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市场调查报告书
商品编码
1722675
2025 年至 2033 年 LiDAR 市场报告(按安装类型、组件、应用和地区)LiDAR Market Report by Installation Type, Component, Application, and Region 2025-2033 |
2024 年全球光达市场规模达 31 亿美元。展望未来, IMARC Group预计到 2033 年市场规模将达到 133 亿美元,2025-2033 年期间的成长率 (CAGR) 为 17.66%。自动驾驶汽车的需求、城市人口的成长以及精准农业的日益发展正在促进市场的成长。
主要市场驱动因素:对 LiDAR 扫描仪改进的自动处理能力的需求不断增加。这一点,加上 3D 影像技术的日益普及,正在推动市场的发展。
主要市场趋势:LiDAR 在众多行业中的应用日益广泛,创新技术的采用正在促进市场成长。
地理趋势:由于自动驾驶汽车地图应用程式拥有强大的监管框架,北美占据最大的市场份额。
竞争格局:LiDAR 产业的一些主要市场参与者包括 Faro Technologies Inc、Innoviz Technologies Ltd.、LeddarTech Inc.、Leica Geosystems AG(Hexagon AB)、NV5 Global Inc.、Quanergy Systems Inc.、RIEGL Laser Measurement Systems GmbH、Sick AG、Teledyne Technologies Inc.、RIEGL Laser Measurement Systems GmbH、Sick AG、Teledyne Technologies Inc.、Trimble Inc., Lidne、Valnen Inc.、Aorne Inc. 等。
挑战与机会:虽然市场面临对 LiDAR 系统缺乏认识等挑战,这对市场产生了影响,但它也在 LiDAR 与人工智慧 (AI) 等其他技术的融合中遇到了机会。
自动驾驶汽车(AV)需求不断成长
IMARC 集团的报告显示,2023 年全球自动驾驶汽车市场规模将达 810 亿美元。自动驾驶汽车使用高科技感测器来识别周围环境状况并独立导航交通环境。由于安全是自动驾驶汽车发展的重中之重,因此对提供精确可靠检测的 LiDAR 感测器技术的需求不断增加。除了摄影机、雷达和其他感测器外,LiDAR 还用于即时 360 度全方位观察 AV 周围环境。 LiDAR 感测器提供精确的距离测量,使 AV 能够做出明智的决策,并在复杂的城市环境和恶劣的天气条件等所有驾驶条件下实现安全导航。
城市人口不断增加
世界银行的报告称,到2023年,约有50%的人口居住在城市地区。开发高效的交通系统和交通管理解决方案的需求日益增长。 LiDAR技术用于收集道路网络、交通模式和行人流量的信息,进而帮助交通规划人员优化交通信号、设计更安全的路口并更有效地规划公共交通路线。除此之外,城市人口的增加也导致需要更多的基础建设,例如道路、建筑和公用设施。 LiDAR 技术是城市规划和发展的主要组成部分,因为它可以提供城市环境的 3D 地图和建模。城市规划者利用雷射雷达资料来评估土地利用、研究交通网络并制定城市布局以有效利用空间和资源,从而促进雷射雷达市场的成长。
精准农业的采用日益增多
LiDAR技术在精准农业的应用,可减少投入、限制环境影响、提高资源效率,实现永续农业。与此相符的是,LiDAR 技术透过提供植物间距、行距和作物成熟度的精确测量来帮助精准种植和收穫。这些资料使农民能够调整种植密度,减少收穫期间的作物损害,提高收穫效率,从而提高产量并降低营运成本。根据IMARC集团的报告,到2032年全球精准农业市场规模预计将达到202亿美元。
机载光达系统安装在飞机或无人机上,使它们能够在短时间内以极高的精度和效率拍摄大片地形。这种能力显示机载雷射雷达非常适合地形测绘、土地测量、城市规划和林业管理等任务。除此之外,机载雷射雷达也常用于基础设施检查、灾害管理和环境监测,这些领域涉及偏远或难以进入的区域。
地面光达系统是基于地面,通常安装在三脚架或车辆上,因为它们可以高精度地记录静止物体或环境的 3D资料。它们用于地形测绘、城市规划、基础设施监测和文化遗产保护等多种应用。在测绘领域,地面雷射雷达系统非常适合捕捉详细的地形和建筑特征,有助于创建精确的数位高程模型 (DEM) 和 3D 城市模型。这反过来又催化了全球对光达的需求。
雷射扫描器占业界最大份额
雷射扫描器发射雷射光束并测量光线击中物体后返回所需的时间,从而创建周围环境的高度详细的 3D 地图。在汽车等行业,雷射扫描器是自动驾驶汽车和先进驾驶辅助系统(ADAS) 的重要组成部分,为导航、障碍物侦测和防撞提供关键资料。此外,雷射扫描器广泛应用于地形测绘、城市规划、林业管理和基础设施检查。
走廊测绘代表着领先的细分市场
走廊测绘涉及道路、高速公路、铁路、管道和电力线等线性特征的详细测量和测绘。这些基础设施项目需要精确的资料以用于设计、施工和维护。即使在崎岖的地形或植被茂密的地区,LiDAR 技术也能快速且有效率地提供高解析度 3D资料,在走廊测绘方面具有显着优势。这些资料使工程师、城市规划人员和政府机构能够评估现有的基础设施状况、规划新的发展并有效优化交通网络,从而增加雷射雷达市场收入。
北美引领市场,占据最大的光达市场份额
该报告还对所有主要区域市场进行了全面的分析,包括北美(美国和加拿大);亚太地区(中国、日本、印度、韩国、澳洲、印尼等);欧洲(德国、法国、英国、义大利、西班牙、俄罗斯等);拉丁美洲(巴西、墨西哥等);以及中东和非洲。根据报告,北美是雷射雷达最大的区域市场。
根据国际贸易管理局的数据,2021 年加拿大轻型车市场成长 6.6%,达到 164 万辆。美国轻型车销量的成长推动了 LiDAR 的需求,这主要是因为 LiDAR 技术越来越多地融入先进驾驶辅助系统(ADAS) 和自动驾驶汽车 (AV) 平台。此外,北美拥有大量成熟的光达技术提供者和关键参与者,推动了产业技术的创新和进步。此外,该地区汽车、航太、国防和农业等多个行业对光达的需求也不断增长。
市场研究报告也对市场竞争格局进行了全面的分析。也提供了所有主要 LiDAR 公司的详细资料。 LiDAR 产业的一些主要市场参与者包括 Faro Technologies Inc、Innoviz Technologies Ltd.、LeddarTech Inc.、Leica Geosystems AG(Hexagon AB)、NV5 Global Inc.、Quanergy Systems Inc.、RIEGL Laser Measurement Systems GmbH、Sick AG、daredyne Technologies Inc.、RIEGL Laser Measurement Systems GmbH、Sick AG、daredyne Technologies Inc、Trimble Inc.、Valeo 和 Velody
(请注意,这只是关键参与者的部分列表,完整列表在报告中提供。)
LiDAR 行业的主要参与者提供创新技术以在竞争激烈的市场环境中扩张和生存。此外,主要参与者不断投资于研发 (R&D) 活动以增加其产品供应,从而促进市场的成长。除此之外,许多主要製造商也在采取措施扩大其全球影响力,LiDAR 市场最近的发展包括新产品发布、併购、增加投资以及与其他行业的合作。例如,2022 年,FARO Technologies, Inc. 宣布收购 SiteScape,后者是 AEC 和 O&M 市场 LiDAR 3D 扫描软体解决方案的创新者。 SiteScape 让配备 LiDAR 的行动装置能够轻鬆地以数位方式捕捉室内空间。
The global LiDAR market size reached USD 3.1 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 13.3 Billion by 2033, exhibiting a growth rate (CAGR) of 17.66% during 2025-2033. The demand for autonomous vehicles, rising population in urban areas, and increasing precision agriculture is strengthening the growth of the market.
Major Market Drivers: There is a rise in the demand for improved automated processing capability of LiDAR scanners. This, along with the increasing adoption of 3D imagining technology, is driving the market.
Key Market Trends: The growing applications of LiDAR in numerous industries and adoption of innovative technologies are facilitating the market growth.
Geographical Trends: North America holds the largest segment because of strong regulatory framework for autonomous vehicles mapping application.
Competitive Landscape: Some of the major market players in the LiDAR industry include Faro Technologies Inc, Innoviz Technologies Ltd., LeddarTech Inc., Leica Geosystems AG (Hexagon AB), NV5 Global Inc., Quanergy Systems Inc., RIEGL Laser Measurement Systems GmbH, Sick AG, Teledyne Technologies Inc, Trimble Inc., Valeo, Velodyne Lidar Inc., among many others.
Challenges and Opportunities: While the market faces challenges like a lack of awareness about the LiDAR systems, which impacts the market, it also encounters opportunities in the integration of LiDAR with other technologies like artificial intelligence (AI).
Rising demand for autonomous vehicles (AVs)
The IMARC Group's report shows that the global autonomous vehicles market reached US$ 81.0 Billion in 2023. AVs use high-tech sensors to identify the conditions of the surroundings and navigate the traffic environment independently. As safety is a top priority in the development of automated vehicles, the need of LiDAR sensor technology, which offer precise and reliable detection, is increasing continuously. Besides the cameras, radar and other sensors, LiDAR is used to create a real-time 360-degree view of the surroundings of AVs. LiDAR sensors provide precise distance measurements, allowing for informed decisions by AVs and safe navigation in all driving conditions like complex urban settings and challenging weather conditions.
Growing population in urban areas
The World Bank's report claims that around 50% of the population was residing in urban areas in 2023. There is a growing need for the development of efficient transportation systems and traffic management solutions. LiDAR technology is used to gather information on road networks, traffic patterns, and pedestrian flows, which, in turn, helps the transportation planners to optimize traffic signals, design the safer intersections, and plan the public transportation routes more efficiently. Besides this, the increasing urban population is leading to the need for more infrastructure development, such as roads, buildings and utilities. LiDAR technology is the main component of urban planning and development as it provides the 3D mapping and modeling of urban environments. Urban planners utilize LiDAR data to evaluate land use, study the transportation networks and to make the city layout for efficient use of space and resources, thereby contributing to the LiDAR market growth.
Increasing adoption of precision agriculture
The application of LiDAR technology in precision agriculture makes it possible to carry out sustainable farming by reducing the input usage, limiting the environmental impact, and improving the resource efficiency. In line with this, LiDAR technology aids in the precision planting and harvesting by providing the exact measurements of plant spacing, row alignment, and crop maturity. This data enables farmers to modify the planting densities, reduce the crop damage during harvesting, and increase the harvesting efficiency, which, consequently, results in higher yields and lower operational costs. According to the IMARC Group's report, the global precision agriculture market is expected to reach US$ 20.2 Billion by 2032.
Airborne LiDAR systems are installed on the aircraft or drones which enable them to shoot a large portion of the terrain in a short time with great precision and efficiency. This ability shows that airborne LiDAR is perfect for tasks, such as topographic mapping, land surveying, urban planning, and forestry management. Besides this, airborne LiDAR is commonly used in the inspection of infrastructure, disaster management, and environmental monitoring, which involve remote or inaccessible areas, where access is not possible.
Terrestrial LiDAR systems are ground-based and usually fitted on tripods or vehicles, as they can record the 3D data of stationary objects or environments with high accuracy. They are used in several applications like topographic mapping, urban planning, infrastructure monitoring, and cultural heritage preservation. In the fields of surveying and mapping, terrestrial LiDAR systems are perfect for capturing detailed terrain and building feature, which helps in creating the accurate digital elevation models (DEMs) and the 3D city models. This, in turn, is catalyzing the LiDAR demand across the globe.
Laser scanners holds the largest share of the industry
Laser scanners emit laser beams and measure the time it takes for the light to return after hitting an object, thus creating highly detailed 3D maps of the surrounding environment. In industries, such as automotive, laser scanners are essential components for autonomous vehicles and advanced driver assistance systems (ADAS), providing a crucial data for navigation, obstacle detection, and collision avoidance. Additionally, laser scanners are extensively used in topographic mapping, urban planning, forestry management, and infrastructure inspection.
Corridor mapping represents the leading market segment
Corridor mapping involves the detailed surveying and mapping of linear features such as roads, highways, railways, pipelines, and power lines. These infrastructure projects require precise and accurate data for design, construction, and maintenance purposes. LiDAR technology offers significant advantages in corridor mapping by providing high-resolution 3D data quickly and efficiently, even in challenging terrains or densely vegetated areas. This data enables engineers, urban planners, and government agencies to assess existing infrastructure conditions, plan new developments, and optimize transportation networks effectively, thereby increasing the LiDAR market revenue.
North America leads the market, accounting for the largest LiDAR market share
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, North America represents the largest regional market for LiDAR.
As per the International Trade Administration, Canada light vehicle market increased 6.6% to 1.64 million units in 2021. The growing sales of light vehicles in the United States are driving the demand of LiDAR primarily due to the increasing integration of LiDAR technology into advanced driver assistance systems (ADAS) and autonomous vehicle (AV) platforms. In addition, North America consists of large number of established LiDAR technology providers and key players, thereby driving innovations and advancements in technology in the industry. Moreover, there is a rise in the demand for LiDAR across multiple industries, such as automotive, aerospace, defense, and agriculture, in the region.
The market research report has also provided a comprehensive analysis of the competitive landscape in the market. Detailed profiles of all major LiDAR companies have also been provided. Some of the major market players in the LiDAR industry include Faro Technologies Inc, Innoviz Technologies Ltd., LeddarTech Inc., Leica Geosystems AG (Hexagon AB), NV5 Global Inc., Quanergy Systems Inc., RIEGL Laser Measurement Systems GmbH, Sick AG, Teledyne Technologies Inc, Trimble Inc., Valeo, and Velodyne Lidar Inc.
(Please note that this is only a partial list of the key players, and the complete list is provided in the report.)
Major players in the LiDAR industry offers innovative technologies to expand and survive in a competitive market environment. Additionally, key players are continuously investing in research and development (R&D) activities to increase their product offering, thereby bolstering the growth of the market. Besides this, many key manufacturers are also undertaking initiatives to grow their footprint across the globe, with LiDAR market recent developments like new product launches, mergers and acquisition, increasing investments, and collaborations with other industries. For instance, in 2022, FARO Technologies, Inc. announced the acquisition of SiteScape, an innovator in LiDAR 3D scanning software solutions for the AEC and O&M markets. SiteScape enables LiDAR equipped mobile devices to easily capture indoor spaces digitally.