estimates, in the last calendar year about 4.1 million passenger cars were sold on the local market, an increase of around 8.2% as compared with sales of 3.79 million vehicles in 2022.
Growing demand for luxury cars
The market is witnessing a surge in demand for luxury cars, driven by advancements in safety technology. Luxury car manufacturers are increasingly integrating night vision systems to enhance driver visibility and safety in low-light conditions. These systems utilize infrared sensors to detect pedestrians, animals, and other obstacles beyond the reach of headlights, providing real-time alerts to drivers. The growing preference for luxury vehicles equipped with advanced safety features is propelling the adoption of the market across global markets.
Limited awareness
With technology advancements driving demand, consumer understanding remains low. Key barriers include high costs and lack of standardized regulations. Manufacturers face hurdles in educating consumers on safety benefits, such as enhanced visibility in low-light conditions. Market expansion hinges on effective marketing strategies that emphasize safety features and integration with autonomous driving technologies. Collaborations with automakers and regulatory bodies are crucial to overcome these barriers and foster market growth.
Increased focus on road safety
Increased focus on road safety has propelled advancements in the market, with technologies aimed at enhancing driver awareness in low-light conditions. Innovations include thermal imaging and infrared sensors that detect pedestrians, animals, and other vehicles beyond the reach of headlights. Regulatory support and consumer demand for safer driving experiences are driving further investments and developments in this critical automotive technology segment.
Restrictions in efficiency
Technological barriers, like the high development and integration costs of infrared sensors, hinder efficiency in the market. Challenges also arise from regulatory frameworks mandating stringent safety standards and testing requirements, impacting product innovation timelines. Additionally, the market faces hurdles in consumer adoption due to higher vehicle pricing and varying preferences for advanced driver assistance systems. These factors collectively restrict the efficient expansion and adoption of the market.
The COVID-19 pandemic significantly impacted the market, disrupting supply chains and production schedules. Lockdowns and reduced consumer spending dampened vehicle sales, affecting the adoption of advanced safety technologies like night vision systems. However, the crisis also spurred interest in enhancing vehicle safety, potentially driving future growth as automotive manufacturers prioritize innovation in post-pandemic recovery phases.
The military vehicles segment is expected to be the largest during the forecast period
The military vehicles is expected to be the largest during the forecast period utilizing advanced night vision technologies to enhance situational awareness. These vehicles often integrate thermal imaging and infrared sensors, enabling personnel to detect potential threats and navigate challenging terrains effectively. Such technology not only improves safety but also enhances mission success rates by providing clear visibility in darkness, thereby ensuring operational efficiency and strategic advantage in various military operations.
The pedestrian detection segment is expected to have the highest CAGR during the forecast period
The pedestrian detection segment is expected to have the highest CAGR during the forecast period enhancing safety by identifying pedestrians in low-light conditions. These systems utilize infrared sensors and advanced image processing algorithms to detect human shapes and movements on or near roadways. By providing real-time alerts to drivers, this technology is increasingly integrated into modern vehicles, aligning with broader efforts to improve pedestrian safety and overall driving experience in diverse environmental conditions.
North America is projected to hold the largest market share during the forecast period driven by advancements in automotive safety technologies and increasing awareness about vehicle safety. Key players in this market focus on integrating infrared sensors and thermal imaging cameras into vehicles to enhance visibility in low-light conditions. North America, particularly the United States, remains a significant market due to the high adoption rate of advanced automotive technologies and stringent safety regulations.
Asia Pacific is projected to hold the highest CAGR over the forecast period. Government regulations mandating vehicle safety features are boosting the adoption of automotive night vision systems. Advances in infrared sensors, thermal imaging, and image processing technologies are enhancing the performance and affordability of night vision systems. Integration of night vision systems with other technologies like collision avoidance systems and adaptive headlights is further driving market growth.
Key players in the market
Some of the key players in Automotive Night Vision market include Magna International Inc., Valeo SA, Raytheon Company, FLIR Systems Inc., Delphi Automotive PLC, Samsung Electro-Mechanics, L3 Technologies Inc., Aisin Seiki Co Ltd, Audi AG, STMicroelectronics N.V., Robert Bosch GmbH, Hella KGaA Hueck & Co., DENSO Corporation, Daimler AG, Visteon Corporation, Texas Instruments Incorporated, NXP Semiconductors N.V., Hyundai Mobis, Infineon Technologies AG and Continental AG.
In March 2024, Samsung Electro-Mechanics introduced an all-season, weather proof automotive camera module equipped with market-leading water-repellent coating technology and heating function. The automotive camera module is planned to be mass produced within the year.
In January 2024, Valeo and Teledyne FLIR announced Agreement and first contract for thermal imaging for automotive safety systems. The collaboration brings together Valeo, the world's leader in automotive camera technologies, with Teledyne FLIR to create the next generation of multispectral sensor fusion systems for automotive safety.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.