Presentation + Paper
14 March 2023 Increasing the detection range of non-scanning solid-state LiDAR systems using beam shaping
Author Affiliations +
Abstract
High-performance LiDAR systems play an important role in autonomous driving by providing a high-resolution 3D representation of the driving environment. Complementing version-based object detection, LiDAR systems must furnish reliable and appropriate information for the vehicle. Current LiDAR systems for vehicle applications prefer to be solid-state to achieve high system robustness. However, the lack of beam steering limits the beam flux density and thus the detection range of a solid-state LiDAR system. One of the main reasons is that the emitted irradiant flux must be distributed to a large number of pixels of a focal plane array detector, which results in a single pixel receiving only a small optical power. To increase the optical power reaching at the detector, this paper investigates the influence of different beam shaping methods on the detection range. Subsequently, an irradiation pattern to maximize the detection range for solid-state LiDAR systems is determined. Based on the determined irradiation pattern, we propose an optical concept for both the emitter and detector sides of the solid-state LiDAR system.
Conference Presentation
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Zhuoqun Dai, Max Caspar Sundermeier, Tobias Glück, Philipp Findling, and Roland Lachmayer "Increasing the detection range of non-scanning solid-state LiDAR systems using beam shaping", Proc. SPIE 12441, Light-Emitting Devices, Materials, and Applications XXVII, 1244107 (14 March 2023); https://doi.org/10.1117/12.2648721
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KEYWORDS
LIDAR

Reflection

Beam steering

Solid state electronics

Beam shaping

Object detection

Microelectromechanical systems

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