The global automotive LiDAR market growth is expanding at a CAGR of 24.97% over the forecast period and is predicted to reach around USD 7.43 billion by 2032 from 0.83 USD 2022.
Automotive Light Detection and Ranging (LiDAR) is a surveying system that employs pulsed laser light to ascertain the distance between two vehicles. The measurement of this distance is accomplished by illuminating the target vehicle or object and then capturing the reflected pulse using a sensor. The application of LiDAR in automobiles aids in regulating vehicle speed and braking in response to sudden changes in traffic conditions. Before the advent of LiDAR, radar and sonar were utilized for range detection in advanced vehicles. The advantages offered by LiDAR, including real-time data acquisition and enhanced precision, have driven its market growth ahead of radars and sonar.
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A significant driving force behind the automotive LiDAR market is the growing awareness among vehicle users about safety, coupled with safety regulations mandated by global regulatory bodies. Additionally, the increasing adoption of autonomous and electric vehicles is expected to lead to substantial growth in the utilization of advanced vehicle safety components, such as automotive LiDAR. The heightened focus from governments on vehicles equipped with Advanced Driver Assistance Systems (ADAS) in recent years, due to safety concerns, is anticipated to fuel the demand for automotive LiDAR in the forecast period. Automotive LiDAR has proven to be a pivotal technology for autonomous vehicles, owing to its high precision and accurate real-time detection capabilities using emitted laser beams.
However, the high cost of the technology presents a hindrance to market growth. Some manufacturers are actively working on reducing the cost of automotive LiDAR sensors by minimizing the number of laser emitters in the solution. Despite these efforts, the cost of automotive LiDAR remains relatively high, thereby limiting its widespread adoption by numerous manufacturers.
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Report Highlights
Regional Overview
North America currently leads the global automotive LiDAR market, capturing more than 50% of the revenue share. This impressive growth can be attributed to increased research and development activities aimed at enhancing autonomous vehicles. Government policies that support investments in autonomous vehicles have driven research and development efforts in this direction. For example, in 2018, the U.S. government allocated a significant amount for research in self-driving technology, with the research taking place in both government and private agencies focused on improving autonomous driving solutions.
Europe stands out as a particularly attractive region in the global automotive LiDAR market. The region’s projected growth is largely driven by supportive government policies, such as the European New Car Assessment Program and Vehicle and Driver Safety Policy. These policies mandate the implementation of vehicle safety solutions, thereby substantially boosting the automotive LiDAR market in the region. Additionally, the reliance of autonomous vehicles on sensors has led to a notable increase in sensor implementation, further propelling the overall growth of automotive LiDAR solutions.
Key Players and Strategies
The global automotive LiDAR market is characterized by high competition due to continuous product and solution advancements pursued by industry players. Given the nascent stage of the market, there are significant opportunities for players to advance and enhance product offerings. The demand for cost-effective solutions also drives the market’s sales value. Consequently, industry players are heavily invested in product development to maintain and strengthen their market positions. For example, in January 2017, Innoviz Technologies Ltd. introduced InnovizOne, a high-definition solid-state LiDAR (HD-SSL). This solution enables advanced 3D remote sensing features, accurately processing real-time 3D images of a vehicle’s surroundings.
Some of the key players operating in the market are LeosphereSaS, Airborne Hydrography AB, Faro Technologies Inc., Aerometric Inc., 3D Laser Mapping Inc., Mira Solutions Inc., Quanergy Systems, Inc., Optech Inc. (Teledyne Technologies), IBEO automotive systems GmbH, Velodyne, and LeicGeosystems Inc. among others.
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