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PUBLISHER: Market Xcel - Markets and Data | PRODUCT CODE: 1599829

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PUBLISHER: Market Xcel - Markets and Data | PRODUCT CODE: 1599829

Global LiDAR Market Assessment, By Installation, By Component, By Type, By Range, By Application, By Region, Opportunities and Forecast, 2017-2031F

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Global LiDAR market is projected to witness a CAGR of 16.65% during the forecast period 2024-2031, growing from USD 2.08 billion in 2023 to USD 7.11 billion in 2031. The global light detection and ranging market has expanded rapidly in recent years, owing to the enhanced automated processing capability of LiDAR scanners and systems in terms of picture resolution and faster data processing compared to other technologies. The growing need for 3D images in applications such as military and defense, topographical surveys, civil engineering, and corridor mapping will likely fuel market expansion over the forecast period. LiDAR can create detailed 3D models of urban environments, helping planners visualize new developments, assess land use, and improve infrastructure. The installation of enhanced safety features is rising at an exponential rate. Furthermore, in nations such as the United States, self-driving cars are legally permitted on the road; these vehicles are equipped with LiDAR for GPS and navigation purposes, propelling the global LiDAR market growth shortly.

LiDAR is used to monitor weather patterns and variations in the environment. For instance, Canadian environmental monitoring stations use LiDAR technology to measure tropospheric pollution. LiDAR stations are important in monitoring volcanic ash, which can impede air travel. The method can be used to map an oil sand monitoring system. Due to its improved precision, LiDAR technology is expected to have a wide range of applications, driving market growth throughout the forecast period.

Furthermore, advancements in LiDAR technology, including the development of solid-state LiDARs are fueling market growth. Solid-state LiDAR, unlike traditional mechanical LiDAR systems, use stationary components, resulting in a more compact, sturdy, and, ultimately, less expensive solution. This advancement makes LiDAR integration more realistic in a variety of industries, such as automotive. It paves the way for applications such as drone-based mapping, robotics, and smart agriculture, which is anticipated to further drive market expansion.

For instance, in January 2024, PreAct Technologies, Inc., a US-based developer of near-field flash LiDAR technology, introduced new sensors, Sahara, Borrego, and Moab, designed for various industries including agriculture, healthcare, smart cities, security, transportation, or any field requiring detailed 3D mapping and modeling.

Increasing Demand for Autonomous Vehicles to Drive Market Growth

The demand for autonomous vehicles (AVs), equipped with advanced sensors to detect their surroundings and navigate the road environment automatically, drives market growth. As safety becomes a primary concern in the development of driverless cars, the demand for LiDAR sensor technology, which provides precise and reliable detection, grows steadily. In addition to cameras, radar, and other sensors, LiDAR is utilized to generate a real-time 360-degree image of an AV's surroundings. LiDAR sensors provide real-time information allowing AVs to make vehicle maneuver decisions and navigate safely in a variety of driving scenarios, including complicated urban environments and tough weather. Furthermore, major companies are launching new advanced LiDARs to tap into the growing demand for autonomous vehicles.

For instance, in September 2024, Hesai Technology Co., Ltd. launched its new LiDAR solution, OT128, at the IAA Transportation trade fair in Hannover, Germany. The 360° long-range LiDAR offers exceptional sensing performance and certified automotive-grade reliability. It can detect objects near and far, providing excellent surface detection, even for objects that cameras struggle to identify, such as black cars. The OT128 has the potential to drive innovation in the commercial automotive sector, enabling scalable commercial deployment of self-driving trucks, autonomous shuttles, last-mile delivery vehicles, and industrial automation.

Environmental Monitoring to Drive Market Demand

LiDAR technology allows precise and detailed mapping of environmental elements such as terrain, land cover, vegetation, and water bodies. This level of precision enables more precise assessments of ecological systems, which helps with conservation, land management, and natural resource monitoring. LiDAR is useful for assessing flood risk as it provides high-resolution elevation data. This information is used to model floodplains, identify risk areas, and help design flood management methods, thereby improving disaster response. LiDAR technology is used to monitor and manage natural resources such as soil erosion, water, and coastal areas. It offers critical data for sustainable resource management, helps to understand the influence of human activities on environmental resources, and promotes responsible natural resource use. Manufacturers are increasingly launching products related to environmental monitoring to improve crop yields and resource management by optimizing irrigation and pesticide consumption.

For instance, in April 2024, University of Science and Technology of China researchers developed a single-photon airborne LiDAR system for high-definition 3D images. This system uses a highly sensitive detector to register individual photons reflected off surfaces, enhancing the accuracy and resolution of 3D maps. Additionally, the system uses a low-powered laser and a small optical aperture while maintaining good detection range and imaging resolution, making it ideal to be deployed on drones or satellites to monitor forest landscape changes or generate 3D terrain maps in earthquake-affected areas.

Growing Urban Population and Infrastructure Development

LiDAR technology is crucial for smart city planning, development, and management. There is an increasing demand for the development of efficient transportation networks and traffic management solutions. LiDAR technology is used to collect data on road networks, traffic patterns, and pedestrian flows, allowing transportation planners to optimize traffic signals, construct safer crossings, and plan public transportation routes more effectively. Also, the growing urban population necessitates increased infrastructure construction, including roads, buildings, and utilities. LiDAR technology is a critical component of urban planning and development since it enables 3D mapping and modeling of urban areas.

For instance, in May 2024, LiDAR technology company Seyond, Inc., partnered with Peachtree Corners, a 5G smart city in Georgia, the United States, and Curiosity Lab to deploy and validate its LiDAR solutions in real-world environments. The LiDAR system, designed for automotive-grade hardware, can map large environments and detect vehicles and pedestrians. The system is deployed within Curiosity Lab's smart city ecosystem and at a select intersection in Peachtree Corners. The combined technologies collect real-world data to implement traffic and VRU signal solutions, making intersections safer and more efficient. The city can use the data collected to adjust traffic signals, pedestrian crossing signals, and intersection design, addressing specific safety and efficiency needs.

Corridor Mapping Segment to Dominate the Market Share

The global LiDAR market is dominated by the corridor mapping application segment during the forecast period. Corridor mapping is the detailed survey and mapping of linear features such as roads, highways, railways, pipelines, and power lines. These infrastructure projects require precise and reliable design, construction, and upkeep data. LiDAR technology has major advantages in corridor mapping since it produces high-resolution 3D data rapidly and effectively, especially in difficult terrain or highly vegetated areas. Engineers, urban planners, and government agencies can use this data to assess existing infrastructure issues, design new developments, and successfully optimize transportation networks, further increasing LiDAR market growth.

For instance, in March 2024, Leica Geosystems AG introduced the Leica TerrainMapper-3 airborne LiDAR sensor, offering three scan patterns for improved productivity and customization. These patterns include circles for 3D modeling of urban areas or steep terrains, ellipses for data capture for traditional mapping, and skew ellipses for improved point density for infrastructures and corridor mapping.

Solid-state LiDAR to Represent Highest Growth in the Global LiDAR Market

The solid-state LiDAR technology type will dominate the market over the forecast period. Unlike mechanical LiDAR, which includes hefty rotating components, solid-state LiDAR has no moving parts. This leads to a smaller, lighter, and more streamlined design. It is suitable for a wide range of applications, particularly in closed quarters, due to its small size. For example, the smaller size of solid-state LiDAR allows car manufacturers to integrate it seamlessly into a variety of vehicle models, promoting its adoption in the automotive industry. Furthermore, the absence of moving parts in solid-state LiDAR eliminates the wear and tear associated with mechanical LiDAR's rotating mechanics. This reduces the possibility of failures and malfunctions, resulting in a more durable and reliable sensor. Solid-state LiDAR technology is quickly developing. The goal of research and development is to improve the range, resolution, and speed of data collection. This ongoing research raises optimism for solid-state LiDAR's ability to deliver the performance needed for a wide range of demanding applications such as drones and precision agriculture.

For instance, in May 2024, Lumotive and Hokuyo Automatic Co., Ltd., announced the commercial release of the YLM-10LX 3D LiDAR sensor, powered by Lumotive's Light Control Metasurface (LCM) optical beamforming technology. This groundbreaking product transforms 3D sensing in industrial automation and service robotics applications by eliminating the need for bulky, expensive, and fragile mechanical moving parts found in traditional LiDAR systems. The LCM chips enable unparalleled stability and accuracy in 3D object recognition and distance measurement, handling multi-path interference.

North America to Dominate the Global LiDAR Market Share

North America dominates the market due to its emphasis on self-driving cars, geospatial mapping, and infrastructure development. Growing R&D investments and a significant presence of tech companies stimulate innovation in LiDAR technology, which is required for enhanced vehicle navigation and precise mapping. The region's infrastructure projects benefit from LiDAR's detailed surveying and monitoring capability. Supportive regulatory regimes help to increase the adoption and integration of the LiDAR system. This combination of technology innovation, investment, and favorable legislation reinforces North America's status as a center for cutting-edge LiDAR applications.

For instance, in April 2024, GeoCue Group, Inc., and CHC Navigation (Shanghai Huace Navigation Technology Ltd.) launched the TrueView 540, a survey-grade LiDAR system designed for aerial surveying applications in the North American market. The system, developed by CHC Navigation, uses advanced LiDAR payload and LP360 3D Point Cloud Processing Software for efficiency and flexibility.

Future Market Scenario (2024 - 2031F)

LiDAR capabilities, in combination with artificial intelligence, are expected to expand in connected cars and ADAS applications.

The increasing demand for solid-state LiDARs in newer application areas such as mining, agriculture, and urban city planning, is anticipated to drive market growth further.

As industries adopt Industry 4.0 concepts to improve operational efficiency, LiDAR integration with robotic systems is projected to increase, cementing its role as a cornerstone technology in the continuing industrial revolution.

Key Players Landscape and Outlook

The global LiDAR market is fragmented due to the presence of numerous companies that are spending heavily on research and development (R&D) to launch innovative LiDAR products. Key players are adopting various strategic initiatives, such as expansion of product portfolios, collaborations, mergers, and acquisitions, to speed up the development and deployment of LiDAR technology.

In September 2024, Cron AI and Lumotive, Inc. partnered to develop a solid-state LiDAR design with deep learning capabilities, utilizing Lumotive's Light Control Metasurface (LCM) chip for enhanced 3D sensing. This partnership marks a significant leap in 3D perception technology, combining strengths into a streamlined design built on Lumotive's 3D Sensing development kits. The innovative development lays the foundation for intelligent sensors that integrate LiDAR data, transforming it into actionable intelligence through a robust deep learning layer.

Product Code: MX12305

Table of Contents

1. Project Scope and Definitions

2. Research Methodology

3. Executive Summary

4. Voice of Customer

  • 4.1. Product and Market Intelligence
  • 4.2. Brand Awareness
  • 4.3. Factors Considered in Purchase Decisions
    • 4.3.1. Technical Specifications and Capabilities
    • 4.3.2. Cost and Budget
    • 4.3.3. Customization and Flexibility
    • 4.3.4. Support and Service
    • 4.3.5. Regulatory and Compliance Issues
    • 4.3.6. Vendor Reputation and Reliability
  • 4.4. Consideration of Privacy and Regulations

5. Global LiDAR Market Outlook, 2017-2031F

  • 5.1. Market Size Analysis & Forecast
    • 5.1.1. By Value
  • 5.2. Market Share Analysis & Forecast
    • 5.2.1. By Installation
      • 5.2.1.1. Airborne
      • 5.2.1.2. Terrestrial
    • 5.2.2. By Component
      • 5.2.2.1. Laser Scanners
      • 5.2.2.2. Navigation and Positioning Systems
      • 5.2.2.3. Others
    • 5.2.3. By Type
      • 5.2.3.1. Mechanical
      • 5.2.3.2. Solid-state
    • 5.2.4. By Range
      • 5.2.4.1. Low Range (Less Than 200m)
      • 5.2.4.2. Medium Range (200 to 500m)
      • 5.2.4.3. High Range (More Than 500m)
    • 5.2.5. By Application
      • 5.2.5.1. Corridor Mapping
      • 5.2.5.2. Engineering
      • 5.2.5.3. Environment
      • 5.2.5.4. ADAS and Driverless Cars
      • 5.2.5.5. Exploration
      • 5.2.5.6. Urban Planning
      • 5.2.5.7. Cartography
      • 5.2.5.8. Meteorology
      • 5.2.5.9. Others
    • 5.2.6. By Region
      • 5.2.6.1. North America
      • 5.2.6.2. Europe
      • 5.2.6.3. Asia-Pacific
      • 5.2.6.4. South America
      • 5.2.6.5. Middle East and Africa
    • 5.2.7. By Company Market Share Analysis (Top 5 Companies and Others - By Value, 2023)
  • 5.3. Market Map Analysis, 2023
    • 5.3.1. By Installation
    • 5.3.2. By Component
    • 5.3.3. By Type
    • 5.3.4. By Range
    • 5.3.5. By Application
    • 5.3.6. By Region

6. North America LiDAR Market Outlook, 2017-2031F*

  • 6.1. Market Size Analysis & Forecast
    • 6.1.1. By Value
  • 6.2. Market Share Analysis & Forecast
    • 6.2.1. By Installation
      • 6.2.1.1. Airborne
      • 6.2.1.2. Terrestrial
    • 6.2.2. By Component
      • 6.2.2.1. Laser Scanners
      • 6.2.2.2. Navigation and Positioning Systems
      • 6.2.2.3. Others
    • 6.2.3. By Type
      • 6.2.3.1. Mechanical
      • 6.2.3.2. Solid-state
    • 6.2.4. By Range
      • 6.2.4.1. Low Range (Less Than 200m)
      • 6.2.4.2. Medium Range (200 to 500m)
      • 6.2.4.3. High Range (More Than 500m)
    • 6.2.5. By Application
      • 6.2.5.1. Corridor Mapping
      • 6.2.5.2. Engineering
      • 6.2.5.3. Environment
      • 6.2.5.4. ADAS and Driverless Cars
      • 6.2.5.5. Exploration
      • 6.2.5.6. Urban Planning
      • 6.2.5.7. Cartography
      • 6.2.5.8. Meteorology
      • 6.2.5.9. Others
    • 6.2.6. By Country Share
      • 6.2.6.1. United States
      • 6.2.6.2. Canada
      • 6.2.6.3. Mexico
  • 6.3. Country Market Assessment
    • 6.3.1. United States LiDAR Market Outlook, 2017-2031F*
      • 6.3.1.1. Market Size Analysis & Forecast
        • 6.3.1.1.1. By Value
      • 6.3.1.2. Market Share Analysis & Forecast
        • 6.3.1.2.1. By Installation
          • 6.3.1.2.1.1. Airborne
          • 6.3.1.2.1.2. Terrestrial
        • 6.3.1.2.2. By Component
          • 6.3.1.2.2.1. Laser Scanners
          • 6.3.1.2.2.2. Navigation and Positioning Systems
          • 6.3.1.2.2.3. Others
        • 6.3.1.2.3. By Type
          • 6.3.1.2.3.1. Mechanical
          • 6.3.1.2.3.2. Solid-state
        • 6.3.1.2.4. By Range
          • 6.3.1.2.4.1. Low Range (Less Than 200m)
          • 6.3.1.2.4.2. Medium Range (200 to 500m)
          • 6.3.1.2.4.3. High Range (More Than 500m)
        • 6.3.1.2.5. By Application
          • 6.3.1.2.5.1. Corridor Mapping
          • 6.3.1.2.5.2. Engineering
          • 6.3.1.2.5.3. Environment
          • 6.3.1.2.5.4. ADAS and Driverless Cars
          • 6.3.1.2.5.5. Exploration
          • 6.3.1.2.5.6. Urban Planning
          • 6.3.1.2.5.7. Cartography
          • 6.3.1.2.5.8. Meteorology
          • 6.3.1.2.5.9. Others
    • 6.3.2. Canada
    • 6.3.3. Mexico

All segments will be provided for all regions and countries covered

7. Europe LiDAR Market Outlook, 2017-2031F

  • 7.1. Germany
  • 7.2. France
  • 7.3. Italy
  • 7.4. United Kingdom
  • 7.5. Russia
  • 7.6. Netherlands
  • 7.7. Spain
  • 7.8. Turkey
  • 7.9. Poland

8. Asia-Pacific LiDAR Market Outlook, 2017-2031F

  • 8.1. India
  • 8.2. China
  • 8.3. Japan
  • 8.4. Australia
  • 8.5. Vietnam
  • 8.6. South Korea
  • 8.7. Indonesia
  • 8.8. Philippines

9. South America LiDAR Market Outlook, 2017-2031F

  • 9.1. Brazil
  • 9.2. Argentina

10. Middle East and Africa LiDAR Market Outlook, 2017-2031F

  • 10.1. Saudi Arabia
  • 10.2. UAE
  • 10.3. South Africa

11. Demand Supply Analysis

12. Porter's Five Forces Analysis

13. PESTLE Analysis

14. Pricing Analysis

15. Market Dynamics

  • 15.1. Market Drivers
  • 15.2. Market Challenges

16. Market Trends and Developments

17. Case Studies

18. Competitive Landscape

  • 18.1. Competition Matrix of Top 5 Market Leaders
  • 18.2. SWOT Analysis for Top 5 Players
  • 18.3. Key Players Landscape for Top 10 Market Players
    • 18.3.1. FARO Technologies, Inc.
      • 18.3.1.1. Company Details
      • 18.3.1.2. Key Management Personnel
      • 18.3.1.3. Products and Services
      • 18.3.1.4. Financials (As Reported)
      • 18.3.1.5. Key Market Focus and Geographical Presence
      • 18.3.1.6. Recent Developments/Collaborations/Partnerships/Mergers and Acquisition
    • 18.3.2. Leica Geosystems AG
    • 18.3.3. Teledyne Technologies Incorporated
    • 18.3.4. LeddarTech Holdings, Inc.
    • 18.3.5. Quanergy Solutions, Inc.
    • 18.3.6. Trimble, Inc.
    • 18.3.7. Luminar Technolgies, Inc.
    • 18.3.8. Ouster, Inc.
    • 18.3.9. SICK AG
    • 18.3.10. Leishen Intelligent Systems Co., Ltd.

Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.

19. Strategic Recommendations

20. About Us and Disclaimer

Product Code: MX12305

List of Tables

  • Table 1. Pricing Analysis of Products from Key Players
  • Table 2. Competition Matrix of Top 5 Market Leaders
  • Table 3. Mergers & Acquisitions/ Joint Ventures (If Applicable)
  • Table 4. About Us - Regions and Countries Where We Have Executed Client Projects

List of Figures

  • Figure 1. Global LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 2. Global LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 3. Global LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 4. Global LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 5. Global LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 6. Global LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 7. Global LiDAR Market Share (%), By Region, 2017-2031F
  • Figure 8. North America LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 9. North America LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 10. North America LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 11. North America LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 12. North America LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 13. North America LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 14. North America LiDAR Market Share (%), By Country, 2017-2031F
  • Figure 15. United States LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 16. United States LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 17. United States LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 18. United States LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 19. United States LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 20. United States LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 21. Canada LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 22. Canada LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 23. Canada LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 24. Canada LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 25. Canada LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 26. Canada LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 27. Mexico LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 28. Mexico LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 29. Mexico LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 30. Mexico LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 31. Mexico LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 32. Mexico LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 33. Europe LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 34. Europe LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 35. Europe LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 36. Europe LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 37. Europe LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 38. Europe LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 39. Europe LiDAR Market Share (%), By Country, 2017-2031F
  • Figure 40. Germany LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 41. Germany LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 42. Germany LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 43. Germany LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 44. Germany LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 45. Germany LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 46. France LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 47. France LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 48. France LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 49. France LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 50. France LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 51. France LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 52. Italy LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 53. Italy LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 54. Italy LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 55. Italy LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 56. Italy LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 57. Italy LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 58. United Kingdom LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 59. United Kingdom LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 60. United Kingdom LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 61. United Kingdom LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 62. United Kingdom LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 63. United Kingdom LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 64. Russia LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 65. Russia LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 66. Russia LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 67. Russia LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 68. Russia LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 69. Russia LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 70. Netherlands LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 71. Netherlands LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 72. Netherlands LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 73. Netherlands LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 74. Netherlands LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 75. Netherlands LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 76. Spain LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 77. Spain LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 78. Spain LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 79. Spain LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 80. Spain LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 81. Spain LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 82. Turkey LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 83. Turkey LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 84. Turkey LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 85. Turkey LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 86. Turkey LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 87. Turkey LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 88. Poland LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 89. Poland LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 90. Poland LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 91. Poland LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 92. Poland LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 93. Poland LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 94. South America LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 95. South America LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 96. South America LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 97. South America LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 98. South America LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 99. South America LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 100. South America LiDAR Market Share (%), By Country, 2017-2031F
  • Figure 101. Brazil LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 102. Brazil LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 103. Brazil LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 104. Brazil LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 105. Brazil LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 106. Brazil LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 107. Argentina LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 108. Argentina LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 109. Argentina LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 110. Argentina LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 111. Argentina LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 112. Argentina LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 113. Asia-Pacific LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 114. Asia-Pacific LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 115. Asia-Pacific LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 116. Asia-Pacific LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 117. Asia-Pacific LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 118. Asia-Pacific LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 119. Asia-Pacific LiDAR Market Share (%), By Country, 2017-2031F
  • Figure 120. India LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 121. India LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 122. India LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 123. India LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 124. India LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 125. India LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 126. China LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 127. China LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 128. China LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 129. China LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 130. China LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 131. China LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 132. Japan LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 133. Japan LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 134. Japan LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 135. Japan LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 136. Japan LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 137. Japan LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 138. Australia LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 139. Australia LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 140. Australia LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 141. Australia LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 142. Australia LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 143. Australia LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 144. Vietnam LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 145. Vietnam LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 146. Vietnam LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 147. Vietnam LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 148. Vietnam LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 149. Vietnam LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 150. South Korea LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 151. South Korea LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 152. South Korea LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 153. South Korea LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 154. South Korea LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 155. South Korea LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 156. Indonesia LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 157. Indonesia LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 158. Indonesia LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 159. Indonesia LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 160. Indonesia LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 161. Indonesia LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 162. Philippines LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 163. Philippines LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 164. Philippines LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 165. Philippines LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 166. Philippines LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 167. Philippines LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 168. Middle East & Africa LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 169. Middle East & Africa LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 170. Middle East & Africa LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 171. Middle East & Africa LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 172. Middle East & Africa LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 173. Middle East & Africa LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 174. Middle East & Africa LiDAR Market Share (%), By Country, 2017-2031F
  • Figure 175. Saudi Arabia LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 176. Saudi Arabia LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 177. Saudi Arabia LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 178. Saudi Arabia LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 179. Saudi Arabia LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 180. Saudi Arabia LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 181. UAE LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 182. UAE LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 183. UAE LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 184. UAE LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 185. UAE LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 186. UAE LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 187. South Africa LiDAR Market, By Value, In USD Billion, 2017-2031F
  • Figure 188. South Africa LiDAR Market Share (%), By Installation, 2017-2031F
  • Figure 189. South Africa LiDAR Market Share (%), By Component, 2017-2031F
  • Figure 190. South Africa LiDAR Market Share (%), By Type, 2017-2031F
  • Figure 191. South Africa LiDAR Market Share (%), By Range, 2017-2031F
  • Figure 192. South Africa LiDAR Market Share (%), By Application, 2017-2031F
  • Figure 193. By Installation Map-Market Size (USD Billion) & Growth Rate (%), 2023
  • Figure 194. By Component Map-Market Size (USD Billion) & Growth Rate (%), 2023
  • Figure 195. By Type Map-Market Size (USD Billion) & Growth Rate (%), 2023
  • Figure 196. By Range Map-Market Size (USD Billion) & Growth Rate (%), 2023
  • Figure 197. By Application Map-Market Size (USD Billion) & Growth Rate (%), 2023
  • Figure 198. By Region Map-Market Size (USD Billion) & Growth Rate (%), 2023
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